Sean Timothy Murphy
Takeda Pharmaceutical Company
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Publication
Featured researches published by Sean Timothy Murphy.
Journal of Medicinal Chemistry | 2011
Sean Timothy Murphy; Gordon Alton; Simon Bailey; Sangita M. Baxi; Benjamin J. Burke; Thomas A. Chappie; Jacques Ermolieff; RoseAnn Ferre; Samantha Greasley; Michael J. Hickey; John M. Humphrey; Natasha M. Kablaoui; John Charles Kath; Steven Kazmirski; Michelle Kraus; Stan Kupchinsky; John Li; Laura Lingardo; Matthew A. Marx; Daniel T. Richter; Steven P. Tanis; Khanh Tran; William F. Vernier; Zhi Xie; Min-Jean Yin; Xiao-Hong Yu
Analogues substituted with various amines at the 6-position of the pyrazine ring on (4-amino-7-isopropyl-7H-pyrrolo[2,3-d]pyrimidin-5-yl)pyrazin-2-ylmethanone were discovered as potent and selective inhibitors of PDK1 with potential as anticancer agents. An early lead with 2-pyridine-3-ylethylamine as the pyrazine substituent showed moderate potency and selectivity. Structure-based drug design led to improved potency and selectivity against PI3Kα through a combination of cyclizing the ethylene spacer into a saturated, five-membered ring and substituting on the 4-position of the aryl ring with a fluorine. ADME properties were improved by lowering the lipophilicity with heteroatom replacements in the saturated, five-membered ring. The optimized analogues have a PDK1 Ki of 1 nM and >100-fold selectivity against PI3K/AKT-pathway kinases. The cellular potency of these analogues was assessed by the inhibition of AKT phosphorylation (T308) and by their antiproliferation activity against a number of tumor cell lines.
Bioscience Reports | 2017
Isabelle Tcholakov; Charles E. Grimshaw; Lihong Shi; Andre A. Kiryanov; Sean Timothy Murphy; Christopher J. Larson; Artur Plonowski; Jacques Ermolieff
Prolyl hydroxylases (PHDs) down-regulate the level of hypoxia-inducible factors (HIFs) by hydroxylating key proline residues that trigger the degradation of the protein and affect the cell and its ability to respond to hypoxic stress. Several small molecule PHD inhibitors are now in various preclinical and clinical stages for the treatment of anemia. The present study provides a detail kinetic analysis for some of these inhibitors. The data generated in the present study suggest that these compounds are reversible and compete directly with the co-substrate, 2-oxoglutarate (2-OG) for binding at the enzyme active site. Most of these compounds are pan PHD inhibitors and exhibit a time-dependent inhibition (TDI) mechanism due to an extremely slow dissociation rate constant, koff, and a long residence time.
Journal of Organic Chemistry | 1995
Sean Timothy Murphy; Xiquiang Yang; Gary B. Schuster
Journal of Organic Chemistry | 2012
Manjinder S. Lall; Garrett Hoge; Tuan P. Tran; William Kissel; Sean Timothy Murphy; Clarke B. Taylor; Kim Marie Hutchings; Brian Samas; Edmund L. Ellsworth; Timothy Curran; H. D. Hollis Showalter
Archive | 2004
Edmund Lee Ellsworth; Kim Marie Hutchings; Sean Timothy Murphy; Sharon Anne Powell; Richard John Sciotti; Tuan Phong Tran
Archive | 2004
Edmund Lee Ellsworth; Denton Wade Hoyer; Kim Marie Hutchings; Jackie Diane Kendall; Sean Timothy Murphy; Jeremy T. Starr; Tuan Phong Tran
Archive | 2017
Jason W. Brown; Melinda Davis; Anthony Ivetac; Benjamin Jones; Andre A. Kiryanov; Jon Kuehler; Marion Lanier; Joanne Miura; Sean Timothy Murphy; Xiaolun Wang
Archive | 2015
Jason W. Brown; Melinda Davis; Anthony Ivetac; Benjamin Jones; Andre A. Kiryanov; Jon Kuehler; Marion Lanier; Joanne Miura; Sean Timothy Murphy; Xiaolun Wang
Archive | 2014
Jason W. Brown; Melinda Davis; Anthony Ivetac; Benjamin Jones; Andre A. Kiryanov; Jon Kuehler; Marion Lanier; Joanne Miura; Sean Timothy Murphy; Xiaolun Wang
Archive | 2014
Jason W. Brown; Melinda Davis; Anthony Ivetac; Benjamin Jones; Andre A. Kiryanov; Jon Kuehler; Marion Lanier; Joanne Miura; Sean Timothy Murphy; Xiaolun Wang