TL;DR: Thirteen clones of hybrid cells which synthesize antibodies directed against the Rous sarcoma virus (RSV) transforming protein, pp60src, were isolated and several other clones had a low affinity for the viral yes, fps, and ros gene products which could be detected by in vitro phosphorylation of the transforming proteins after immunoprecipitation with the monoclonal antibody.
Abstract: Thirteen clones of hybrid cells which synthesize antibodies directed against the Rous sarcoma virus (RSV) transforming protein, pp60src, were isolated. Mouse myeloma cells were fused with spleen cells from mice that had been immunized with purified pp60src from bacterial recombinants which direct the synthesis of the RSV src gene. The hybridomas which survived the selection medium were screened by immunoprecipitation of pp60src from 32P-labeled lysates of RSV-transformed cells. Monoclonal antibodies produced by subclones derived from 13 hybridomas recognized pp60src encoded by the Schmidt-Ruppin and Prague strains of RSV and the cellular homolog of pp60src. Antibody from clone 261 had a high affinity for the viral yes gene product, and antibodies from clones 443 and 463 recognized the transforming proteins encoded by viruses containing the related transforming genes fps and ros. Several other clones had a low affinity for the viral yes, fps, and ros gene products which could be detected by in vitro phosphorylation of the transforming proteins after immunoprecipitation with the monoclonal antibody. All of the monoclonal antibodies allowed phosphorylation of pp60src and casein in an immune complex-bound reaction.
TL;DR: It is reported here that IGF-I stimulates a tyrosine-specific protein kinase in a time- and dose-dependent fashion, and it is concluded that a high-affinity IGF-i receptor, not the structurally similar insulin receptor10, is the mediator of IGF- I-stimulated kinase activity.
Abstract: Several mitogens elicit tyrosine-specific protein kinase activities1–7. Although the physiological significance of this is unclear, the generality of these reactions implies that this may be an inherent feature of growth factor–growth factor receptor interactions. The observed mitogenic properties of the polypeptide insulin-like growth factor I (IGF-I)8,9 indicated that it might also stimulate such activity. We report here that IGF-I stimulates a tyrosine-specific protein kinase in a time- and dose-dependent fashion. The close correspondence between an approximate 50% effective dose (ED50) of phosphorylation and an approximate Kd for IGF-I binding leads us to conclude that a high-affinity IGF-I receptor, not the structurally similar insulin receptor10, is the mediator of IGF-I-stimulated kinase activity. Immunoprecipitation indicates that both the β-subunit of the IGF-I receptor and the β-subunit of the insulin receptor are targets for the IGF-I-stimulated protein kinase.
TL;DR: Investigation of mouse and rat embryo fibroblasts in primary culture of cloned polyoma virus genes encoding only the large T protein led to the establishment of flat colonies in sparse subcultures at a frequency equal to that of transformation by wild-type virus, indicating a continuous requirement for a large T function in the maintenance of "immortality."
Abstract: Transfer into mouse and rat embryo fibroblasts in primary culture of cloned polyoma virus genes encoding only the large T protein led to the establishment of flat colonies in sparse subcultures at a frequency equal to that of transformation by wild-type virus. Cell lines could be derived from such colonies and maintained in culture for large numbers of generations without entering crisis. They exhibited a normal phenotype, by the criteria of growth on plastic to a low saturation density and of anchorage dependency. However, they required a lower serum concentration for growth than spontaneously established 3T3 cells. Similar results were obtained after transfer of recombinant DNA molecules encoding only the amino-terminal 40% of the large T protein, suggesting that this "immortalization" function corresponds to the activity of an amino-terminal domain of the protein. Immunoprecipitation analysis of T antigens in cell lines established after transfer of the full-size and of the truncated large T genes demonstrated the expression of the full-size large T protein and of a Mr 40,000 antigen expressed from the amino-terminal part of the gene, respectively. After transfer of a "large T only" plasmid that carries a tsa mutation, cell lines were established at 33 degrees C with the same efficiency as with the wild-type large T gene, but their growth was arrested after a shift to 40 degrees C, with a progressive loss in cell viability. This result indicates a continuous requirement for a large T function in the maintenance of "immortality."
TL;DR: It is proposed that intralysosomal protection against proteolysis of beta-galactosidase and sialidase is accomplished by aggregation into a high molecular weight complex consisting of multimeric beta-GalactOSidase, sialidsase, and protective protein.
TL;DR: It seems reasonable to conclude that the transport of RBP from the ER to the Golgi complex is regulated by retinol, and both normal and vitamin A-deficient hepatocytes synthesized RBP.
Abstract: As a model of ligand-dependent protein secretion the biosynthesis, intracellular transport, and release of the retinol-binding protein (RBP) were studied in primary cultures of rat hepatocytes pulse-labeled with [35S]methionine. After various periods of chase RBP was isolated by immunoprecipitation and identified by SDS PAGE. Both normal and vitamin A-deficient hepatocytes synthesized RBP. The normal cells secreted the pulse-labeled RBP within 2 h. RBP synthesized by deficient cells was not secreted, and intracellular degradation of the protein appeared to be slow. Deficient cells could be induced to secrete RBP on the addition of retinol to the culture medium. This occurred also after protein synthesis had been blocked by cycloheximide. Since retinol induces the secretion of RBP, accumulated in the endoplasmic reticulum (ER), it seems reasonable to conclude that the transport of RBP from the ER to the Golgi complex is regulated by retinol.
TL;DR: Immunoprecipitation of proteins secreted by Sertoli cells with an antiserum to rat serum proteins was found to precipitate two proteins, testicular ceruloplasmin and testicular transferrin.
Abstract: Sertoli cells synthesize and secrete a ceruloplasmin-like protein (testicular ceruloplasmin) that is immunologically similar to serum ceruloplasmin. Rat serum ceruloplasmin was purified and an antiserum was produced to the purified protein which specifically immunoprecipitated a 130,000 dalton protein from rat serum. This ceruloplasmin antiserum was found to also immunoprecipitate a 130,000 dalton protein synthesized and secreted by Sertoli cells. The presence of a protease inhibitor, phenylmethylsulfonyl fluoride (PMSF), was required during the immunoprecipitation procedure to prevent the proteolytic degradation of testicular ceruloplasmin. Immunoprecipitation of proteins secreted by Sertoli cells with an antiserum to rat serum proteins was found to precipitate two proteins, testicular ceruloplasmin and testicular transferrin.
TL;DR: Direct evidence for de novo synthesis of a PDGF-like component in the cultures was afforded by 35S-cysteine labeling of the three cell lines, followed by immunoprecipitation with PDGF antiserum, which resulted in the specific precipitation of a 31,000 molecular weight labeled protein.
TL;DR: Temperature-sensitive mutations in the gene encoding the trimeric tail spike protein of phage P22 interfere with protein maturation at 39 degrees C, and temperature-shift experiments indicate that at least some of the mutants accumulate an earlier intermediate in the folding pathway.
Abstract: Temperature-sensitive mutations in the gene encoding the trimeric tail spike protein of phage P22 interfere with protein maturation at 39 degrees C. We show here that temperature-sensitive mutations at many sites block the folding pathway prior to accumulation of the partially folded protrimer intermediate. Temperature-shift experiments indicate that at least some of the mutants accumulate an earlier intermediate in the folding pathway. Immunoprecipitation experiments suggest that the conformation of the isolated temperature-sensitive polypeptide chains is closer to that of the unfolded chain than to that of the mature spike formed at permissive temperature. The sites of these mutations probably represent amino acid sequences that play key roles during the folding of the tail spike polypeptide chain but are not important in the mature protein.
TL;DR: The molecular composition and subcellular localization of the antigens recognized by anti‐SS‐B (La or Ha) antibodies was investigated and it is indicated that this 50 000 protein is the only SS‐B antigen present in adenovirus‐infected as well as in uninfected cells.
Abstract: The molecular composition and subcellular localization of the antigens recognized by anti-SS-B (La or Ha) antibodies was investigated. Ten anti-SS-B sera were selected by indirect immunofluorescence and by their immunological identity in counter-immunoelectrophoresis (CIE) with an anti-SS-B reference serum. All sera precipitated virus-associated (VA) RNA from cellular extracts of adenovirus-infected HeLa cells. Earlier results had shown that in adenovirus-infected HeLa cells a cellular 50 000 mol. wt. protein was tightly associated with VA RNA in situ. Our present results indicate that this 50 000 protein is the only SS-B antigen present in adenovirus-infected as well as in uninfected cells. A major part (greater than 80%) of the SS-B antigen is present in a readily extractable, soluble form. The rest is found in an insoluble form tightly associated with an internal nuclear structure that is mostly referred to as the nuclear matrix. Both forms are very susceptible to proteolytic degradation resulting in at least two distinct breakdown products of mol. wts. 40 000 and 25 000. The cellular 50 000 polypeptide is present in extracts of various types of cells and tissues, indicating that this antigen is very well conserved during evolution. The association of the 50 000 mol. wt. antigen with host- as well as viral-coded RNA polymerase III products also suggests an important function for this protein in the metabolism of these small RNAs.
TL;DR: The switch from the cytoplasmic localization of p53 in the non‐transformed fibroblasts to a chromatin‐associated accumulation in the transformed cells suggests a possible mechanism by which this protein may function in the transformations.
Abstract: The subcellular localization of the p53 molecule was studied in transformed and non-transformed fibroblasts. A newly established transformed cell line obtained by treating primary embryonic mouse cells in vitro with the chemical carcinogen methylcholanthrene was compared with the embryonic parent fibroblasts. The transformed cells lost the spindle shape characteristic of the parent fibroblasts, acquired an accelerated growth rate, developed into tumors when injected into syngeneic mice and expressed high levels of p53 synthesis estimated by immunoprecipitation of [35S]methionine-labeled cell extracts. The cellular localization of the p53 molecule was studied by immunofluorescent staining of fixed cells with monoclonal antibodies and by immunoprecipitation of [35S]-methionine-labeled p53 from various subcellular fractions. p53 was mainly found in the nucleus of the transformed fibroblast, while in the parent non-transformed primary embryonic cells, p53 was detected in the cytoplasm in a Triton X-100 soluble fraction, and associated with the cytoskeleton. The modulated distribution of p53 was also confirmed by analyzing a wide range of independently established transformed and non-transformed fibroblastic cell lines growing in vitro. The switch from the cytoplasmic localization of p53 in the non-transformed fibroblasts to a chromatin-associated accumulation in the transformed cells suggests a possible mechanism by which this protein may function in the transformed fibroblasts.
TL;DR: Site-specific antibodies to pp60src, the transforming protein of Rous sarcoma virus, have been prepared by immunizing rabbits with a chemically synthesized pentadecapeptide corresponding to residues 498-512, suggesting that this region may be functionally necessary for the tyrosine-specific kinase activity of this transforming protein.
TL;DR: The existence of antibodies in the plasma of ewes and the cross-reactivity of plasmas were demonstrated and studied, and the GDP-binding activity of the uncoupling protein (isolated or in solubilized membranes) was largely inhibited by the antiserum.
Abstract: 1. Ewes were injected with purified 32,000-Mr uncoupling protein from mitochondria of brown adipose tissue of cold-adapted rats in order to raise antibodies. 2. The existence of antibodies in the plasma of ewes and the cross-reactivity of plasmas were demonstrated and studied by 125I-labelled antigen-antibody reaction, double immunodiffusion, the inhibition of GDP binding to the 32,000 Mr protein and by immunohistochemistry. 3. The antibodies raised against the homogeneous protein yielded a single immunoprecipitation band with detergent-solubilized mitochondrial membranes of brown adipose tissue from rat, hamster, guinea-pig, rabbit and with the purified uncoupling protein of these animals. No immunoprecipitation was obtained with the protein purified from brown adipose tissue of term lamb foetus. 4. The GDP-binding activity of the uncoupling protein (isolated or in solubilized membranes) was largely inhibited by the antiserum. 5. The anti-(rat uncoupling protein) could not cross-react with solubilized membranes from liver or muscle, nor with the purified beef heart or rat liver ADP/ATP translocator.
TL;DR: Kinetic studies indicated that induction of the stress proteins is an early event during infection, and the synthesis of these virus-induced stress proteins was resistant to alterations in the intracellular concentrations of Na+ and K+.
TL;DR: Assessment of comparative antigenicities of 11 different protein II moieties from four different strains shows that all gonococcal outer membrane P.II moieties share antigenic determiners, but these common antigens are not generally accessible on the organisms' surfaces for interaction with antibody molecules.
Abstract: Immunoprecipitation or coagglutination with whole gonococci and immunoblotting have been used to assess the comparative antigenicities of 11 different protein II (P.II) moieties from four different strains. Rabbit antisera used for these studies include both anti-whole gonococcal sera and antisera raised by immunization with "isolated" P.II preparations. The results show that: (a) immunization with gonococci possessing a single P.II elicits formation of antibodies directed mainly at the homologous P.II when assessed by either immunoprecipitation or immunoblotting; and (b) immunization with isolated P.II material elicits formation of antibodies that are cross-reactive with all (or nearly all) P.II species in immunoblots; these antibodies recognize mainly the homologous P.II by immunoprecipitation. These results have been interpreted as showing the following: (a) all gonococcal outer membrane P.II moieties share antigenic determiners, but these common antigens are not generally accessible on the organisms' surfaces for interaction with antibody molecules; and (b) the surface-exposed antigens of different P.II constituents are, in general, different from one another.
TL;DR: Immunoprecipitation of in vitro translation products directed by total BTV-17 RNA with a monoclonal antibody that reacts with all the serotypes of BTV and some other orbiviruses and precipitates VP7 directly demonstrated that gene segment 8 codes for this intergroup-specific polypeptide.
TL;DR: Immunoprecipitation using mouse anti-JHMV antiserum and monoclonal antibodies specific for pp60 showed that p57 was antigenically related to pp60 and was not phosphorylated, while the intracellular protein that comigrated with the virion nucleocapsid protein, pp60, wasosphorylated.
TL;DR: Two human B lymphocyte-associated antigens, B1 and B2, were studied by immunoprecipitation using monoclonal antibodies and the B1 protein displayed hydrophobic properties whereas B2 had a more amphiphilic character.
Abstract: Two human B lymphocyte-associated antigens, B1 and B2, were studied by immunoprecipitation using monoclonal antibodies. B1 was found to be a nonglycosylated protein of MW 35 kD, phosphorylated at serine and threonine. B2, a 140 kD MW antigen, was characterized as a glycoprotein without phosphorylated sites. Both proteins were found to contain portions which could be labeled with 125I-iodonaphthylazide. The B1 protein displayed hydrophobic properties whereas B2 had a more amphiphilic character.
TL;DR: Post-translational assembly of snRNPs involving both RNA-protein binding and associations of other snRNP proteins occurred in the in vitro system employed here and permitted the determination of the precise antigen peptides recognized by Sm and RNP autoimmune sera.
Abstract: Cell-free translation of human poly(A)+ RNA was carried out to generate and analyze the protein constituents of small nuclear ribonucleoprotein (snRNP) particles. The snRNP proteins were identified by immunoprecipitation with sera from patients with systemic lupus erythematosus. Size fractionation of mRNA prior to translation revealed that these snBNP proteins are all encoded by separate messages. One of the proteins (the A protein, molecular weight 32,000) was seen to lose antigenicity upon RNase treatment either when extracted from cells or when generated in vitro. RNase treatment of immunoprecipitated snRNPs released the A protein in an electrophoretically pure form. Analysis of snRNPs translated in vitro revealed the presence of unassembled and assembled particles as determined by sucrose density gradient sedimentation. Post-translational assembly of snRNPs involving both RNA-protein binding (as revealed by A protein antigenicity) and associations of other snRNP proteins occurred in the in vitro system employed here. In addition, the presence of unassembled snRNP proteins permitted the determination of the precise antigen peptides recognized by Sm and RNP autoimmune sera. It was observed that Sm sera are capable of recognizing each of the eight snRNP proteins, whereas RNP sera recognize only two of the eight.
TL;DR: A 126-kilodalton phosphoglycoprotein, which the authors have consistently been unable to identify by immunoprecipitation of intrinsically labeled normal cells, may represent a heretofore unrecognized tumor-associated marker for human mammary carcinomas as well as certain other types of human neoplasms.
Abstract: A large number of hybridomas producing antibodies to the membrane fraction of a human mammary carcinoma cell line have been produced. Among those hybridoma antibodies that bound to exposed surface membrane epitopes on the human mammary carcinoma cell line BT-20, one has been found to bind to all tested breast carcinoma cell lines as well as to a number of other human carcinomas by solid-phase radioimmunoassay. This hybridoma antibody, designated 10-3D2, does not bind to normal mammary epithelium, a variety of control cell lines, or selected normal human tissue homogenates. The 10-3D2 hybridoma antibody identifies by immunoprecipitation a membrane 126-kilodalton protein which is indistinguishable in different tumor cells. It is glycosylated by reference to incorporation of [3H]glucosamine and also is phosphorylated by reference to incorporation of 32P. It is present in a finely granular pattern on the cell surface of mammary carcinoma cells with concentration at the sites of apparent cell-cell contact. This 126-kilodalton phosphoglycoprotein, which we have consistently been unable to identify by immunoprecipitation of intrinsically labeled normal cells, may represent a heretofore unrecognized tumor-associated marker for human mammary carcinomas as well as certain other types of human neoplasms.
TL;DR: Hybrids formed between human acute lymphoblastic leukemia (ALL) cells and mouse myeloma have been used to determine the chromosomal location of genes required for the expression of several monoclonal antibody‐defined cell surface antigens on ALL cells.
Abstract: Hybrids formed between human acute lymphoblastic leukemia (ALL) cells and mouse myeloma have been used to determine the chromosomal location of genes required for the expression of several monoclonal antibody (mAb)-defined cell surface antigens on ALL cells. Cloned hybrids were tested for antibody binding, immunoprecipitation of the relevant protein, chromosome isoenzyme markers and karyotype. Two antigens of those studied could be definitively mapped, OKT10/p45 to chromosome 4 and BA-2/p24 to chromosome 12. mAb BA-2 reacts with the same protein as another mAb designated 609-29 (anti-teratocarcinoma). Reactivity with the latter mAb has been previously shown to segregate with chromosome 12.
TL;DR: A cell line that displays a 100-fold increase in the major regulatory enzyme of the cholesterol biosynthetic pathway, 3-hydroxy-3-methylglutaryl-coenzyme A reductase [HMG-CoA; mevalonate:NADP(+) oxido-reductase (CoA-acylating), EC 1.1.34 is described.
Abstract: We describe a cell line, designated C100, that displays a 100-fold increase in the major regulatory enzyme of the cholesterol biosynthetic pathway, 3-hydroxy-3-methylglutaryl-coenzyme A reductase [HMG-CoA; mevalonate:NADP+ oxido-reductase (CoA-acylating), EC 1.1.1.34]. Immunoprecipitation of [35S]methionine-labeled enzyme from C100 microsomal membranes prepared in the presence of the protease inhibitors phenyl-methylsulfonyl fluoride and leupeptin revealed two up regulated proteins: a major band of Mr 92,000 and a minor band of Mr 63,000. We conclude that the Mr 92,000 protein is probably the intact form of HMG-CoA reductase protomer based on the following criteria. (i) It is a highly up regulated microsomal membrane protein that coincides with the increase in HMG-CoA reductase specific activity in this cell line. (ii) It is recognized by a specific HMG-CoA reductase antiserum under a variety of stringencies. (iii) Isolation and solubilization of [35S]methionine-labeled C100 microsomal membranes in the absence of protease inhibitors resulted in the disappearance of the Mr 92,000 protein and the appearance of two proteins of Mr 52,000 and 38,000. (iv) Analysis of cells labeled for 30 min with [35S]methionine, well under the half-life of HMG-CoA reductase, revealed only the Mr 92,000 protein to be present in total cell extract. (v) The previously reported single immunoprecipitation polypeptide for HMG-CoA reductase of Mr 62,000 [Chin, D. J., Luskey, K. L., Anderson, R. G. W., Faust, J. R., Goldstein, J. L. & Brown, M. S. (1982) Proc. Natl. Acad. Sci. USA 79, 1185-1189] can be isolated and appears to be the result of both proteolysis and sample preparation for NaDodSO4 gel electrophoresis. Analysis of C100 cells labeled with [35S]methionine for 24 hr indicates that the predominant steady-state form of the enzyme is the Mr 92,000, rather than the Mr 63,000, protein, further suggesting that the two proteins do not have a classical precursor-product relationship.
TL;DR: These immunolocalization findings support the conclusion based on fractionation studies that the cylindershaped particles and their protein constituents occur both in the nucleoplasm and the cytoplasm of a broad range of cell types.
TL;DR: Because c-myc transcripts are expressed at higher levels in malignant than in normal B cells, it appears that an increased level of the c- myc protein rather than a change in the gene product is the relevant factor in determining transformation.
Abstract: Antiserum to a synthetic peptide corresponding to the carboxyl-terminus of the human c-myc protein immunoprecipitated a 48,000-dalton protein from a number of normal and malignant human and mouse cells. The size of the protein is consistent with the potential coding region predicted from the c-myc nucleotide sequence, and is the same for malignant cells carrying either a rearranged or an unrearranged c-myc oncogene. Because c-myc transcripts are expressed at higher levels in malignant than in normal B cells, it appears that an increased level of the c-myc protein rather than a change in the gene product is the relevant factor in determining transformation.
TL;DR: The gene for the Harvey murine sarcoma virus (Ha-MuSV) p21ras protein was fused to the amino-terminal portion of the bacteriophage lambda cII gene on the expression vector pJL6, such that transcription was controlled by the well-regulated phage lambda pL promoter and translation continued in frame into the ras gene sequences that code for p21.
Abstract: The gene for the Harvey murine sarcoma virus (Ha-MuSV) p21ras protein was fused to the amino-terminal portion of the bacteriophage lambda cII gene on the expression vector pJL6. The fusion was such that transcription was controlled by the well-regulated phage lambda pL promoter, and translation initiated in the cII gene continued in frame into the ras gene sequences that code for p21. When the pL promoter was derepressed, the Escherichia coli cells harboring the fusion plasmid synthesized 23,000-dalton protein, which represented more than 10 percent of the total cellular protein. This protein was chimeric and contained 14 residues, which were specified by the vector; these residues were followed by all of the amino acids that make up Ha-MuSV p21ras except for four residues at the amino-terminal end. The protein appears similar to Ha-MuSV p21ras in that it undergoes immunoprecipitation by monoclonal antibodies directed toward that protein, binds guanosine diphosphate, and is capable of autophosphorylation.
TL;DR: Ap4A appears to interact noncovalently with the enzyme, because removal of pp60src by immunoprecipitation from solutions containing Ap4A restored activity to uninhibited levels, and a 100-fold increase in ATP caused a 13-fold rise in the 50% inhibitory concentration of Ap 4A, consistent with the interpretation that Ap4 a competes for an ATP-binding site on the pp60 src molecule.
TL;DR: The findings indicate that this human osteogenic sarcoma antigen is a monomeric integral membrane protein with an apparent molecular weight of 72,000, which is predominantly expressed at the external face of the tumour cell plasma membrane.
TL;DR: It is found that SV40 DNA sequences, most probably representing the entire genome, remain in the immunoprecipitate after HindIII digestion, indicating an association of T antigen with origin-distal sections of replicating viral DNA, suggesting that T antigen in replicating chromatin may be bound to regions close to replicating points.
Abstract: Pulse-labeled simian virus 40 (SV40) chromatin as well as uniformly labeled viral chromatin are immunoprecipitable by an SV40-specific tumor antiserum and therefore contain bound tumor antigen (T antigen). Single-stranded calf thymus DNA, immobilized on cellulose, competes effectively for T antigen binding with uniformly labeled nonreplicating, but not with pulse-labeled replicating, chromatin. Furthermore, T antigen dissociates in 0.5 M NaCl from nonreplicating chromatin and from purified SV40 DNA, whereas most T antigen remains associated with replicating chromatin even in the presence of 1.2 to 1.5 M NaCl. We used filtration through DNA-cellulose columns and treatment with high salt to prepare pulse-labeled immunoreactive viral chromatin. The viral DNA was digested before, and in other experiments after, immunoprecipitation with the restriction endonuclease HindIII. We found that SV40 DNA sequences, most probably representing the entire genome, remain in the immunoprecipitate after HindIII digestion, indicating an association of T antigen with origin-distal sections of replicating viral DNA. The results suggest that T antigen in replicating chromatin may be bound to regions close to replicating points. We performed control experiments with in vitro-formed complexes of T antigen and SV40 DNA. When these complexes were immunoprecipitated and HindIII digested we found, in agreement with previous studies, that only the origin containing the HindIII C fragment carried bound T antigen.
TL;DR: The preparation of monoclonal antibodies to partially purified 34-kDa protein and to a heretofore unrecognized phosphoprotein that is not a pp60src target is reported here.
TL;DR: The date indicate that the development changes in the amount of S-100 protein in the rat brain found by other authors is strongly correlated with theChanges in the level of its translatable mRNA.