Erli Zhang
Pfizer
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Publication
Featured researches published by Erli Zhang.
Nature Structural & Molecular Biology | 2004
Jeffrey F. Ohren; Huifen Chen; Alexander Pavlovsky; Christopher Whitehead; Erli Zhang; Peter Kuffa; Chunhong Yan; Patrick McConnell; Cindy Spessard; Craig Banotai; W. Thomas Mueller; Amy Delaney; Charles Omer; Judith Sebolt-Leopold; David T. Dudley; Iris K. Leung; Cathlin Marie Flamme; Joseph Scott Warmus; Michael Kaufman; Stephen Douglas Barrett; Haile Tecle; Charles A. Hasemann
MEK1 and MEK2 are closely related, dual-specificity tyrosine/threonine protein kinases found in the Ras/Raf/MEK/ERK mitogen-activated protein kinase (MAPK) signaling pathway. Approximately 30% of all human cancers have a constitutively activated MAPK pathway, and constitutive activation of MEK1 results in cellular transformation. Here we present the X-ray structures of human MEK1 and MEK2, each determined as a ternary complex with MgATP and an inhibitor to a resolution of 2.4 Å and 3.2 Å, respectively. The structures reveal that MEK1 and MEK2 each have a unique inhibitor-binding pocket adjacent to the MgATP-binding site. The presence of the potent inhibitor induces several conformational changes in the unphosphorylated MEK1 and MEK2 enzymes that lock them into a closed but catalytically inactive species. Thus, the structures reported here reveal a novel, noncompetitive mechanism for protein kinase inhibition.
Bioorganic & Medicinal Chemistry Letters | 2008
Joseph Scott Warmus; Cathlin Marie Flamme; Lu Yan Zhang; Stephen Douglas Barrett; Alexander James Bridges; Huifen Chen; Richard Gowan; Michael Kaufman; Judy Sebolt-Leopold; Wilbur R. Leopold; Ronald Merriman; Jeffrey F. Ohren; Alexander Pavlovsky; Sally Przybranowski; Haile Tecle; Heather Valik; Christopher Whitehead; Erli Zhang
This paper reports a second generation MEK inhibitor. The previously reported potent and efficacious MEK inhibitor, PD-184352 (CI-1040), contains an integral hydroxamate moiety. This compound suffered from less than ideal solubility and metabolic stability. An oxadiazole moiety behaves as a bioisostere for the hydroxamate group, leading to a more metabolically stable and efficacious MEK inhibitor.
Chemical Biology & Drug Design | 2007
Chad A. Van Huis; Christopher F. Bigge; Agustin Casimiro-Garcia; Wayne L. Cody; Danette Andrea Dudley; Kevin J. Filipski; Ronald J. Heemstra; Jeffrey T. Kohrt; Lakshmi Narasimhan; Robert P. Schaum; Erli Zhang; John W. Bryant; Staci Haarer; Nancy Janiczek; Robert J. Leadley; Thomas McClanahan; J. Thomas Peterson; Kathleen M. Welch; Jeremy J. Edmunds
A novel series of pyrrolidine‐1,2‐dicarboxamides was discovered as factor Xa inhibitors using structure‐based drug design. This series consisted of a neutral 4‐chlorophenylurea P1, a biphenylsulfonamide P4 and a d‐proline scaffold (1, IC50 = 18 nm). Optimization of the initial hit resulted in an orally bioavailable, subnanomolar inhibitor of factor Xa (13, IC50 = 0.38 nm), which was shown to be efficacious in a canine electrolytic model of thrombosis with minimal bleeding.
Bioorganic & Medicinal Chemistry Letters | 2012
Mark L. Boys; Feng Bian; James Bernard Kramer; Christopher L. Chio; Xiao Dan Ren; Huifen Chen; Stephen Douglas Barrett; Donna M. Iula; Gary Frederick Filzen; Maria N. Nguyen; Paul T. Angell; Victoria L. Downs; Zhi Wang; Neil Raheja; Edmund L. Ellsworth; Stephen A. Fakhoury; Larry D. Bratton; Paul R. Keller; Richard Gowan; Elena M. Drummond; Samarendra N. Maiti; Mostofa A. Hena; Leroy Lu; Patrick McConnell; John D. Knafels; Venkataraman Thanabal; Fang Sun; Diane Alessi; Ann McCarthy; Erli Zhang
A series of 2-(1H-pyrazol-1-yl)pyridines are described as inhibitors of ALK5 (TGFβ receptor I kinase). Modeling compounds in the ALK5 kinase domain enabled some optimization of potency via substitutions on the pyrazole core. One of these compounds PF-03671148 gave a dose dependent reduction in TGFβ induced fibrotic gene expression in human fibroblasts. A similar reduction in fibrotic gene expression was observed when PF-03671148 was applied topically in a rat wound repair model. Thus these compounds have potential utility for the prevention of dermal scarring.
Journal of Medicinal Chemistry | 2000
Mark R. Barvian; Diane H. Boschelli; Jennifer Cossrow; Ellen Myra Dobrusin; Ali Fattaey; Alex Fritsch; David W. Fry; Patricia Harvey; Paul A. Keller; Michelle D. Garrett; Frances La; Wilbur R. Leopold; Dennis Joseph Mcnamara; Maire Quin; Susanne Trumpp-Kallmeyer; Peter Toogood; Zhipei Wu; Erli Zhang
Bioorganic & Medicinal Chemistry | 2007
Noel A. Powell; Fred L. Ciske; Cuiman Cai; Daniel D. Holsworth; Ken Mennen; Chad A. Van Huis; Mehran Jalaie; Jacqueline E. Day; Michelle Mastronardi; Pat McConnell; Igor Mochalkin; Erli Zhang; Michael J. Ryan; John W. Bryant; Wendy Collard; Suzie Ferreira; Chungang Gu; Roxane Collins; Jeremy J. Edmunds
Analytical Biochemistry | 2007
Ronald W. Sarver; Jeanette Peevers; Wayne L. Cody; Fred L. Ciske; Jim Dyer; S. Donald Emerson; Jeanne C. Hagadorn; Daniel D. Holsworth; Mehran Jalaie; Michael Kaufman; Michelle Mastronardi; Patrick McConnell; Noel A. Powell; John Quin; Chad A. Van Huis; Erli Zhang; Igor Mochalkin
Bioorganic & Medicinal Chemistry Letters | 2006
Daniel D. Holsworth; Cuiman Cai; Xue-Min Cheng; Wayne L. Cody; Dennis M. Downing; Noe Erasga; Chitase Lee; Noel A. Powell; Jeremy J. Edmunds; Michael Andrew Stier; Mehran Jalaie; Erli Zhang; Pat McConnell; Michael J. Ryan; John W. Bryant; Tingsheng Li; Aparna Kasani; Eric Hall; Rajendra Subedi; Mohammad Rahim; Samarendra N. Maiti
Bioorganic & Medicinal Chemistry Letters | 2005
Noel A. Powell; Emma H. Clay; Daniel D. Holsworth; John W. Bryant; Michael J. Ryan; Mehran Jalaie; Erli Zhang; Jeremy J. Edmunds
Bioorganic & Medicinal Chemistry Letters | 2007
Daniel D. Holsworth; Mehran Jalaie; Thomas Richard Belliotti; Cuiman Cai; Wendy Collard; Suzie Ferreira; Noel A. Powell; Michael Andrew Stier; Erli Zhang; Pat McConnell; Igor Mochalkin; Michael J. Ryan; John W. Bryant; Tingsheng Li; Aparna Kasani; Rajendra Subedi; Samarendra N. Maiti; Jeremy J. Edmunds