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首页> 外文期刊>Frontiers in Cell and Developmental Biology >The microtubule-depolymerizing kinesin-13 Klp10A is enriched in the transition zone of the ciliary structures of Drosophila melanogaster.
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The microtubule-depolymerizing kinesin-13 Klp10A is enriched in the transition zone of the ciliary structures of Drosophila melanogaster.

机译:微管 - 解聚的Kinesin-13kLP10A富集在果蝇黑素体的睫状体结构的过渡区中。

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摘要

The precursor of the flagellar axoneme is already present in the primary spermatocytes of Drosophila melanogaster. During spermatogenesis each primary spermatocyte shows a centriole pair that moves to the cell membrane and organizes an axoneme-based structure, the cilium-like region (CLR). The CLRs persist through the meiotic divisions and are inherited by young spermatids. During spermatid differentiation the ciliary caps elongate giving rise to the sperm axoneme. Mutations in Klp10A, a kinesin-13 of Drosophila, results in defects of centriole/CLR organization in spermatocytes and of ciliary cap assembly in elongating spermatids. Reduced Klp10A expression also results in strong structural defects of sensory type I neurons. We show, here, that this protein displays a peculiar localization during male gametogenesis. The Klp10A signal is first detected at the distal ends of the centrioles when they dock to the plasma membrane of young primary spermatocytes. At the onset of the first meiotic prometaphase, when the CLRs reach their full size, Klp10A is enriched in a distinct narrow area at the distal end of the centrioles and persists in elongating spermatids at the base of the ciliary cap. We conclude that Klp10A could be a core component of the ciliary transition zone in Drosophila.
机译:鞭毛轴突的前体已经存在于果蝇黑素体的主要精子中。在精子发生期间,每个初级精子细胞显示偏胆管对移动到细胞膜并组织基于轴突的结构,纤毛纤溶区域(CLR)。 CLRS通过减数分裂的部门持续存在,并由年轻精子继承。在分子化分化期间,睫状帽细长地产生精子轴突。 KLP10A中的突变,果蝇的Kinesin-13,导致精胶细胞和睫状盖组件中的离心/ CLR组织在伸长的精子中的缺陷。减少的KLP10A表达还导致感觉类型I神经元的强结构缺陷。在这里,我们展示该蛋白质在雄性配子发生期间显示出特殊的定位。当截止到幼初级精子细胞的血浆膜时,首先在亚叶醇的远端检测KLP10A信号。在第一减数普雷基氨基序列的发作时,当CLRS达到全尺寸时,KLP10A在纤维叶子远端处的明显窄区域中富集,并且在睫状盖碱的伸长精子中持续存在。我们得出结论,KLP10A可以是果蝇中纤毛过渡带的核心组分。

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