The combined action of CTCF and its testis-specific paralog BORIS is essential for spermatogenesis.

Rivero-Hinojosa, Samuel; Pugacheva, Elena M; Kang, Sungyun; Méndez-Catalá, Claudia Fabiola; Kovalchuk, Alexander L; Strunnikov, Alexander V; Loukinov, Dmitri; Lee, Jeannie T et al. · Nat Commun · 2021

basic_science · Level V

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Abstract

CTCF is a key organizer of the 3D genome. Its specialized paralog, BORIS, heterodimerizes with CTCF but is expressed only in male germ cells and in cancer states. Unexpectedly, BORIS-null mice have only minimal germ cell defects. To understand the CTCF-BORIS relationship, mouse models with varied CTCF and BORIS levels were generated. Whereas Ctcf<sup>+/+</sup>Boris<sup>+/+</sup>, Ctcf<sup>+/-</sup>Boris<sup>+/+</sup>, and Ctcf<sup>+/+</sup>Boris<sup>-/-</sup> males are fertile, Ctcf<sup>+/-</sup>Boris<sup>-/-</sup> (Compound Mutant; CM) males are sterile. Testes with combined depletion of both CTCF and BORIS show reduced size, defective meiotic recombination, increased apoptosis, and malformed spermatozoa. Although CM germ cells exhibit only 25% of CTCF WT expression, chromatin binding of CTCF is preferentially lost from CTCF-BORIS heterodimeric sites. Furthermore, CM testes lose the expression of a large number of spermatogenesis genes and gain the expression of developmentally inappropriate genes that are "toxic" to fertility. Thus, a combined action of CTCF and BORIS is required to both repress pre-meiotic genes and activate post-meiotic genes for a complete spermatogenesis program.

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