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首页> 外文期刊>DNA and Cell Biology >A novel predicted bromodomain-related protein affects coordination between meiosis and spermiogenesis in Drosophila and is required for male meiotic cytokinesis.
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A novel predicted bromodomain-related protein affects coordination between meiosis and spermiogenesis in Drosophila and is required for male meiotic cytokinesis.

机译:一种新型的预测的bromodomain相关蛋白影响果蝇减数分裂和精子发生之间的协调,是雄性减数分裂胞质分裂所必需的。

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摘要

Temporal coordination of meiosis with spermatid morphogenesis is crucial for successful generation of mature sperm cells. We identified a recessive male sterile Drosophila melanogaster mutant, mitoshell, in which events of spermatid morphogenesis are initiated too early, before meiotic onset. Premature mitochondrial aggregation and fusion lead to an aberrant mitochondrial shell around premeiotic nuclei. Despite successful meiotic karyokinesis, improper mitochondrial localization in mitoshell testes is associated with defective astral central spindles and a lack of contractile rings, leading to meiotic cytokinesis failure. We mapped and cloned the mitoshell gene and found that it encodes a novel protein with a bromodomain-related region. It is conserved in some insect lineages. Bromodomains typically bind to histone acetyl-lysine residues and therefore are often associated with chromatin. The Mitoshell bromodomain-related region is predicted to have an alpha helical structure similar to that of bromodomains, but not all the crucial residues in the ligand-binding loops are conserved. We speculate that Mitoshell may participate in transcriptional regulation of spermatogenesis-specific genes, though perhaps with different ligand specificity compared to traditional bromodomains.
机译:减数分裂与精子形态发生的时间协调对于成功生成成熟精子细胞至关重要。我们确定了隐性的雄性不育果蝇黑色突变体,线粒体,其中在减数分裂发作之前过早开始了精子形态发生的事件。线粒体的过早聚集和融合导致减数分裂前核周围的线粒体壳异常。尽管减数分裂的核分裂运动成功,但线粒体在线粒体睾丸中的不适当定位与有缺陷的星状中心纺锤体和缺乏可收缩的环有关,从而导致减数分裂胞质分裂失败。我们绘制并克隆了线粒体基因,发现该基因编码一种具有溴结构域相关区域的新型蛋白质。在某些昆虫谱系中它是保守的。溴结构域通常结合组蛋白乙酰赖氨酸残基,因此通常与染色质相关。预计线粒体与溴结构域相关的区域具有类似于溴结构域的α螺旋结构,但并非所有配体结合环中的关键残基都得到保守。我们推测线粒体可能参与精子发生特异性基因的转录调控,尽管与传统的溴结构域相比可能具有不同的配体特异性。

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