首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Nuclear Import of Cdk/Cyclin Complexes: Identification of Distinct Mechanisms for Import of Cdk2/Cyclin E and Cdc2/Cyclin B1
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Nuclear Import of Cdk/Cyclin Complexes: Identification of Distinct Mechanisms for Import of Cdk2/Cyclin E and Cdc2/Cyclin B1

机译:Cdk /细胞周期蛋白复合物的核进口:确定Cdk2 / Cyclin E和Cdc2 / Cyclin B1进口的不同机制

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摘要

Reversible phosphorylation of nuclear proteins is required for both DNA replication and entry into mitosis. Consequently, most cyclin-dependent kinase (Cdk)/cyclin complexes are localized to the nucleus when active. Although our understanding of nuclear transport processes has been greatly enhanced by the recent identification of nuclear targeting sequences and soluble nuclear import factors with which they interact, the mechanisms used to target Cdk/cyclin complexes to the nucleus remain obscure; this is in part because these proteins lack obvious nuclear localization sequences. To elucidate the molecular mechanisms responsible for Cdk/cyclin transport, we examined nuclear import of fluorescent Cdk2/cyclin E and Cdc2/cyclin B1 complexes in digitonin-permeabilized mammalian cells and also examined potential physical interactions between these Cdks, cyclins, and soluble import factors. We found that the nuclear import machinery recognizes these Cdk/cyclin complexes through direct interactions with the cyclin component. Surprisingly, cyclins E and B1 are imported into nuclei via distinct mechanisms. Cyclin E behaves like a classical basic nuclear localization sequence–containing protein, binding to the α adaptor subunit of the importin-α/β heterodimer. In contrast, cyclin B1 is imported via a direct interaction with a site in the NH2 terminus of importin-β that is distinct from that used to bind importin-α.
机译:DNA复制和进入有丝分裂都需要核蛋白的可逆磷酸化。因此,大多数细胞周期蛋白依赖性激酶(Cdk)/细胞周期蛋白复合物在活跃时均位于细胞核。尽管最近鉴定了核靶向序列及其相互作用的可溶性核输入因子,大大增强了我们对核转运过程的了解,但是将Cdk /细胞周期蛋白复合物靶向核的机制仍然不清楚。部分原因是这些蛋白质缺乏明显的核定位序列。为了阐明负责Cdk / cyclin转运的分子机制,我们检查了在指压蛋白通透性哺乳动物细胞中荧光Cdk2 / cyclin E和Cdc2 / cyclin B1复合物的核输入,还研究了这些Cdk,cyclins和可溶性输入因子之间的潜在物理相互作用。 。我们发现,核进口机制通过与细胞周期蛋白成分的直接相互作用识别了这些Cdk /细胞周期蛋白复合物。出人意料的是,细胞周期蛋白E和B1是通过不同的机制导入细胞核的。细胞周期蛋白E的行为类似于经典的基本核定位序列蛋白,与importin-α/β异二聚体的α衔接子亚基结合。相反,细胞周期蛋白B1是通过与importin-β的NH2末端的位点直接相互作用而导入的,该位点不同于用于结合importin-α的位点。

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