Department of Genetics, Blavatnik Institute, Harvard Medical School, Boston, MA 02115.
Department of Genetics, Blavatnik Institute, Harvard Medical School, Boston, MA 02115
Proc Natl Acad Sci U S A. 2021 Apr 27;118(17). doi: 10.1073/pnas.2016363118.
The position of recombination events established along chromosomes in early prophase I and the chromosome remodeling that takes place in late prophase I are intrinsically linked steps of meiosis that need to be tightly regulated to ensure accurate chromosome segregation and haploid gamete formation. Here, we show that RAD-51 foci, which form at the sites of programmed meiotic DNA double-strand breaks (DSBs), exhibit a biased distribution toward off-centered positions along the chromosomes in wild-type , and we identify two meiotic roles for chromatin-associated protein HIM-17 that ensure normal chromosome remodeling in late prophase I. During early prophase I, HIM-17 regulates the distribution of DSB-dependent RAD-51 foci and crossovers on chromosomes, which is critical for the formation of distinct chromosome subdomains (short and long arms of the bivalents) later during chromosome remodeling. During late prophase I, HIM-17 promotes the normal expression and localization of protein phosphatases GSP-1/2 to the surface of the bivalent chromosomes and may promote GSP-1 phosphorylation, thereby antagonizing Aurora B kinase AIR-2 loading on the long arms and preventing premature loss of sister chromatid cohesion. We propose that HIM-17 plays distinct roles at different stages during meiotic progression that converge to promote normal chromosome remodeling and accurate chromosome segregation.
在早期细线期,重组事件在染色体上的定位以及在晚期细线期发生的染色体重塑,是减数分裂中内在相关的步骤,需要严格调控,以确保染色体的准确分离和单倍体配子的形成。在这里,我们表明,在野生型中,在有丝分裂 DNA 双链断裂(DSB)的预定位置形成的 RAD-51 焦点,表现出沿着染色体向偏心位置的偏置分布,我们确定了与染色质相关的蛋白质 HIM-17 的两个减数分裂作用,以确保晚期细线期正常的染色体重塑。在早期细线期,HIM-17 调节 DSB 依赖的 RAD-51 焦点和染色体上的交叉分布,这对于稍后在染色体重塑过程中形成独特的染色体亚域(二价体的短臂和长臂)至关重要。在晚期细线期,HIM-17 促进了蛋白磷酸酶 GSP-1/2 在二价体染色体表面的正常表达和定位,并可能促进 GSP-1 的磷酸化,从而拮抗 Aurora B 激酶 AIR-2 在长臂上的加载,并防止姐妹染色单体粘连的过早丢失。我们提出,HIM-17 在减数分裂进程的不同阶段发挥不同的作用,这些作用汇聚在一起,促进正常的染色体重塑和准确的染色体分离。