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来自酿酒酵母的经典核定位信号蛋白。

Classical NLS proteins from Saccharomyces cerevisiae.

作者信息

Hahn Silvia, Maurer Patrick, Caesar Stefanie, Schlenstedt Gabriel

机构信息

Medizinische Biochemie und Molekularbiologie, Universität des Saarlandes, Geb. 61.4, 66421 Homburg, Germany.

出版信息

J Mol Biol. 2008 Jun 13;379(4):678-94. doi: 10.1016/j.jmb.2008.04.038. Epub 2008 Apr 22.

Abstract

Proteins can enter the nucleus through various receptor-mediated import pathways. One class of import cargos carries a classical nuclear localization signal (cNLS) containing a short cluster of basic residues. This pathway involves importin alpha (Impalpha), which possesses the cNLS binding site, and importin beta (Impbeta), which translocates the import complex through the nuclear pore complex. The defining criteria for a cNLS protein from Saccharomyces cerevisiae are an in vivo import defect in Impalpha and Impbeta mutants, direct binding to purified Impalpha, and stimulation of this binding by Impbeta. We show for the first time that endogenous S. cerevisiae proteins Prp20, Cdc6, Swi5, Cdc45, and Clb2 fulfill all of these criteria identifying them as authentic yeast cNLS cargos. Furthermore, we found that the targeting signal of Prp20 is a bipartite cNLS and that of Cdc6 is a monopartite cNLS. Basic residues present within these motifs are of different significance for the interaction with Impalpha. We determined the binding constants for import complexes containing the five cNLS proteins by surface plasmon resonance spectrometry. The dissociation constants for cNLS/alpha/beta complexes differ considerably, ranging from 1 nM for Cdc6 to 112 nM for Swi5, suggesting that the nuclear import kinetics is determined by the strength of cNLS/Impalpha binding. Impbeta enhances the affinity of Impalpha for cNLSs approximately 100-fold. This stimulation of cNLS binding to Impalpha results from a faster association in the presence of Impbeta, whereas the dissociation rate is unaffected by Impbeta. This implies that, after entry into the nucleus, the release of Impbeta by the Ran guanosine triphosphatase (Ran GTPase) from the import complex is not sufficient to dissociate the cNLS/Impalpha subcomplex. Our observation that the nucleoporin Nup2, which had been previously shown to release the cNLS from Impalpha in vitro, is required for efficient import of all the genuine cNLS cargos supports a general role of Nup2 in import termination.

摘要

蛋白质可以通过各种受体介导的导入途径进入细胞核。一类导入货物携带包含短碱性残基簇的经典核定位信号(cNLS)。该途径涉及具有cNLS结合位点的输入蛋白α(Impα)和通过核孔复合体转运导入复合体的输入蛋白β(Impβ)。来自酿酒酵母的cNLS蛋白的定义标准是在Impα和Impβ突变体中的体内导入缺陷、与纯化的Impα的直接结合以及Impβ对这种结合的刺激。我们首次表明,内源性酿酒酵母蛋白Prp20、Cdc6、Swi5、Cdc45和Clb2满足所有这些标准,将它们鉴定为真正的酵母cNLS货物。此外,我们发现Prp20的靶向信号是双分型cNLS,而Cdc6的靶向信号是单分型cNLS。这些基序中存在的碱性残基对于与Impα的相互作用具有不同的意义。我们通过表面等离子体共振光谱法测定了包含五种cNLS蛋白的导入复合体的结合常数。cNLS/α/β复合体的解离常数差异很大,范围从Cdc6的1 nM到Swi5的112 nM,这表明核输入动力学由cNLS/Impα结合的强度决定。Impβ将Impα对cNLS的亲和力提高约100倍。cNLS与Impα结合的这种刺激是由于在存在Impβ的情况下结合更快,而解离速率不受Impβ影响。这意味着,进入细胞核后,Ran鸟苷三磷酸酶(Ran GTPase)从导入复合体中释放Impβ不足以解离cNLS/Impα亚复合体。我们观察到,核孔蛋白Nup2以前已被证明在体外能从Impα释放cNLS,它是所有真正的cNLS货物有效导入所必需的,这支持了Nup2在导入终止中的一般作用。

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