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首页> 外文期刊>Journal of Molecular Biology >Kap95p binding induces the switch loops of RanGDP to adopt the GTP-bound conformation: implications for nuclear import complex assembly dynamics.
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Kap95p binding induces the switch loops of RanGDP to adopt the GTP-bound conformation: implications for nuclear import complex assembly dynamics.

机译:Kap95p绑定诱导RanGDP的转换回路采用GTP约束的构象:对核进口复杂装配动力学的影响。

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摘要

The asymmetric distribution of the nucleotide-bound state of Ran across the nuclear envelope is crucial for determining the directionality of nuclear transport. In the nucleus, Ran is primarily in the guanosine 5'-triphosphate (GTP)-bound state, whereas in the cytoplasm, Ran is primarily guanosine 5'-diphosphate (GDP)-bound. Conformational changes within the Ran switch I and switch II loops are thought to modulate its affinity for importin-beta. Here, we show that RanGDP and importin-beta form a stable complex with a micromolar dissociation constant. This complex can be dissociated by importin-beta binding partners such as importin-alpha. Surprisingly, the crystal structure of the Kap95p-RanGDP complex shows that Kap95p induces the switch I and II regions of RanGDP to adopt a conformation that resembles that of the GTP-bound form. The structure of the complex provides insights into the structural basis for the gradation of affinities regulating nuclear protein transport.
机译:Ran的核苷酸结合状态跨核被膜的不对称分布对于确定核转运的方向至关重要。在细胞核中,Ran主要以鸟苷5'-三磷酸(GTP)结合状态,而在细胞质中,Ran主要以鸟苷5'-二磷酸(GDP)结合。 Ran开关I和开关II循环内的构象变化被认为可调节其与importin-beta的亲和力。在这里,我们显示RanGDP和importin-beta形成具有微摩尔解离常数的稳定复合物。这种复合物可以通过importin-beta结合伴侣(例如importin-alpha)解离。出人意料的是,Kap95p-RanGDP复合物的晶体结构表明,Kap95p诱导RanGDP的开关I和II区采用类似于GTP结合形式的构象。该复合物的结构提供了对调节核蛋白运输的亲和力等级的结构基础的见解。

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