Lippincott J, Shannon K B, Shou W, Deshaies R J, Li R
Department of Cell Biology, Harvard Medical School, Boston, MA 02115, USA.
J Cell Sci. 2001 Apr;114(Pt 7):1379-86. doi: 10.1242/jcs.114.7.1379.
Cytokinesis in budding yeast involves an actomyosin-based ring which assembles in a multistepped fashion during the cell cycle and constricts during cytokinesis. In this report, we have investigated the structural and regulatory events that occur at the onset of cytokinesis. The septins, which form an hour-glass like structure during early stages of the cell cycle, undergo dynamic rearrangements prior to cell division: the hourglass structure splits into two separate rings. The contractile ring, localized between the septin double rings, immediately undergoes contraction. Septin ring splitting is independent of actomyosin ring contraction as it still occurs in mutants where contraction fails. We hypothesize that septin ring splitting may remove a structural barrier for actomyosin ring to contract. Because the Tem1 small GTPase (Tem1p) is required for the completion of mitosis, we investigated its role in regulating septin and actomyosin ring dynamics in the background of the net1-1 mutation, which bypasses the anaphase cell cycle arrest in Tem1-deficient cells. We show that Tem1p plays a specific role in cytokinesis in addition to its function in cell cycle progression. Tem1p is not required for the assembly of the actomyosin ring but controls actomyosin and septin dynamics during cytokinesis.
出芽酵母中的胞质分裂涉及一个基于肌动球蛋白的环,该环在细胞周期中以多步骤方式组装,并在胞质分裂期间收缩。在本报告中,我们研究了胞质分裂开始时发生的结构和调节事件。在细胞周期早期形成沙漏状结构的隔膜蛋白,在细胞分裂前经历动态重排:沙漏结构分裂成两个独立的环。位于隔膜蛋白双环之间的收缩环立即开始收缩。隔膜蛋白环的分裂独立于肌动球蛋白环的收缩,因为它在收缩失败的突变体中仍然会发生。我们推测,隔膜蛋白环的分裂可能会消除肌动球蛋白环收缩的结构障碍。由于Tem1小GTP酶(Tem1p)是有丝分裂完成所必需的,我们在net1-1突变的背景下研究了它在调节隔膜蛋白和肌动球蛋白环动态中的作用,该突变绕过了Tem1缺陷细胞中的后期细胞周期停滞。我们表明,Tem1p除了在细胞周期进程中的功能外,在胞质分裂中也发挥着特定作用。Tem1p不是肌动球蛋白环组装所必需的,但在胞质分裂期间控制肌动球蛋白和隔膜蛋白的动态变化。