SCML2 establishes the male germline epigenome through regulation of histone H2A ubiquitination

SCML2 通过调节组蛋白 H2A 泛素化建立男性生殖系表观基因组

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作者:Kazuteru Hasegawa, Ho-Su Sin, So Maezawa, Tyler J Broering, Andrey V Kartashov, Kris G Alavattam, Yosuke Ichijima, Fan Zhang, W Clark Bacon, Kenneth D Greis, Paul R Andreassen, Artem Barski, Satoshi H Namekawa

Abstract

Gametogenesis is dependent on the expression of germline-specific genes. However, it remains unknown how the germline epigenome is distinctly established from that of somatic lineages. Here we show that genes commonly expressed in somatic lineages and spermatogenesis-progenitor cells undergo repression in a genome-wide manner in late stages of the male germline and identify underlying mechanisms. SCML2, a germline-specific subunit of a Polycomb repressive complex 1 (PRC1), establishes the unique epigenome of the male germline through two distinct antithetical mechanisms. SCML2 works with PRC1 and promotes RNF2-dependent ubiquitination of H2A, thereby marking somatic/progenitor genes on autosomes for repression. Paradoxically, SCML2 also prevents RNF2-dependent ubiquitination of H2A on sex chromosomes during meiosis, thereby enabling unique epigenetic programming of sex chromosomes for male reproduction. Our results reveal divergent mechanisms involving a shared regulator by which the male germline epigenome is distinguished from that of the soma and progenitor cells.

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