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果蝇卵母细胞的减数分裂纺锤体:中心体蛋白和中央星体的作用。

The meiotic spindle of the Drosophila oocyte: the role of centrosomin and the central aster.

作者信息

Riparbelli Maria Giovanna, Callaini Giuliano

机构信息

Department of Evolutionary Biology, University of Siena, Via A.Moro 4, I-53100 Siena, Italy.

出版信息

J Cell Sci. 2005 Jul 1;118(Pt 13):2827-36. doi: 10.1242/jcs.02413.

Abstract

We provide here the first evidence that a distinct midzone is present in the Drosophila melanogaster female meiosis I spindle. This region has the ability to bind the Pavarotti kinesin-like (PAV-KLP) and Abnormal spindle (Asp) proteins, indicating a correct organization of the central spindle microtubules. We also identified the core component centrosomal protein centrosomin (CNN) at an unexpected site within the anaphase I spindle, indicating a role for CNN during the biogenesis of the female meiotic apparatus. However, there are no apparent defects in the midzone organization of cnn oocytes, whereas defects occur later when the central aster forms. The primary mutant phenotype of cnn oocytes is the failure to form a developed central microtubule organizing center (MTOC), although twin meiosis II spindles usually do form. Thus the central MTOC may not be essential for the formation of the inner poles of twin meiosis II spindles, as generally proposed, but it might be involved in maintaining their proper spacing. We discuss the proposal that, in the presence of a central MTOC, a chromatin-driven mechanism of spindle assembly like that described during meiosis I may control the morphogenesis of the twin meiosis II spindles.

摘要

我们在此提供首个证据,证明在黑腹果蝇雌性减数分裂I纺锤体中存在一个独特的中区。该区域能够结合类帕瓦罗蒂驱动蛋白(PAV-KLP)和异常纺锤体(Asp)蛋白,表明中央纺锤体微管组织正确。我们还在后期I纺锤体的一个意想不到的位置鉴定出核心成分中心体蛋白中心体蛋白(CNN),表明CNN在雌性减数分裂器的生物发生过程中发挥作用。然而,cnn卵母细胞的中区组织没有明显缺陷,而缺陷在中央星体形成后期出现。cnn卵母细胞的主要突变表型是未能形成发育完善的中央微管组织中心(MTOC),尽管通常会形成双减数分裂II纺锤体。因此,中央MTOC可能不像通常所认为的那样对于双减数分裂II纺锤体内极的形成至关重要,但它可能参与维持它们的适当间距。我们讨论了这样一种观点,即在存在中央MTOC的情况下,一种类似于减数分裂I期间所描述的由染色质驱动的纺锤体组装机制可能控制双减数分裂II纺锤体的形态发生。

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