Discovery and molecular basis of subtype-selective cyclophilin inhibitors

被引:0
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作者
Alexander A. Peterson
Aziz M. Rangwala
Manish K. Thakur
Patrick S. Ward
Christie Hung
Ian R. Outhwaite
Alix I. Chan
Dmitry L. Usanov
Vamsi K. Mootha
Markus A. Seeliger
David R. Liu
机构
[1] Merkin Institute of Transformative Technologies in Healthcare,Department of Chemistry and Chemical Biology
[2] Broad Institute of MIT and Harvard,Howard Hughes Medical Institute
[3] Harvard University,Department of Pharmacological Sciences
[4] Harvard University,Howard Hughes Medical Institute and Departments of Molecular Biology and Medicine
[5] Stony Brook University,Department of Systems Biology
[6] Broad Institute of MIT and Harvard,undefined
[7] Massachusetts General Hospital,undefined
[8] Harvard Medical School,undefined
来源
Nature Chemical Biology | 2022年 / 18卷
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摘要
Although cyclophilins are attractive targets for probing biology and therapeutic intervention, no subtype-selective cyclophilin inhibitors have been described. We discovered novel cyclophilin inhibitors from the in vitro selection of a DNA-templated library of 256,000 drug-like macrocycles for cyclophilin D (CypD) affinity. Iterated macrocycle engineering guided by ten X-ray co-crystal structures yielded potent and selective inhibitors (half maximal inhibitory concentration (IC50) = 10 nM) that bind the active site of CypD and also make novel interactions with non-conserved residues in the S2 pocket, an adjacent exo-site. The resulting macrocycles inhibit CypD activity with 21- to >10,000-fold selectivity over other cyclophilins and inhibit mitochondrial permeability transition pore opening in isolated mitochondria. We further exploited S2 pocket interactions to develop the first cyclophilin E (CypE)-selective inhibitor, which forms a reversible covalent bond with a CypE S2 pocket lysine, and exhibits 30- to >4,000-fold selectivity over other cyclophilins. These findings reveal a strategy to generate isoform-selective small-molecule cyclophilin modulators, advancing their suitability as targets for biological investigation and therapeutic development.
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页码:1184 / 1195
页数:11
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