| Literature DB >> 16078837 |
Stephen Hanessian1, Hongying Yun, Yihua Hou, Gaoqiang Yang, Malken Bayrakdarian, Eric Therrien, Nicolas Moitessier, Silvio Roggo, Siem Veenstra, Marina Tintelnot-Blomley, Jean-Michel Rondeau, Christian Ostermeier, André Strauss, Paul Ramage, Paolo Paganetti, Ulf Neumann, Claudia Betschart.
Abstract
Molecular modeling based on the X-ray crystal structure of the Tang-Ghosh heptapeptide inhibitor 1 (OM99-2) of BACE led to the design and synthesis of a series of constrained P(1)' analogues. A cyclopentane ring was incorporated in 1 spanning the P(1)' Ala methyl group and the adjacent methylene carbon atom of the chain. Progressive truncation at the P(2)'-P(4)' sites led to a potent truncated analogue 5 with good selectivity over Cathepsin D. Using the same backbone replacement concept, a series of cyclopentane, cyclopentanone, tetrahydrofuran, pyrrolidine, and pyrrolidinone analogues were synthesized with considerable variation at the P and P' sites. The cyclopentanone and 2-pyrrolidinone analogues 45 and 57 showed low nM BACE inhibition. X-ray cocrystal structures of two analogues 5 and 45 revealed excellent convergence with the original inhibitor 1 structure while providing new insights into other interactions which could be exploited for future modifications.Entities:
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Year: 2005 PMID: 16078837 DOI: 10.1021/jm050142+
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446