Department of Biological Sciences and RNA Institute, University at Albany SUNY, Albany, NY 12222, USA.
Department of Biological Sciences and RNA Institute, University at Albany SUNY, Albany, NY 12222, USA; Department of Biomedical Sciences, School of Public Health, University at Albany SUNY, Albany, NY 12222, USA.
Dev Cell. 2023 Nov 20;58(22):2580-2596.e6. doi: 10.1016/j.devcel.2023.08.014. Epub 2023 Sep 5.
Germ cells differentiate into oocytes that launch the next generation upon fertilization. How the highly specialized oocyte acquires this distinct cell fate is poorly understood. During Drosophila oogenesis, H3K9me3 histone methyltransferase SETDB1 translocates from the cytoplasm to the nucleus of germ cells concurrently with oocyte specification. Here, we discovered that nuclear SETDB1 is required for silencing a cohort of differentiation-promoting genes by mediating their heterochromatinization. Intriguingly, SETDB1 is also required for upregulating 18 of the ∼30 nucleoporins (Nups) that compose the nucleopore complex (NPC), promoting NPC formation. NPCs anchor SETDB1-dependent heterochromatin at the nuclear periphery to maintain H3K9me3 and gene silencing in the egg chambers. Aberrant gene expression due to the loss of SETDB1 or Nups results in the loss of oocyte identity, cell death, and sterility. Thus, a feedback loop between heterochromatin and NPCs promotes transcriptional reprogramming at the onset of oocyte specification, which is critical for establishing oocyte identity.
生殖细胞分化为卵母细胞,在受精后启动下一代。高度特化的卵母细胞如何获得这种独特的细胞命运还知之甚少。在果蝇卵子发生过程中,H3K9me3 组蛋白甲基转移酶 SETDB1 与卵母细胞的特化同时从细胞质转位到生殖细胞的细胞核。在这里,我们发现核 SETDB1 通过介导其异染色质化来沉默一组促进分化的基因是必需的。有趣的是,SETDB1 对于上调约 30 个核孔蛋白(Nups)中的 18 个组成核孔复合物(NPC)也是必需的,促进 NPC 的形成。NPC 可以将 SETDB1 依赖性异染色质锚定在核周,以维持卵囊中核仁的 H3K9me3 和基因沉默。由于 SETDB1 或 Nups 的丢失导致异常基因表达,导致卵母细胞身份丧失、细胞死亡和不育。因此,异染色质和 NPC 之间的反馈环促进了卵母细胞特化开始时的转录重编程,这对于建立卵母细胞身份至关重要。