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Synthesis, X-ray Analysis, and Biological Evaluation of a New Class of Stereopure Lactam-Based HIV-1 Protease Inhibitors
Author(s) -
Xiongyu Wu,
Per Öhrngren,
Advait A. Joshi,
Alejandro Trejos,
Magnus Persson,
Riina K. Arvela,
Hans Wallberg,
Lotta Vrang,
Åsa Rosenquist,
Bertil Samuelsson,
Johan Unge,
Mats Larhed
Publication year - 2012
Publication title -
journal of medicinal chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.01
H-Index - 261
eISSN - 1520-4804
pISSN - 0022-2623
DOI - 10.1021/jm201620t
Subject(s) - chemistry , protease , lactam , stereochemistry , hiv 1 protease , hydrogen bond , human immunodeficiency virus (hiv) , potency , enzyme , enzyme inhibitor , ec50 , protease inhibitor (pharmacology) , combinatorial chemistry , in vitro , molecule , biochemistry , organic chemistry , viral load , antiretroviral therapy , virology , biology
In an effort to identify a new class of druglike HIV-1 protease inhibitors, four different stereopure β-hydroxy γ-lactam-containing inhibitors have been synthesized, biologically evaluated, and cocrystallized. The impact of the tether length of the central spacer (two or three carbons) was also investigated. A compound with a shorter tether and (3R,4S) absolute configuration exhibited high activity with a K(i) of 2.1 nM and an EC(50) of 0.64 μM. Further optimization by decoration of the P1' side chain furnished an even more potent HIV-1 protease inhibitor (K(i) = 0.8 nM, EC(50) = 0.04 μM). According to X-ray analysis, the new class of inhibitors did not fully succeed in forming two symmetric hydrogen bonds to the catalytic aspartates. The crystal structures of the complexes further explain the difference in potency between the shorter inhibitors (two-carbon spacer) and the longer inhibitors (three-carbon spacer).

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