Robert B. Peery
Eli Lilly and Company
39 Papers
434 Citations
Robert B. Peery is an academic researcher from Eli Lilly and Company. The author has contributed to research in topics: Gene & Peptide Biosynthesis. The author has an hindex of 17, co-authored 39 publications. Previous affiliations of Robert B. Peery include Virginia Tech.
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Papers
Genome of the bacterium Streptococcus pneumoniae strain R6.
JoAnn Hoskins,William E. Alborn,Jeffrey S. Arnold,Larry C. Blaszczak,Stanley Gene Burgett,Bradley S. DeHoff,Shawn T. Estrem,Lori Fritz,Dong-Jing Fu,Wendy Fuller,Chad D. Geringer,Raymond Gilmour,Jennifer S. Glass,Hamid Khoja,Angelika R. Kraft,Robert E. Lagace,Donald J. LeBlanc,Linda N. Lee,Elliot J. Lefkowitz,Jin Lu,Patti Matsushima,Scott M. McAhren,Margaret A. Mchenney,Kevin McLeaster,Christopher W. Mundy,Thalia I. Nicas,Franklin H. Norris,MaryJeanne O'Gara,Robert B. Peery,Gregory T. Robertson,Pamela Kay Rockey,Pei-Ming Sun,Malcolm E. Winkler,Yong Yang,Michelle Young-Bellido,Genshi Zhao,Christopher A. Zook,Richard H. Baltz,S. Richard Jaskunas,Paul Robert Rosteck,Paul L. Skatrud,John I. Glass +41 more
TL;DR: In the analysis of the genome, a large number of new uncharacterized genes predicted to encode proteins that either reside on the surface of the cell or are secreted are identified and there may be new targets for vaccine and antibiotic development.
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Genes encoding multiple drug resistance-like proteins in Aspergillus fumigatus and Aspergillus flavus.
TL;DR: Polymerase chain reaction using degenerate primers was used to identify genes encoding proteins of the ATP-binding cassette superfamily in As pergillus fumigatus and Aspergillus flavus, finding that AfuMDR1 and AflMDR2-encoded proteins bear a high degree of similarity to the Schizosaccharomyces pombe leptomycin B resistance protein and to human MDR1.
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Identification and Characterization of a Monofunctional Glycosyltransferase from Staphylococcus aureus
Q. May Wang,Robert B. Peery,Robert B. Johnson,William E. Alborn,Wu-Kuang Yeh,Paul L. Skatrud +5 more
TL;DR: The results suggest that this enzyme is natively present in S. aureus cells and that it may play a role in bacterial cell wall biosynthesis.
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Cloning and characterization of cnemdr1: a cryptococcus neoformans gene encoding a protein related to multidrug resistance proteins
TL;DR: CneMDR1, a gene encoding a protein related to several eukaryotic multidrug resistance (MDR) proteins, was identified, cloned, and characterized from a clinical isolate of Cryptococcus neoformans (Cn) (strain M1-106).
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Open Innovation for Phenotypic Drug Discovery The PD2 Assay Panel
Jonathan A. Lee,Shaoyou Chu,Francis S. Willard,Karen Leigh Cox,Rachelle J. Sells Galvin,Robert B. Peery,Sarah E. Oliver,Jennifer Oler,Tamika D. Meredith,Steven A. Heidler,Wendy H. Gough,Saba Husain,Alan David Palkowitz,Christopher M. Moxham +13 more
TL;DR: Screening results for the first 4691 compounds submitted to PD2 have confirmed hit rates from 1.6% to 10%, with the majority of active compounds exhibiting acceptable potency and selectivity, indicating that chemical diversity from open source collaborations complements internal sources.
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