Pérez-Hidalgo Livia, Moreno Sergio
Institute of Functional Biology and Genomics (IBFG), CSIC/University of Salamanca, 37007 Salamanca, Spain.
Institute of Biomedical Research of Salamanca (IBSAL), University Hospital of Salamanca, 37007 Salamanca, Spain.
Biomolecules. 2017 Aug 4;7(3):59. doi: 10.3390/biom7030059.
Cell growth and division are two processes tightly coupled in proliferating cells. While Target of Rapamycin (TOR) is the master regulator of growth, the cell cycle is dictated by the activity of the cyclin-dependent kinases (CDKs). A long-standing question in cell biology is how these processes may be connected. Recent work has highlighted that regulating the phosphatases that revert CDK phosphorylations is as important as regulating the CDKs for cell cycle progression. At mitosis, maintaining a low level of protein phosphatase 2A (PP2A)-B55 activity is essential for CDK substrates to achieve the correct level of phosphorylation. The conserved Greatwall-Endosulfine pathway has been shown to be required for PP2A-B55 inhibition at mitosis in yeasts and multicellular organisms. Interestingly, in yeasts, the Greatwall-Endosulfine pathway is negatively regulated by TOR Complex 1 (TORC1). Moreover, Greatwall-Endosulfine activation upon TORC1 inhibition has been shown to regulate the progression of the cell cycle at different points: the G1 phase in budding yeast, the G2/M transition and the differentiation response in fission yeast, and the entry into quiescence in both budding and fission yeasts. In this review, we discuss the recent findings on how the Greatwall-Endosulfine pathway may provide a connection between cell growth and the cell cycle machinery.
细胞生长和分裂是增殖细胞中紧密耦合的两个过程。雷帕霉素靶蛋白(TOR)是生长的主要调节因子,而细胞周期则由细胞周期蛋白依赖性激酶(CDK)的活性决定。细胞生物学中一个长期存在的问题是这些过程如何相互联系。最近的研究强调,对于细胞周期进程而言,调节使CDK磷酸化逆转的磷酸酶与调节CDK同样重要。在有丝分裂时,维持低水平的蛋白磷酸酶2A(PP2A)-B55活性对于CDK底物达到正确的磷酸化水平至关重要。在酵母和多细胞生物中,保守的“长城”-内硫素途径已被证明是有丝分裂时抑制PP2A-B55所必需的。有趣的是,在酵母中,“长城”-内硫素途径受TOR复合物1(TORC1)负调控。此外,TORC1抑制后“长城”-内硫素的激活已被证明在不同阶段调节细胞周期进程:在芽殖酵母的G1期、裂殖酵母的G2/M转换和分化反应,以及在芽殖酵母和裂殖酵母中进入静止期。在这篇综述中,我们讨论了关于“长城”-内硫素途径如何在细胞生长和细胞周期机制之间建立联系的最新发现。