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果蝇卵母细胞中的中心体-细胞核复合体与微管组织

The centrosome-nucleus complex and microtubule organization in the Drosophila oocyte.

作者信息

Januschke Jens, Gervais Louis, Gillet Laurent, Keryer Guy, Bornens Michel, Guichet Antoine

机构信息

Institut Jacques Monod, Unité Mixte Recherche 7592, CNRS, Université Paris 6 et Paris 7, 2 place Jussieu, 75251 Paris Cedex 05, France.

出版信息

Development. 2006 Jan;133(1):129-39. doi: 10.1242/dev.02179. Epub 2005 Nov 30.

Abstract

Molecular motors transport the axis-determining mRNAs oskar, bicoid and gurken along microtubules (MTs) in the Drosophila oocyte. However, it remains unclear how the underlying MT network is organized and how this transport takes place. We have identified a centriole-containing centrosome close to the oocyte nucleus. Remarkably, the centrosomal components, gamma-tubulin and Drosophila pericentrin-like protein also strongly accumulate at the periphery of this nucleus. MT polymerization after cold-induced disassembly in wild type and in gurken mutants suggests that in the oocyte the centrosome-nucleus complex is an active center of MT polymerization. We further report that the MT network comprises two perpendicular MT subsets that undergo dynamic rearrangements during oogenesis. This MT reorganization parallels the successive steps in localization of gurken and oskar mRNAs. We propose that in addition to a highly polarized microtubule scaffold specified by the cortex oocyte, the repositioning of the nucleus and its tightly associated centrosome could control MT reorganization and, hence, oocyte polarization.

摘要

分子马达沿着果蝇卵母细胞中的微管(MTs)运输决定轴的信使核糖核酸oskar、bicoid和gurken。然而,尚不清楚潜在的微管网络是如何组织的以及这种运输是如何发生的。我们在靠近卵母细胞核的位置发现了一个含有中心粒的中心体。值得注意的是,中心体成分γ-微管蛋白和果蝇类中心粒外周蛋白也强烈聚集在该细胞核的周边。野生型和gurken突变体在冷诱导解聚后的微管聚合表明,在卵母细胞中,中心体-细胞核复合体是微管聚合的活性中心。我们进一步报道,微管网络由两个相互垂直的微管子集组成,它们在卵子发生过程中经历动态重排。这种微管重组与gurken和oskar信使核糖核酸定位的连续步骤平行。我们提出,除了由卵母细胞皮层指定的高度极化的微管支架外,细胞核及其紧密相关的中心体的重新定位可能控制微管重组,从而控制卵母细胞极化。

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