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果蝇胚胎分裂期间,线粒体ATP合酶的ε亚基是正常纺锤体定向所必需的。

The epsilon-subunit of mitochondrial ATP synthase is required for normal spindle orientation during the Drosophila embryonic divisions.

作者信息

Kidd Thomas, Abu-Shumays Robin, Katzen Alisa, Sisson John C, Jiménez Gerardo, Pinchin Sheena, Sullivan William, Ish-Horowicz David

机构信息

Developmental Genetics Laboratory, Cancer Research UK, London, England.

出版信息

Genetics. 2005 Jun;170(2):697-708. doi: 10.1534/genetics.104.037648. Epub 2005 Apr 16.

Abstract

We describe the maternal-effect and zygotic phenotypes of null mutations in the Drosophila gene for the epsilon-subunit of mitochondrial ATP synthase, stunted (sun). Loss of zygotic sun expression leads to a dramatic delay in the growth rate of first instar larvae and ultimately death. Embryos lacking maternally supplied sun (sun embryos) have a sixfold reduction in ATP synthase activity. Cellular analysis of sun embryos shows defects only after the nuclei have migrated to the cortex. During the cortical divisions the actin-based metaphase and cellularization furrows do not form properly, and the nuclei show abnormal spacing and division failures. The most striking abnormality is that nuclei and spindles form lines and clusters, instead of adopting a regular spacing. This is reflected in a failure to properly position neighboring nonsister centrosomes during the telophase-to-interphase transition of the cortical divisions. Our study is consistent with a role for Sun in mitochondrial ATP synthesis and suggests that reduced ATP levels selectively affect molecular motors. As Sun has been identified as the ligand for the Methuselah receptor that regulates aging, Sun may function both within and outside mitochondria.

摘要

我们描述了果蝇线粒体ATP合酶ε亚基基因“发育迟缓”(stunted,sun)的无效突变所导致的母体效应和合子表型。合子中sun表达缺失会导致一龄幼虫生长速率显著延迟并最终死亡。缺乏母体提供的sun的胚胎(sun胚胎)的ATP合酶活性降低了六倍。对sun胚胎的细胞分析表明,只有在细胞核迁移到皮层后才会出现缺陷。在皮层分裂期间,基于肌动蛋白的中期和细胞化沟不能正常形成,并且细胞核显示出异常的间距和分裂失败。最显著的异常是细胞核和纺锤体形成线条和簇,而不是采用规则的间距。这反映在皮层分裂的末期到间期转变过程中,相邻的非姐妹中心体未能正确定位。我们的研究与Sun在线粒体ATP合成中的作用一致,并表明ATP水平降低会选择性地影响分子马达。由于Sun已被确定为调节衰老的玛士撒拉受体的配体,Sun可能在线粒体内外都发挥作用。

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