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Dual Regulation by Pairs of Cyclin-Dependent Protein Kinases and Histone Deacetylases Controls G1 Transcription in Budding Yeast

机译:对细胞周期蛋白依赖性蛋白激酶和组蛋白去乙酰化酶对的双重调控控制了芽酵母中的G1转录。

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摘要

START-dependent transcription in Saccharomyces cerevisiae is regulated by two transcription factors SBF and MBF, whose activity is controlled by the binding of the repressor Whi5. Phosphorylation and removal of Whi5 by the cyclin-dependent kinase (CDK) Cln3-Cdc28 alleviates the Whi5-dependent repression on SBF and MBF, initiating entry into a new cell cycle. This Whi5-SBF/MBF transcriptional circuit is analogous to the regulatory pathway in mammalian cells that features the E2F family of G1 transcription factors and the retinoblastoma tumor suppressor protein (Rb). Here we describe genetic and biochemical evidence for the involvement of another CDK, Pcl-Pho85, in regulating G1 transcription, via phosphorylation and inhibition of Whi5. We show that a strain deleted for both PHO85 and CLN3 has a slow growth phenotype, a G1 delay, and is severely compromised for SBF-dependent reporter gene expression, yet all of these defects are alleviated by deletion of WHI5. Our biochemical and genetic tests suggest Whi5 mediates repression in part through interaction with two histone deacetylases (HDACs), Hos3 and Rpd3. In a manner analogous to cyclin D/CDK4/6, which phosphorylates Rb in mammalian cells disrupting its association with HDACs, phosphorylation by the early G1 CDKs Cln3-Cdc28 and Pcl9-Pho85 inhibits association of Whi5 with the HDACs. Contributions from multiple CDKs may provide the precision and accuracy necessary to activate G1 transcription when both internal and external cues are optimal.
机译:酿酒酵母中START依赖的转录受两个转录因子SBF和MBF调节,它们的活性受阻遏蛋白Whi5的结合控制。细胞周期蛋白依赖性激酶(CDK)Cln3-Cdc28的磷酸化和Whi5的去除可减轻Whi5对SBF和MBF的抑制,从而开始进入新的细胞周期。这种Whi5-SBF / MBF转录途径类似于哺乳动物细胞中的调控途径,其特征在于E2F家族的G1转录因子和成视网膜细胞瘤肿瘤抑制蛋白(Rb)。在这里,我们描述了另一种CDK Pcl-Pho85通过磷酸化和抑制Whi5参与调节G1转录的遗传和生物化学证据。我们显示删除为PHO85和CLN3的菌株具有缓慢的生长表型,G1延迟,并严重损害了SBF依赖的报告基因的表达,但所有这些缺陷都通过WHI5的缺失得以缓解。我们的生化和基因测试表明,Whi5部分通过与两个组蛋白脱乙酰基酶(HDAC)Hos3和Rpd3的相互作用介导了抑制作用。类似于细胞周期蛋白D / CDK4 / 6(其使哺乳动物细胞中的Rb磷酸化,破坏其与HDAC的结合),早期G1 CDK Cln3-Cdc28和Pcl9-Pho85的磷酸化抑制Whi5与HDAC的结合。当内部和外部提示均最佳时,来自多个CDK的贡献可能会提供激活G1转录所需的精度和准确性。

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