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The Cdk-Activating Kinase Cak1p Promotes Meiotic S Phase through Ime2p

机译:Cdk激活激酶Cak1p通过Ime2p促进减数分裂S期。

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摘要

CAK1 encodes an essential protein kinase in Saccharomyces cerevisiae that is required for activation of the Cdc28p Cdk. CAK1 also has several CDC28-independent functions that are unique to meiosis. The earliest of these functions is to induce S phase, which is regulated differently in meiosis than in mitosis. In mitosis, Cdc28p controls its own S-phase-promoting activity by signaling the destruction of its inhibitor, Sic1p. In meiosis, Sic1p destruction is signaled by the meiosis-specific Ime2p protein kinase. Our data show that Cak1p is required to activate Ime2p through a mechanism that requires threonine 242 and tyrosine 244 in Ime2p's activation loop. This activation promotes autophosphorylation and accumulation of multiply phosphorylated forms of Ime2p during meiotic development. Consistent with Cak1p's role in activating Ime2p, cells lacking Cak1p are deficient in degrading Sic1p. Deletion of SIC1 or overexpression of IME2 can partially suppress the S-phase defect in cak1 mutant cells, suggesting that Ime2p is a key target of Cak1p regulation. These data show that Cak1p is required for the destruction of Sic1p in meiosis, as in mitosis, but in meiosis, it functions through a sporulation-specific kinase.
机译:CAK1在酿酒酵母中编码激活Cdc28p Cdk所需的必需蛋白激酶。 CAK1还具有减数分裂特有的几种CDC28独立功能。这些功能最早是诱导S期,S期在减数分裂中的调控与在有丝分裂中的调控不同。在有丝分裂中,Cdc28p通过发出其抑制剂Sic1p破坏的信号来控制其自身的S期促进活性。在减数分裂中,Sic1p破坏是由减数分裂特异的Ime2p蛋白激酶发出的。我们的数据表明,Cak1p是通过Ime2p激活环中需要苏氨酸242和酪氨酸244的机制激活Ime2p所必需的。此激活促进减数分裂发育过程中Ime2p的多种磷酸化形式的自磷酸化和积累。与Cak1p在激活Ime2p中的作用一致,缺乏Cak1p的细胞在降解Sic1p方面缺乏作用。 SIC1的删除或IME2的过表达可以部分抑制cak1突变细胞中的S期缺陷,这表明Ime2p是Cak1p调控的关键目标。这些数据表明,Cak1p是减数分裂中Sic1p破坏所必需的,就像有丝分裂一样,但是在减数分裂中,它是通过孢子特异性激酶起作用的。

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