首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >CaMKII and Polo-like kinase 1 sequentially phosphorylate the cytostatic factor Emi2/XErp1 to trigger its destruction and meiotic exit
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CaMKII and Polo-like kinase 1 sequentially phosphorylate the cytostatic factor Emi2/XErp1 to trigger its destruction and meiotic exit

机译:CaMKII和Polo样激酶1顺序磷酸化细胞抑制因子Emi2 / XErp1触发其破坏和减数分裂退出

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摘要

In vertebrate meiosis, unfertilized eggs are arrested in metaphase II by cytostatic factor (CSF), which is required to maintain mitotic cyclin-dependent kinase activity. Fertilization triggers a transient increase in cytosolic free Ca2+, which leads to CSF inactivation and ubiquitin-dependent cyclin destruction through the anaphase promoting complex or cyclosome (APC/C). The Ca2+/calmodulin-dependent protein kinase II (CaMKII) and the Polo-like kinase Plx1 are essential factors for Ca2+-induced meiotic exit, but the critical targets of these kinases were unknown. The APC/C inhibitor Emi2 or XErp1 has recently been characterized as a pivotal CSF component, required to maintain metaphase II arrest and rapidly destroyed in response to Ca2+ signaling through phosphorylation by Plx1 and ubiquitination by the SCFβTrCP complex. An important question is how the increase in free Ca2+ targets Plx1 activity toward Emi2. Here, we demonstrate that CaMKII is required for Ca2+-induced Emi2 destruction, and that CaMKII functions as a “priming kinase,” directly phosphorylating Emi2 at a specific motif to induce a strong interaction with the Polo Box domain of Plx1. We show that the strict requirement for CaMKII to phosphorylate Emi2 is a specific feature of CSF arrest, and we also use phosphatase inhibitors to demonstrate an additional mode of Emi2 inactivation independent of its destruction. We firmly establish the CSF component Emi2 as the first-known critical and direct target of CaMKII in CSF release, providing a detailed molecular mechanism explaining how CaMKII and Plx1 coordinately direct APC/C activation and meiotic exit upon fertilization.
机译:在脊椎动物减数分裂中,未受精卵被细胞生长因子(CSF)阻滞在中期II,这是维持有丝分裂细胞周期蛋白依赖性激酶活性所必需的。受精会触发细胞内游离Ca 2 + 的瞬时增加,从而导致CSF失活,并通过后期促进复合物或环体(APC / C)破坏遍在蛋白依赖性细胞周期蛋白。 Ca 2 + /钙调蛋白依赖性蛋白激酶II(CaMKII)和Polo样激酶Plx1是Ca 2 + 诱导减数分裂退出的必要因素,但至关重要这些激酶的靶标未知。 APC / C抑制剂Emi2或XErp1最近被表征为关键的CSF成分,需要维持中期II停滞并响应Ca 2 + 信号通过Plx1的磷酸化和SCF的泛素化而迅速被破坏βTrCP复合物。一个重要的问题是,游离Ca 2 + 的增加如何将Plx1的活性靶向Emi2。在这里,我们证明了CaMKII是Ca 2 + 诱导的Emi2破坏所必需的,并且CaMKII充当“引发激酶”,在特定基序上直接磷酸化Emi2以诱导与Polo的强烈相互作用。 Plx1的盒域。我们表明对CaMKII磷酸化Emi2的严格要求是CSF逮捕的一个特定特征,并且我们还使用磷酸酶抑制剂来证明Emi2失活的另一种模式,独立于其破坏。我们坚定地将脑脊液成分Emi2确立为脑脊液释放中CaMKII的第一个关键和直接靶标,提供了详细的分子机制来解释CaMKII和Plx1如何协调受精后APC / C的活化和减数分裂的退出。

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