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[微管蛋白折叠辅助因子D基因的alp1-1315突变延迟粟酒裂殖酵母cdc25-22突变体细胞中的有丝分裂起始]

[The alp1-1315 mutation of the tubulin-folding cofactor D gene delays the mitosis initiation in cdc25-22 mutant cells of Schizosaccharomyces pombe].

作者信息

Fedianina O S

出版信息

Genetika. 2010 Mar;46(3):332-9.

Abstract

Tubulin-folding cofactor D is necessary for the assembly of tubulin heterodimers and, possibly, plays additional roles in the cell. The effects of cofactor D, microtubules, and/or tubulin dimers on the mitosis initiation were studied in Schizosaccharomyces pombe. It was found for the first time that S. pombe cells with the alp1-1315 and cdc25-22 mutations remained highly viable at 36 degrees C for 8 h, in contrast to cells with the alp1-1315 mutation alone. The progression of cdc25-22 alp1-1315 cells through mitosis after a cell division arrest at 36 degrees C was described. When transferred to 25 degrees C, cdc25-22 alp1-1315 cells displayed a lag of approximately 30 min in Plo1-GFP appearance in the spindle pole body (SPB), 1 h in chromosome condensation, and 75 min in spindle formation. Thus, the initiation of mitosis in cdc25-22 alp1-1315 cells was delayed as compared with cdc25-22 cells. Since treatment of cdc25-22 cells with a microtubule-destabilizing drug during an arrest is known to cause a premitotic arrest with low activity of the mitosis-promoting factor (MPF), it was assumed that an impaired integrity of microtubules and/or lack of tubulin dimers in the nucleus were responsible for the delayed mitosis initiation in cdc25-22 alp1-1315 cells and in cdc25-22 cells treated with a microtubule-destabilizing drug. The progression through mitosis after a cdc25-22 arrest was extremely slow in cdc25-22 alp1-1315 cells, which was attributed to the de novo formation of tubulin dimers.

摘要

微管蛋白折叠辅助因子D对于微管蛋白异二聚体的组装是必需的,并且可能在细胞中发挥其他作用。在粟酒裂殖酵母中研究了辅助因子D、微管和/或微管蛋白二聚体对有丝分裂起始的影响。首次发现,与仅具有alp1 - 1315突变的细胞相比,具有alp1 - 1315和cdc25 - 22突变的粟酒裂殖酵母细胞在36℃下8小时仍具有高活力。描述了cdc25 - 22 alp1 - 1315细胞在36℃细胞分裂停滞后通过有丝分裂的进程。当转移到25℃时,cdc25 - 22 alp1 - 1315细胞在纺锤极体(SPB)中Plo1 - GFP出现延迟约30分钟,染色体凝聚延迟1小时,纺锤体形成延迟75分钟。因此,与cdc25 - 22细胞相比,cdc25 - 22 alp1 - 1315细胞中有丝分裂的起始延迟。由于已知在停滞期间用微管破坏药物处理cdc25 - 22细胞会导致有丝分裂促进因子(MPF)活性低的有丝分裂前停滞,因此推测微管完整性受损和/或细胞核中缺乏微管蛋白二聚体是cdc25 - 22 alp1 - 1315细胞和用微管破坏药物处理的cdc25 - 22细胞中有丝分裂起始延迟的原因。在cdc25 - 22 alp1 - 1315细胞中,cdc25 - 22停滞后的有丝分裂进程极其缓慢,这归因于微管蛋白二聚体的从头形成。

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