About: Ecotin is a research topic. Over the lifetime, 93 publications have been published within this topic receiving 4802 citations. The topic is also known as: Prot_inh_ecotin & IPR005658.
TL;DR: Inhibitors 0/ Carboxyl, Metallo and Sulfhydryl Proteinases 599 Inhibitors0/ Serine Proteinases 601 The Standard Mechanism 601 The nature of the reactive site 604 Multiple reactive sites on a single polypeptide chain 608 The Inhibitor Families
Abstract: PERSPECTIVES AND SUMMARY 593 INTRODUCTION 595 Limited Knowledge 0/ Physiological Function 595 Nomenclature Problems 596 0.2 MACROGLOBULINS 598 INHIBITORS WITH CLASS-SPECIFIC REACTIVE SITES 599 Inhibitors 0/ Carboxyl, Metallo and Sulfhydryl Proteinases 599 Inhibitors 0/ Serine Proteinases 601 The Standard Mechanism 601 The nature of the reactive site 604 Multiple reactive sites on a single polypeptide chain 608 The Inhibitor Families 610 The pancreatic trypsin inhibitor (Kunitzj family 610 Pancreatic secretory trypsin inhibitor (Kazal) family 613 Streptomyces subtilisin inhibitor family 616 Bowman-Berk inhibitor family : 616 Soybean trypsin inhibitor (Kunitzj family 617 Other inhibitor families 618 Inhibitors in mammalian blood plasma 619
TL;DR: Ecootin and variant ecotins are subnanomolar inhibitors of the MT-SP1 activated protease domain, suggesting a possible role for MT- SP1 in prostate differentiation and the growth of prostatic carcinomas.
Abstract: Serine proteases of the chymotrypsin fold are of great interest because they provide detailed understanding of their enzymatic properties and their proposed role in a number of physiological and pathological processes. We have been developing the macromolecular inhibitor ecotin to be a “fold-specific” inhibitor that is selective for members of the chymotrypsin-fold class of proteases. Inhibition of protease activity through the use of wild-type and engineered ecotins results in inhibition of rat prostate differentiation and retardation of the growth of human PC-3 prostatic cancer tumors. In an effort to identify the proteases that may be involved in these processes, reverse transcription–PCR with PC-3 poly(A)+ mRNA was performed by using degenerate oligonucleotide primers. These primers were designed by using conserved protein sequences unique to chymotrypsin-fold serine proteases. Five proteases were identified: urokinase-type plasminogen activator, factor XII, protein C, trypsinogen IV, and a protease that we refer to as membrane-type serine protease 1 (MT-SP1). The cloning and characterization of the MT-SP1 cDNA shows that it encodes a mosaic protein that contains a transmembrane signal anchor, two CUB domains, four LDLR repeats, and a serine protease domain. Northern blotting shows broad expression of MT-SP1 in a variety of epithelial tissues with high levels of expression in the human gastrointestinal tract and the prostate. A His-tagged fusion of the MT-SP1 protease domain was expressed in Escherichia coli, purified, and autoactivated. Ecotin and variant ecotins are subnanomolar inhibitors of the MT-SP1 activated protease domain, suggesting a possible role for MT-SP1 in prostate differentiation and the growth of prostatic carcinomas.
TL;DR: It is proposed that the Plg cascade fosters adipocyte differentiation by degradation of the fibronectin-rich preadipocyte stromal matrix.
Abstract: Here we show that plasma kallikrein (PKal) mediates a plasminogen (Plg) cascade in adipocyte differentiation. Ecotin, an inhibitor of serine proteases, inhibits cell-shape change, adipocyte-specific gene expression, and lipid accumulation during adipogenesis in culture. Deficiency of Plg, but not of urokinase or tissue-type plasminogen activator, suppresses adipogenesis during differentiation of 3T3-L1 cells and mammary-gland involution. PKal, which is inhibited by ecotin, is required for adipose conversion, Plg activation and 3T3-L1 differentiation. Human plasma lacking PKal does not support differentiation of 3T3-L1 cells. PKal is therefore a physiological regulator that acts in the Plg cascade during adipogenesis. We propose that the Plg cascade fosters adipocyte differentiation by degradation of the fibronectin-rich preadipocyte stromal matrix.
TL;DR: Immunoblot analysis confirmed that the bacteriophage express Tsn on their surface and isolated fusion phage possess kinetic parameters which approximate those of the wt enzyme.
TL;DR: The ecotin displayed on the surface of phage inhibited trypsin with an equilibrium dissociation constant of 6.7 nM, in close approximation to that of free ecotin, indicating that phage-associated ecotin is correctly folded and functionally active.