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CAF-1对果蝇发育至关重要,并参与表观遗传记忆的维持。

CAF-1 is essential for Drosophila development and involved in the maintenance of epigenetic memory.

作者信息

Song Yanjun, He Feng, Xie Gengqiang, Guo Xiaoyan, Xu Yanjuan, Chen Yixu, Liang Xuehong, Stagljar Igor, Egli Dieter, Ma Jun, Jiao Renjie

机构信息

National Laboratory of Biomacromolecules and State Key Laboratory of Brain and Cognitive Science, Institute of Biophysics, The Chinese Academy of Sciences, Datun Road 15, Chaoyang District, Beijing 100101, China.

出版信息

Dev Biol. 2007 Nov 1;311(1):213-22. doi: 10.1016/j.ydbio.2007.08.039. Epub 2007 Aug 29.

Abstract

DNA synthesis during S-phase and upon DNA repair is accompanied by chromatin assembly. The chromatin assembly factor CAF-1 has been biochemically well-characterized to deposit histones onto newly synthesized DNA. To gain insights into the in vivo functions of CAF-1 in Drosophila, we generated null mutants of the largest subunit of dCAF-1, dCAF-1-p180. We show that, unlike CAF-1 mutant yeast, dCAF-1-p180 mutant flies are hemizygous lethal. Removal of maternal dCAF-1-p180 activity by germline clones blocks oogenesis. Tissue-specific deletion of dCAF-1-p180 in the eye primordia disrupts eye development. In addition, reduction of dCAF-1-p180 activity suppresses gene silencing at heterochromatin and antagonizes Polycomb-mediated cell fate determination. Furthermore, heterozygous dCAF-1-p180 mutant flies display an increased sensitivity to gamma-irradiation and a reduced efficiency in recombinational double strand break (DSB) repair. Our experiments also show that human hCAF-1-p150 can rescue the dCAF-1-p180 mutant flies, demonstrating a functional conservation of eukaryotic CAF-1 activities in vivo. Together, our results establish that dCAF-1-p180 is an essential gene for Drosophila development and further underscore the importance of dCAF-1 in regulating gene expression and DNA repair in vivo.

摘要

S期DNA合成以及DNA修复过程都伴随着染色质组装。染色质组装因子CAF-1在生化特性方面已得到充分研究,它能将组蛋白沉积到新合成的DNA上。为深入了解果蝇体内CAF-1的功能,我们构建了dCAF-1最大亚基dCAF-1-p180的无效突变体。我们发现,与CAF-1突变酵母不同,dCAF-1-p180突变果蝇半合子致死。通过种系克隆去除母本dCAF-1-p180活性会阻断卵子发生。在眼原基中组织特异性缺失dCAF-1-p180会扰乱眼睛发育。此外,dCAF-1-p180活性降低会抑制异染色质处的基因沉默,并拮抗多梳蛋白介导的细胞命运决定。而且,dCAF-1-p180杂合突变果蝇对γ射线照射的敏感性增加,重组双链断裂(DSB)修复效率降低。我们的实验还表明,人类hCAF-1-p150可以挽救dCAF-1-p180突变果蝇,这证明了真核生物CAF-1活性在体内的功能保守性。总之,我们的结果表明dCAF-1-p180是果蝇发育所必需的基因,并进一步强调了dCAF-1在体内调节基因表达和DNA修复中的重要性。

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