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固定分裂精母细胞中分裂沟蛋白的可视化。

Visualization of cleavage furrow proteins in fixed dividing spermatocytes.

作者信息

Frappaolo A, Sechi S, Belloni G, Piergentili R, Giansanti M G

机构信息

Istituto di Biologia e Patologia Molecolari del CNR, Università di Roma Sapienza, Roma, Italy.

出版信息

Methods Cell Biol. 2017;137:85-103. doi: 10.1016/bs.mcb.2016.03.035. Epub 2016 Jun 11.

Abstract

Cytokinesis separates the cytoplasmic organelles and the duplicated genome into two daughter cells at the end of cell division. In animal cell cytokinesis, assembly and constriction of the contractile apparatus must be finely coordinated with plasma membrane remodeling and vesicle trafficking at the cleavage furrow. Accurate control of these events during cell cleavage is a fundamental task in all organisms and is also essential for maintaining ploidy and preventing neoplastic transformation. Drosophila male meiosis provides a well-suited cell system for exploring the molecular mechanisms underlying cytokinesis, combining the powerful tools of Drosophila genetics with unique cytological characteristics. Remarkably the large size of male meiotic cells highly facilitates cytological analysis of cytokinesis. Here we describe the main procedures that we use for fixing and visualizing cleavage furrow proteins in male meiotic cells. Moreover, we detail our protocol to detect protein interactions in fixed dividing spermatocytes by applying in situ proximity ligation assay.

摘要

胞质分裂在细胞分裂末期将细胞质细胞器和复制后的基因组分离到两个子细胞中。在动物细胞胞质分裂过程中,收缩装置的组装和收缩必须与分裂沟处的质膜重塑和囊泡运输精细协调。在细胞分裂过程中精确控制这些事件是所有生物体的一项基本任务,对于维持倍性和防止肿瘤转化也至关重要。果蝇雄性减数分裂提供了一个非常适合的细胞系统,用于探索胞质分裂背后的分子机制,它将果蝇遗传学的强大工具与独特的细胞学特征相结合。值得注意的是,雄性减数分裂细胞的大尺寸极大地促进了胞质分裂的细胞学分析。在这里,我们描述了我们用于固定和可视化雄性减数分裂细胞中分裂沟蛋白的主要步骤。此外,我们详细介绍了通过应用原位邻近连接检测法在固定的分裂精母细胞中检测蛋白质相互作用的方案。

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