Small-Molecule Inhibition of BRDT for Male Contraception

Martin M. Matzuk(Baylor College of Medicine), Michael R. McKeown(Dana-Farber Cancer Institute), P. Filippakopoulos(University of Oxford), Qinglei Li(Texas A&M University), Lang Ma(Baylor College of Medicine), Julio E. Agno(Baylor College of Medicine), Madeleine E. Lemieux(Dana-Farber Cancer Institute), S. Picaud(University of Oxford), Richard N. Yu(Boston Children's Hospital), Jun Qi(Dana-Farber Cancer Institute), Stefan Knapp(George Washington University), James E. Bradner(Harvard University)
Cell
August 1, 2012
Cited by 418Open Access
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Abstract

A pharmacologic approach to male contraception remains a longstanding challenge in medicine. Toward this objective, we explored the spermatogenic effects of a selective small-molecule inhibitor (JQ1) of the bromodomain and extraterminal (BET) subfamily of epigenetic reader proteins. Here, we report potent inhibition of the testis-specific member BRDT, which is essential for chromatin remodeling during spermatogenesis. Biochemical and crystallographic studies confirm that occupancy of the BRDT acetyl-lysine binding pocket by JQ1 prevents recognition of acetylated histone H4. Treatment of mice with JQ1 reduced seminiferous tubule area, testis size, and spermatozoa number and motility without affecting hormone levels. Although JQ1-treated males mate normally, inhibitory effects of JQ1 evident at the spermatocyte and round spermatid stages cause a complete and reversible contraceptive effect. These data establish a new contraceptive that can cross the blood:testis boundary and inhibit bromodomain activity during spermatogenesis, providing a lead compound targeting the male germ cell for contraception.


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