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哺乳动物输入蛋白α晶体结构揭示的内部核定位信号介导的自抑制作用

Autoinhibition by an internal nuclear localization signal revealed by the crystal structure of mammalian importin alpha.

作者信息

Kobe B

机构信息

Structural Biology Laboratory, St. Vincent's Institute of Medical Research, Fitzroy, Victoria, Australia.

出版信息

Nat Struct Biol. 1999 Apr;6(4):388-97. doi: 10.1038/7625.

Abstract

Importin alpha is the nuclear import receptor that recognizes classical monopartite and bipartite nuclear localization signals (NLSs). The structure of mouse importin alpha has been determined at 2.5 A resolution. The structure shows a large C-terminal domain containing armadillo repeats, and a less structured N-terminal importin beta-binding domain containing an internal NLS bound to the NLS-binding site. The structure explains the regulatory switch between the cytoplasmic, high-affinity form, and the nuclear, low-affinity form for NLS binding of the nuclear import receptor predicted by the current models of nuclear import. Importin beta conceivably converts the low- to high-affinity form by binding to a site overlapping the autoinhibitory sequence. The structure also has implications for understanding NLS recognition, and the structures of armadillo and HEAT repeats.

摘要

输入蛋白α是识别典型单部分和双部分核定位信号(NLSs)的核输入受体。已确定小鼠输入蛋白α的结构,分辨率为2.5埃。该结构显示一个包含犰狳重复序列的大C末端结构域,以及一个结构较少的N末端输入蛋白β结合结构域,其中包含一个与NLS结合位点结合的内部NLS。该结构解释了当前核输入模型预测的核输入受体NLS结合的细胞质高亲和力形式和核低亲和力形式之间的调节转换。可以想象,输入蛋白β通过与重叠自抑制序列的位点结合,将低亲和力形式转换为高亲和力形式。该结构对于理解NLS识别以及犰狳和HEAT重复序列的结构也具有重要意义。

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