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有丝分裂期高尔基小泡的形成涉及到与 GM130 丝氨酸 25 位磷酸化无关的机制。

Mitotic Golgi vesiculation involves mechanisms independent of Ser25 phosphorylation of GM130.

机构信息

Cell Biology Program, Temasek Life Sciences Laboratory, National University of Singapore, Singapore, Singapore.

出版信息

Cell Cycle. 2010 Aug 1;9(15):3100-5. doi: 10.4161/cc.9.15.12522. Epub 2010 Aug 27.

Abstract

During mitosis, the Golgi undergoes two sequential fragmentation steps to break from ribbon to individual stacks, then from stacks to vesicles. While the mechanism that regulates the first step has been studied, it remains obscure how the second vesiculation step is regulated. It has been suggested that Cdk1-dependent phosphorylation of the cis-Golgi matrix protein GM130 regulates the second step. Here we have tested if phorphorylation of GM130 by Cdk1 is required for Golgi vesiculation and mitotic progression. Inhibition of Cdk1 activity caused a failure of Golgi vesiculation and defects in chromosome congression/segregation. Expression of non-phosphorylatable mutant of GM130 (GM130S25A) in cells depleted of endogenous GM130 caused no apparent defects in Golgi vesiculation and mitotic progression. Similarly, no apparent defects in Golgi vesiculation and mitotic progression were observed when GM130S25A was expressed in GM130-deficient CHO cells. Our observations suggest that while Cdk1 based phosphorylation is essential for mitotic Golgi vesiculation, mammalian cells could possess redundant, S25 phosphorylation of GM130 independent pathways that ensure Golgi vesiculation and mitotic progression.

摘要

在有丝分裂过程中,高尔基体经历两个连续的碎片化步骤,从带状体到单个堆叠体,再从堆叠体到小泡。虽然已经研究了调节第一步的机制,但第二个囊泡形成步骤是如何被调节的仍然不清楚。有人提出,Cdk1 依赖性磷酸化顺式高尔基体基质蛋白 GM130 调节第二步。在这里,我们测试了 Cdk1 对 GM130 的磷酸化是否是高尔基体囊泡化和有丝分裂进程所必需的。Cdk1 活性的抑制导致高尔基体囊泡化失败和染色体向心性/分离缺陷。在耗尽内源性 GM130 的细胞中表达非磷酸化突变体 GM130(GM130S25A)不会导致高尔基体囊泡化和有丝分裂进程出现明显缺陷。同样,当 GM130S25A 在 GM130 缺陷型 CHO 细胞中表达时,高尔基体囊泡化和有丝分裂进程也没有明显缺陷。我们的观察结果表明,虽然基于 Cdk1 的磷酸化对于有丝分裂高尔基体囊泡化是必需的,但哺乳动物细胞可能具有冗余的、不依赖 GM130 S25 磷酸化的途径,以确保高尔基体囊泡化和有丝分裂进程。

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