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991.
Bin Ma Kevin M. Guckian Edward Yin-Shiang Lin Wen-Cherng Lee Daniel Scott Gnanasambandam Kumaravel Timothy L. Macdonald Kevin R. Lynch Cheryl Black Sowmya Chollate Kyungmin Hahm Gregg Hetu Ping Jin Yi Luo Ellen Rohde Anthony Rossomando Robert Scannevin Joy Wang Chunhua Yang 《Bioorganic & medicinal chemistry letters》2010,20(7):2264-2269
Modifying FTY720, an immunosuppressant modulator, led to a new series of well phosphorylated tetralin analogs as potent S1P1 receptor agonists. The stereochemistry effect of tetralin ring was probed, and (?)-(R)-2-amino-2-((S)-6-octyl-1,2,3,4-tetrahydronaphthalen-2-yl)propan-1-ol was identified as a good SphK2 substrate and potent S1P1 agonist with good oral bioavailability. 相似文献
992.
Daniel A. Bachovchin Monique R. Wolfe Kim Masuda Steven J. Brown Timothy P. Spicer Virneliz Fernandez-Vega Peter Chase Peter S. Hodder Hugh Rosen Benjamin F. Cravatt 《Bioorganic & medicinal chemistry letters》2010,20(7):2254-2258
We recently described a fluorescence polarization platform for competitive activity-based protein profiling (fluopol-ABPP) that enables high-throughput inhibitor screening for enzymes with poorly characterized biochemical activity. Here, we report the discovery of a class of oxime ester inhibitors for the unannotated serine hydrolase RBBP9 from a full-deck (200,000+ compound) fluopol-ABPP screen conducted in collaboration with the Molecular Libraries Screening Center Network (MLSCN). We show that these compounds covalently inhibit RBBP9 by modifying enzyme’s active site serine nucleophile and, based on competitive ABPP in cell and tissue proteomes, are selective for RBBP9 relative to other mammalian serine hydrolases. 相似文献
993.
Wilna J. Moree Florence Jovic Timothy Coon Jinghua Yu Bin-Feng Li Fabio C. Tucci Dragan Marinkovic Raymond S. Gross Siobhan Malany Margaret J. Bradbury Lisa M. Hernandez Zhihong O’Brien Jianyun Wen Hua Wang Samuel R.J. Hoare Robert E. Petroski Aida Sacaan Ajay Madan Paul D. Crowe Graham Beaton 《Bioorganic & medicinal chemistry letters》2010,20(7):2316-2320
SAR of lead benzothiophene H1-antihistamine 2 was explored to identify backup candidates with suitable pharmacokinetic profiles for an insomnia program. Several potent and selective H1-antihistamines with a range of projected half-lives in humans were identified. Compound 16d had a suitable human half-life as demonstrated in a human microdose study, but variability in pharmacokinetic profile, attributed to metabolic clearance, prevented further development of this compound. Compound 28b demonstrated lower predicted clearance in preclinical studies, and may represent a more suitable backup compound. 相似文献
994.
Wilna J. Moree Bin-Feng Li Said Zamani-Kord Jinghua Yu Timothy Coon Charles Huang Dragan Marinkovic Fabio C. Tucci Siobhan Malany Margaret J. Bradbury Lisa M. Hernandez Jianyun Wen Hua Wang Samuel R.J. Hoare Robert E. Petroski Kayvon Jalali Chun Yang Aida Sacaan Ajay Madan Paul D. Crowe Graham Beaton 《Bioorganic & medicinal chemistry letters》2010,20(19):5874-5878
Analogs of the known H1-antihistamine R-dimethindene with suitable selectivity for key GPCRs, P450 enzymes and hERG channel were assessed for metabolism profile and in vivo properties. Several analogs were determined to exhibit diverse metabolism. One of these compounds, 10a, showed equivalent efficacy in a rat EEG/EMG model to a previously identified clinical candidate and a potentially superior pharmacokinetic profile as determined from a human microdose study. 相似文献
995.
Steven T. Staben Timothy P. Heffron Daniel P. Sutherlin Seema R. Bhat Georgette M. Castanedo Irina S. Chuckowree Jenna Dotson Adrian J. Folkes Lori S. Friedman Leslie Lee John Lesnick Cristina Lewis Jeremy M. Murray Jim Nonomiya Alan G. Olivero Emile Plise Jodie Pang Wei Wei Prior Laurent Salphati Lionel Rouge Bing-Yan Zhu 《Bioorganic & medicinal chemistry letters》2010,20(20):6048-6051
Starting from HTS hit 1a, X-ray co-crystallization and molecular modeling were used to design potent and selective inhibitors of PI3-kinase. Bioavailablity in this series was improved through careful modulation of physicochemical properties. Compound 12 displayed in vivo knockdown of PI3K pharmacodynamic markers such as pAKT, pPRAS40, and pS6RP in a PC3 prostate cancer xenograft model. 相似文献
996.
T. Eric Ballard Xia Wang Igor Olekhnovich Taylor Koerner Craig Seymour Paul S. Hoffman Timothy L. Macdonald 《Bioorganic & medicinal chemistry letters》2010,20(12):3537-3539
Head group analogues of the antibacterial and antiparasitic drug nitazoxanide (NTZ) are presented. A library of 39 analogues was synthesized and assayed for their ability to suppress growth of Helicobacter pylori, Campylobacter jejuni, Clostridium difficile and inhibit NTZ target pyruvate:ferredoxin oxidoreductase (PFOR). Two head groups assayed recapitulated NTZ activity and possessed improved activity over their 2-amino-5-nitrothiazole counterparts, demonstrating that head group modification is a viable route for the synthesis of NTZ-related antibacterial analogues. 相似文献
997.
998.
Garret Suen Jarrod J. Scott Frank O. Aylward Sandra M. Adams Susannah G. Tringe Adrián A. Pinto-Tomás Clifton E. Foster Markus Pauly Paul J. Weimer Kerrie W. Barry Lynne A. Goodwin Pascal Bouffard Lewyn Li Jolene Osterberger Timothy T. Harkins Steven C. Slater Timothy J. Donohue Cameron R. Currie 《PLoS genetics》2010,6(9)
Herbivores can gain indirect access to recalcitrant carbon present in plant cell walls through symbiotic associations with lignocellulolytic microbes. A paradigmatic example is the leaf-cutter ant (Tribe: Attini), which uses fresh leaves to cultivate a fungus for food in specialized gardens. Using a combination of sugar composition analyses, metagenomics, and whole-genome sequencing, we reveal that the fungus garden microbiome of leaf-cutter ants is composed of a diverse community of bacteria with high plant biomass-degrading capacity. Comparison of this microbiome''s predicted carbohydrate-degrading enzyme profile with other metagenomes shows closest similarity to the bovine rumen, indicating evolutionary convergence of plant biomass degrading potential between two important herbivorous animals. Genomic and physiological characterization of two dominant bacteria in the fungus garden microbiome provides evidence of their capacity to degrade cellulose. Given the recent interest in cellulosic biofuels, understanding how large-scale and rapid plant biomass degradation occurs in a highly evolved insect herbivore is of particular relevance for bioenergy. 相似文献
999.
Duane L. Guernsey Haiyan Jiang Karen Bedard Susan C. Evans Meghan Ferguson Makoto Matsuoka Christine Macgillivray Mathew Nightingale Scott Perry Andrea L. Rideout Andrew Orr Mark Ludman David L. Skidmore Timothy Benstead Mark E. Samuels 《PLoS genetics》2010,6(8)
Charcot-Marie-Tooth disease (CMT) represents a family of related sensorimotor neuropathies. We studied a large family from a rural eastern Canadian community, with multiple individuals suffering from a condition clinically most similar to autosomal recessive axonal CMT, or AR-CMT2. Homozygosity mapping with high-density SNP genotyping of six affected individuals from the family excluded 23 known genes for various subtypes of CMT and instead identified a single homozygous region on chromosome 9, at 122,423,730–129,841,977 Mbp, shared identical by state in all six affected individuals. A homozygous pathogenic variant was identified in the gene encoding leucine rich repeat and sterile alpha motif 1 (LRSAM1) by direct DNA sequencing of genes within the region in affected DNA samples. The single nucleotide change mutates an intronic consensus acceptor splicing site from AG to AA. Direct analysis of RNA from patient blood demonstrated aberrant splicing of the affected exon, causing an obligatory frameshift and premature truncation of the protein. Western blotting of immortalized cells from a homozygous patient showed complete absence of detectable protein, consistent with the splice site defect. LRSAM1 plays a role in membrane vesicle fusion during viral maturation and for proper adhesion of neuronal cells in culture. Other ubiquitin ligases play documented roles in neurodegenerative diseases. LRSAM1 is a strong candidate for the causal gene for the genetic disorder in our kindred. 相似文献
1000.