Department of Genetics and Genome Sciences, Case Western Reserve University School of Medicine, Cleveland, OH, 44106-4955, USA.
Nat Commun. 2018 Oct 8;9(1):4155. doi: 10.1038/s41467-018-06697-x.
The preservation of germ cell sexual identity is essential for gametogenesis. Here we show that H3K9me3-mediated gene silencing is integral to female fate maintenance in Drosophila germ cells. Germ cell specific loss of the H3K9me3 pathway members, the H3K9 methyltransferase SETDB1, WDE, and HP1a, leads to ectopic expression of genes, many of which are normally expressed in testis. SETDB1 controls the accumulation of H3K9me3 over a subset of these genes without spreading into neighboring loci. At phf7, a regulator of male germ cell sexual fate, the H3K9me3 peak falls over the silenced testis-specific transcription start site. Furthermore, H3K9me3 recruitment to phf7 and repression of testis-specific transcription is dependent on the female sex determination gene Sxl. Thus, female identity is secured by an H3K9me3 epigenetic pathway in which Sxl is the upstream female-specific regulator, SETDB1 is the required chromatin writer, and phf7 is one of the critical SETDB1 target genes.
生殖细胞性别的保存对于配子发生至关重要。在这里,我们表明 H3K9me3 介导的基因沉默是果蝇生殖细胞中维持雌性命运的重要因素。生殖细胞特异性缺失 H3K9me3 途径成员,包括 H3K9 甲基转移酶 SETDB1、WDE 和 HP1a,会导致基因的异位表达,其中许多基因通常在睾丸中表达。SETDB1 控制着这些基因中一部分的 H3K9me3 的积累,而不会扩散到相邻的基因座。在 phf7 这个调控雄性生殖细胞性别的基因中,H3K9me3 峰落在沉默的睾丸特异性转录起始位点上。此外,H3K9me3 募集到 phf7 并抑制睾丸特异性转录依赖于雌性性别决定基因 Sxl。因此,雌性身份是通过一种 H3K9me3 表观遗传途径来保证的,其中 Sxl 是上游的雌性特异性调节因子,SETDB1 是必需的染色质写作者,而 phf7 是 SETDB1 的关键靶基因之一。