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Cdc5 influences phosphorylation of Net1 and disassembly of the RENT complex

机译:Cdc5影响Net1的磷酸化和RENT复合物的拆卸

摘要

Background: In S. cerevisiae, the mitotic exit network (MEN) proteins, including the Polo-like protein kinase Cdc5 and the protein phosphatase Cdc14, are required for exit from mitosis. In pre-anaphase cells, Cdc14 is sequestered to the nucleolus by Net1 as a part of the RENT complex. When cells are primed to exit mitosis, the RENT complex is disassembled and Cdc14 is released from the nucleolus.ududResults: Here, we show that Cdc5 is necessary to free nucleolar Cdc14 in late mitosis, that elevated Cdc5 activity provokes ectopic release of Cdc14 in pre-anaphase cells, and that the phosphorylation state of Net1 is regulated by Cdc5 during anaphase. Furthermore, recombinant Cdc5 and Xenopus Polo-like kinase can disassemble the RENT complex in vitro by phosphorylating Net1 and thereby reducing its affinity for Cdc14. Surprisingly, although RENT complexes containing Net1 mutants (Net1(7m) and Net1(19m') lacking sites phosphorylated by Cdc5 in vitro are refractory to disassembly by Polo-like kinases in vitro, net1(7m) and net1(19m') cells grow normally and exhibit only minor defects in releasing Cdc14 during anaphase. However, net1(19m') cells exhibit a synergistic growth defect when combined with mutations in CDC5 or DBF2 (another MEN gene).ududConclusions: We propose that although Cdc5 potentially disassembles RENT by directly phosphorylating Net1, Cdc5 mediates exit from mitosis primarily by phosphorylating other targets. Our study suggests that Cdc5/Polo is unusually promiscuous and highlights the need to validate Cdc5/Polo in vitro phosphorylation sites by direct in vivo mapping experiments.
机译:背景:在酿酒酵母中,有丝分裂退出网络(MEN)蛋白质(包括Polo样蛋白激酶Cdc5和磷酸酶Cdc14)是有丝分裂所需的。在后期前细胞中,Cdc14被Net1螯合到核仁中,成为RENT复合物的一部分。当细胞被灌注以退出有丝分裂时,RENT复合物被分解并且Cdc14从核仁中释放。 Cdc14在后期的细胞中,并且Net1的磷酸化状态在后期由Cdc5调节。此外,重组Cdc5和非洲爪蟾Polo样激酶可以通过磷酸化Net1从而在体外分解RENT复合物,从而降低其对Cdc14的亲和力。出人意料的是,尽管包含缺少Net1突变体(Net1(7m)和Net1(19m')的RENT复合物缺乏体外被Cdc5磷酸化的位点在体外难以被Polo样激酶分解,但net1(7m)和net1(19m')细胞却在生长正常情况下,在后期释放Cdc14时仅表现出较小的缺陷,但是net1(19m')细胞与CDC5或DBF2(另一个MEN基因)的突变结合时表现出协同生长缺陷。通过直接磷酸化Net1来分解RENT,Cdc5主要通过磷酸化其他靶标介导有丝分裂的退出,我们的研究表明Cdc5 / Polo异常混杂,并强调需要通过直接体内作图实验来验证Cdc5 / Polo体外磷酸化位点。

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