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Drosophila egg chamber elongation Insights into how tissues and organs are shaped

机译:果蝇卵室延长了解组织和器官的形状

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摘要

As tissues and organs are formed, they acquire a specific shape that plays an integral role in their ability to function properly. A relatively simple system that has been used to examine how tissues and organs are shaped is the formation of an elongated Drosophila egg. While it has been known for some time that Drosophila egg elongation requires interactions between a polarized intracellular basal actin network and a polarized extracellular network of basal lamina proteins, how these interactions contribute to egg elongation remained unclear. Recent studies using live imaging have revealed two novel processes, global tissue rotation and oscillating basal actomyosin contractions, which have provided significant insight into how the two polarized protein networks cooperate to produce an elongated egg. This review summarizes the proteins involved in Drosophila egg elongation and how this recent work has contributed to our current understanding of how egg elongation is achieved.
机译:随着组织和器官的形成,它们具有特定的形状,这些形状在其正常功能中起着不可或缺的作用。已经用于检查组织和器官如何成形的相对简单的系统是细长的果蝇卵的形成。虽然一段时间以来人们已经知道果蝇卵的伸长需要极化的细胞内基础肌动蛋白网络和极化的细胞外层的基础层板蛋白网络之间的相互作用,但这些相互作用如何促进卵子伸长尚不清楚。最近的使用实时成像的研究揭示了两个新的过程,即整体组织旋转和振荡性基底肌动蛋白收缩,这为两个极化蛋白网络如何协作产生细长卵提供了重要见识。这篇综述总结了果蝇卵伸长中涉及的蛋白质,以及这项最新的工作如何有助于我们对卵伸长率的当前理解。

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