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Anillin突变体的表征揭示了其在septin定位和质膜完整性中的重要作用。

Characterization of anillin mutants reveals essential roles in septin localization and plasma membrane integrity.

作者信息

Field Christine M, Coughlin Margaret, Doberstein Steve, Marty Thomas, Sullivan William

机构信息

Department of Systems Biology, Harvard Medical School, Boston MA 02115, USA.

出版信息

Development. 2005 Jun;132(12):2849-60. doi: 10.1242/dev.01843.

Abstract

Anillin is a conserved component of the contractile ring that is essential for cytokinesis, and physically interacts with three conserved cleavage furrow proteins, F-actin, myosin II and septins in biochemical assays. We demonstrate that the Drosophila scraps gene, identified as a gene involved in cellularization, encodes Anillin. We characterize defects in cellularization, pole cell formation and cytokinesis in a series of maternal effect and zygotic anillin alleles. Mutations that result in amino acid changes in the C-terminal PH domain of Anillin cause defects in septin recruitment to the furrow canal and contractile ring. These mutations also strongly perturb cellularization, altering the timing and rate of furrow ingression. They cause dramatic vesiculation of new plasma membranes, and destabilize the stalk of cytoplasm that normally connects gastrulating cells to the yolk mass. A mutation closer to the N terminus blocks separation of pole cells with less effect on cellularization, highlighting mechanistic differences between contractile processes. Cumulatively, our data point to an important role for Anillin in scaffolding cleavage furrow components, directly stabilizing intracellular bridges, and indirectly stabilizing newly deposited plasma membrane during cellularization.

摘要

缢缩蛋白是收缩环的一个保守组成部分,对胞质分裂至关重要,并且在生化分析中与三种保守的分裂沟蛋白(F-肌动蛋白、肌球蛋白II和隔膜蛋白)发生物理相互作用。我们证明,被鉴定为参与细胞化过程的基因——果蝇scraps基因,编码缢缩蛋白。我们在一系列母体效应和合子缢缩蛋白等位基因中,对细胞化、极细胞形成和胞质分裂中的缺陷进行了表征。导致缢缩蛋白C端PH结构域氨基酸变化的突变,会导致隔膜蛋白募集到沟道和收缩环出现缺陷。这些突变还会强烈干扰细胞化过程,改变沟道内陷的时间和速率。它们会导致新质膜出现显著的囊泡化,并破坏通常将原肠胚形成细胞与卵黄团连接起来的细胞质柄的稳定性。一个更靠近N端的突变会阻碍极细胞的分离,对细胞化的影响较小,这突出了收缩过程之间的机制差异。总的来说,我们的数据表明缢缩蛋白在构建分裂沟组件、直接稳定细胞内桥以及在细胞化过程中间接稳定新沉积的质膜方面发挥着重要作用。

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