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Clp1p/Flp1p磷酸酶可确保粟酒裂殖酵母细胞分裂机制受到轻微干扰时胞质分裂的完成。

The Clp1p/Flp1p phosphatase ensures completion of cytokinesis in response to minor perturbation of the cell division machinery in Schizosaccharomyces pombe.

作者信息

Mishra Mithilesh, Karagiannis Jim, Trautmann Susanne, Wang Hongyan, McCollum Dannel, Balasubramanian Mohan K

机构信息

Cell Division Laboratory, Temasek Life Sciences Laboratory, National University of Singapore, 1 Research Link, NUS, Singapore 117604, Rep. of Singapore.

出版信息

J Cell Sci. 2004 Aug 1;117(Pt 17):3897-910. doi: 10.1242/jcs.01244. Epub 2004 Jul 20.

Abstract

Fission yeast mutants defective in actomyosin ring formation and function exhibit a prolonged G2 delay following cytokinesis failure. This G2 delay depends on the SIN, a signaling network essential for cytokinesis, and the non-essential Cdc14p family phosphatase, Clp1p/Flp1p and has been proposed to signify a cytokinesis checkpoint mechanism. However, the physiological relevance of this proposed Clp1p/Flp1p-dependent checkpoint is unclear because all previous studies were carried out using mutations in essential actomyosin ring components under fully restrictive conditions and thus these cells would have died regardless of the presence of the checkpoint. Here we show that delays in cytokinesis caused by minor perturbations to different components of the cytokinetic machinery, which normally cause only mild defects, become lethal when Clp1p/Flp1p is inactivated. In addition, we show that Clp1p/Flp1p does not function simply to inhibit further rounds of nuclear division, but also allows damaged actomyosin rings to be maintained to facilitate completion of cell division. Ectopic activation of the SIN significantly bypasses the requirement of Clp1p/Flp1p for G2 delay as well as for completion of cytokinesis. We conclude that the Clp1p/Flp1p-dependent cytokinesis checkpoint provides a previously unrecognized cell survival advantage when the cell division apparatus is mildly perturbed.

摘要

在肌动球蛋白环形成和功能方面存在缺陷的裂殖酵母突变体,在胞质分裂失败后会出现延长的G2期延迟。这种G2期延迟依赖于SIN(一种胞质分裂所必需的信号网络)以及非必需的Cdc14p家族磷酸酶Clp1p/Flp1p,并且有人提出这意味着一种胞质分裂检查点机制。然而,这种提出的依赖Clp1p/Flp1p的检查点的生理相关性尚不清楚,因为之前所有的研究都是在完全限制条件下使用肌动球蛋白环必需成分的突变进行的,因此这些细胞无论检查点是否存在都会死亡。在这里我们表明,细胞分裂机制不同成分的轻微扰动通常只会导致轻微缺陷,但由此引起的胞质分裂延迟在Clp1p/Flp1p失活时会变得致命。此外,我们表明Clp1p/Flp1p的功能不仅仅是简单地抑制进一步的核分裂轮次,还能使受损的肌动球蛋白环得以维持,以促进细胞分裂的完成。SIN的异位激活显著绕过了Clp1p/Flp1p对G2期延迟以及胞质分裂完成的需求。我们得出结论,当细胞分裂装置受到轻微扰动时,依赖Clp1p/Flp1p的胞质分裂检查点提供了一种以前未被认识到的细胞存活优势。

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