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在构巢曲霉无性发育的细胞分化过程中,两种类Pcl细胞周期蛋白控制Cdk9活性的证据。

Evidence that two Pcl-like cyclins control Cdk9 activity during cell differentiation in Aspergillus nidulans asexual development.

作者信息

Kempf Claudia, Bathe Friederike, Fischer Reinhard

机构信息

Karlsruhe Institute of Technology, Institute for Applied Biosciences, Department of Microbiology, Karlsruhe, Germany.

出版信息

Eukaryot Cell. 2013 Jan;12(1):23-36. doi: 10.1128/EC.00181-12. Epub 2012 Oct 26.

Abstract

Cyclin-dependent protein kinases (CDKs) are usually involved in cell cycle regulation. However, Cdk9 is an exception and promotes RNA synthesis through phosphorylation of the carboxy-terminal domain (CTD) of the largest subunit of RNA polymerase II (RNAPII). The CTD is comprised of repeating heptapeptides, in which serine residues at positions 2, 5, and 7 are of crucial importance. Ser5 phosphorylation causes transcription initiation and promoter escape. However, RNAPII pauses 20 to 50 bp downstream from the transcription start site, until Cdk9 phosphorylates Ser2. This event relieves the checkpoint and promotes the processivity of elongation. Here we present evidence that in the filamentous fungus Aspergillus nidulans, a Cdk9 homologue, PtkA, serves specific functions in conidiophore development. It was previously shown that PtkA interacts with two cyclins, PclA and the T cyclin PchA. Using yeast two-hybrid screens, we identified a third cyclin, PclB, and a kinase, PipA(Bud32). Both proteins were expressed in hyphae and in conidiophores, but interaction between each protein and PtkA was restricted to the conidiophores. Deletion of pchA caused a severe growth defect, and deletion of pipA was lethal, suggesting basic functions in PtkA-dependent gene transcription. In contrast, deletion of pclB in combination with deletion of pclA essentially caused a block in spore formation. We present evidence that the phosphorylation status of the CTD of RNA polymerase II in the conidiophore changes upon deletion of pclA or pclB. Our results suggest that tissue-specific modulation of Cdk9 activity by PclA and PclB is required for proper differentiation.

摘要

细胞周期蛋白依赖性蛋白激酶(CDK)通常参与细胞周期调控。然而,Cdk9是个例外,它通过磷酸化RNA聚合酶II(RNAPII)最大亚基的羧基末端结构域(CTD)来促进RNA合成。CTD由重复的七肽组成,其中第2、5和7位的丝氨酸残基至关重要。Ser5磷酸化导致转录起始和启动子逃逸。然而,RNAPII在转录起始位点下游20至50个碱基对处暂停,直到Cdk9磷酸化Ser2。这一事件解除了检查点并促进了延伸的持续性。在此,我们提供证据表明,在丝状真菌构巢曲霉中,Cdk9的同源物PtkA在分生孢子梗发育中发挥特定功能。先前已表明PtkA与两种细胞周期蛋白PclA和T细胞周期蛋白PchA相互作用。通过酵母双杂交筛选,我们鉴定出第三种细胞周期蛋白PclB和一种激酶PipA(Bud32)。这两种蛋白都在菌丝和分生孢子梗中表达,但每种蛋白与PtkA之间的相互作用仅限于分生孢子梗。pchA的缺失导致严重的生长缺陷,pipA的缺失是致命的,这表明它们在依赖PtkA的基因转录中具有基本功能。相比之下,pclB与pclA同时缺失基本上导致孢子形成受阻。我们提供证据表明,分生孢子梗中RNA聚合酶II的CTD磷酸化状态在pclA或pclB缺失时会发生变化。我们的结果表明,PclA和PclB对Cdk9活性的组织特异性调节是正常分化所必需的。

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本文引用的文献

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