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CAS: 506430-87-1
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Jun Zhang

Shanghai Jiaotong University
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Jun Li

Beijing Normal University
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Shuwei Zhang

Dalian University of Technology
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Bing Yan

Shandong University
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Songqin Liu

Southeast University
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Steven R. Tannenbaum

Massachusetts Institute of Technology
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Thomas L. Poulos

University of California
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Co-reporter: Huiying Li, Heng-Yen Wang, Soosung Kang, Richard B. Silverman, and Thomas L. Poulos
pp: 3702-3707
Publication Date(Web):June 2, 2016
DOI: 10.1021/acs.biochem.6b00261
Development of potent and isoform selective nitric oxide synthase (NOS) inhibitors is challenging because of the structural similarity in the heme active sites. One amino acid difference between NOS isoforms, Asp597 in rat neuronal NOS (nNOS) versus Asn368 in bovine endothelial NOS (eNOS), has been identified as the structural basis for why some dipeptide amide inhibitors bind more tightly to nNOS than to eNOS. We now have found that the same amino acid variation is responsible for substantially different binding modes and affinity for a new class of aminopyridine-based inhibitors.

Brian R. Crane

Cornell University
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Nicolai Lehnert

University of Michigan
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Gary A. Sulikowski

Vanderbilt University
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