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果蝇卵母细胞粗线期减数分裂黏连和染色体核心形态发生的调控

Regulation of meiotic cohesion and chromosome core morphogenesis during pachytene in Drosophila oocytes.

作者信息

Khetani Radhika S, Bickel Sharon E

机构信息

Department of Biological Sciences, Dartmouth College, Hanover, NH 03755, USA.

出版信息

J Cell Sci. 2007 Sep 1;120(Pt 17):3123-37. doi: 10.1242/jcs.009977. Epub 2007 Aug 14.

DOI:10.1242/jcs.009977
PMID:17698920
Abstract

During meiosis, cohesion between sister chromatids is required for normal levels of homologous recombination, maintenance of chiasmata and accurate chromosome segregation during both divisions. In Drosophila, null mutations in the ord gene abolish meiotic cohesion, although how ORD protein promotes cohesion has remained elusive. We show that SMC subunits of the cohesin complex colocalize with ORD at centromeres of ovarian germ-line cells. In addition, cohesin SMCs and ORD are visible along the length of meiotic chromosomes during pachytene and remain associated with chromosome cores following DNase I digestion. In flies lacking ORD activity, cohesin SMCs fail to accumulate at oocyte centromeres. Although SMC1 and SMC3 localization along chromosome cores appears normal during early pachytene in ord mutant oocytes, the cores disassemble as meiosis progresses. These data suggest that cohesin loading and/or accumulation at centromeres versus arms is under differential control during Drosophila meiosis. Our experiments also reveal that the alpha-kleisin C(2)M is required for the assembly of chromosome cores during pachytene but is not involved in recruitment of cohesin SMCs to the centromeres. We present a model for how chromosome cores are assembled during Drosophila meiosis and the role of ORD in meiotic cohesion, chromosome core maintenance and homologous recombination.

摘要

在减数分裂过程中,姐妹染色单体之间的黏连对于同源重组的正常水平、交叉的维持以及两个分裂阶段中染色体的准确分离都是必需的。在果蝇中,ord基因的无效突变会消除减数分裂黏连,尽管ORD蛋白如何促进黏连仍不清楚。我们发现黏连蛋白复合体的SMC亚基与ORD在卵巢生殖系细胞的着丝粒处共定位。此外,在粗线期,黏连蛋白SMC和ORD沿着减数分裂染色体的长度可见,并且在DNA酶I消化后仍与染色体核心相关联。在缺乏ORD活性的果蝇中,黏连蛋白SMC无法在卵母细胞着丝粒处积累。尽管在ord突变体卵母细胞的早期粗线期,SMC1和SMC3沿着染色体核心的定位看起来正常,但随着减数分裂的进行,染色体核心会解体。这些数据表明,在果蝇减数分裂过程中,着丝粒与染色体臂上黏连蛋白的加载和/或积累受到不同的调控。我们的实验还表明,α- kleisin C(2)M在粗线期染色体核心的组装中是必需的,但不参与黏连蛋白SMC着丝粒的招募。我们提出了一个关于果蝇减数分裂过程中染色体核心如何组装以及ORD在减数分裂黏连、染色体核心维持和同源重组中的作用的模型。

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