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果蝇帽蛋白的特化对于保护精子端粒至关重要。

Specialization of a Drosophila capping protein essential for the protection of sperm telomeres.

机构信息

Centre de Génétique Moléculaire et Cellulaire, UMR5534, France.

出版信息

Curr Biol. 2010 Dec 7;20(23):2090-9. doi: 10.1016/j.cub.2010.11.013. Epub 2010 Nov 18.

DOI:10.1016/j.cub.2010.11.013
PMID:21093267
Abstract

BACKGROUND

A critical function of telomeres is to prevent fusion of chromosome ends by the DNA repair machinery. In Drosophila somatic cells, assembly of the protecting capping complex at telomeres notably involves the recruitment of HOAP, HP1, and their recently identified partner, HipHop. We previously showed that the hiphop gene was duplicated before the radiation of the melanogaster subgroup of species, giving birth to K81, a unique paternal effect gene specifically expressed in the male germline.

RESULTS

Here we show that K81 specifically associates with telomeres during spermiogenesis, along with HOAP and HP1, and is retained on paternal chromosomes until zygote formation. In K81 mutant testes, capping proteins are not maintained at telomeres in differentiating spermatids, resulting in the transmission of uncapped paternal chromosomes that fail to properly divide during the first zygotic mitosis. Despite the apparent similar capping roles of K81 and HipHop in their respective domain of expression, we demonstrate by in vivo reciprocal complementation analyses that they are not interchangeable. Strikingly, HipHop appeared to be unable to maintain capping proteins at telomeres during the global chromatin remodeling of spermatid nuclei.

CONCLUSIONS

Our data demonstrate that K81 is essential for the maintenance of capping proteins at telomeres in postmeiotic male germ cells. In species of the melanogaster subgroup, HipHop and K81 have not only acquired complementary expression domains, they have also functionally diverged following the gene duplication event. We propose that K81 specialized in the maintenance of telomere protection in the highly peculiar chromatin environment of differentiating male gametes.

摘要

背景

端粒的一个关键功能是防止染色体末端与 DNA 修复机制融合。在果蝇体细胞中,保护帽复合物在端粒上的组装特别涉及 HOAP、HP1 及其最近鉴定的伴侣 HipHop 的招募。我们之前表明,hiphop 基因在黑腹果蝇亚组物种辐射之前发生了复制,产生了 K81,这是一种在雄性生殖细胞中特异性表达的独特的父本效应基因。

结果

在这里,我们表明 K81 在精子发生过程中与 HOAP 和 HP1 特异性地与端粒结合,并在形成合子之前保留在父本染色体上。在 K81 突变体睾丸中,在分化的精母细胞中,帽蛋白不能在端粒处维持,导致未端粒化的父本染色体传递,这些染色体在第一次合子有丝分裂过程中不能正常分裂。尽管 K81 和 HipHop 在其各自的表达域中具有明显相似的帽蛋白作用,但我们通过体内相互互补分析表明它们不能互换。引人注目的是,HipHop 似乎不能在精母细胞核的全局染色质重塑过程中端粒处维持帽蛋白。

结论

我们的数据表明,K81 对于减数后雄性生殖细胞中端粒帽蛋白的维持是必不可少的。在黑腹果蝇亚组的物种中,HipHop 和 K81 不仅获得了互补的表达域,而且在基因复制事件后也在功能上发生了分化。我们提出 K81 专门在分化的雄性配子中高度特殊的染色质环境中端粒保护的维持中起作用。

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