首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >The importin-β binding domain of snurportin1 is responsible for the Ran- and energy-independent nuclear import of spliceosomal U snRNPs in vitro
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The importin-β binding domain of snurportin1 is responsible for the Ran- and energy-independent nuclear import of spliceosomal U snRNPs in vitro

机译:Snurportin1的importin-β结合域负责剪接U UsRNPs的Ran和能量非依赖性核导入。

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摘要

The nuclear localization signal (NLS) of spliceosomal U snRNPs is composed of the U snRNA's 2,2,7-trimethyl-guanosine (m3G)-cap and the Sm core domain. The m3G-cap is specifically bound by snurportin1, which contains an NH2-terminal importin-β binding (IBB) domain and a COOH-terminal m3G-cap–binding region that bears no structural similarity to known import adaptors like importin-α (impα). Here, we show that recombinant snurportin1 and importin-β (impβ) are not only necessary, but also sufficient for U1 snRNP transport to the nuclei of digitonin-permeabilized HeLa cells. In contrast to impα–dependent import, single rounds of U1 snRNP import, mediated by the nuclear import receptor complex snurportin1–impβ, did not require Ran and energy. The same Ran- and energy-independent import was even observed for U5 snRNP, which has a molecular weight of more than one million. Interestingly, in the presence of impβ and a snurportin1 mutant containing an impα IBB domain (IBBimpα), nuclear U1 snRNP import was Ran dependent. Furthermore, β-galactosidase (βGal) containing a snurportin1 IBB domain, but not IBBimpα-βGal, was imported into the nucleus in a Ran-independent manner. Our results suggest that the nature of the IBB domain modulates the strength and/or site of interaction of impβ with nucleoporins of the nuclear pore complex, and thus whether or not Ran is required to dissociate these interactions.
机译:剪接的U snRNPs的核定位信号(NLS)由U snRNA的2,2,7-三甲基鸟苷(m3G)帽和Sm核心域组成。 m3G-cap与snurportin1特异性结合,其中包含一个NH2末端importin-β结合(IBB)域和一个COOH末端m3G-cap结合区域,该区域与已知的导入衔接子(如importin-α(impα) )。在这里,我们表明重组snurportin1和importin-β(impβ)不仅是必需的,而且对于U1 snRNP转运到可通过促渗素渗透的HeLa细胞核也是足够的。与依赖于impα的进口相反,由核进口受体复合物snurportin1-impβ介导的单轮U1 snRNP进口不需要Ran和能量。甚至观察到了分子量大于一百万的U5 snRNP的相同的Ran和能量无关的输入。有趣的是,在impβ和包含impαIBB结构域(IBBimpα)的snurportin1突变体的存在下,核U1 snRNP的导入依赖于Ran。此外,将含有snurportin1 IBB结构域但不包含IBBimpα-βGal的β-半乳糖苷酶(βGal)以独立于Ran的方式导入细胞核。我们的结果表明,IBB结构域的性质调节impβ与核孔复合物的核孔蛋白相互作用的强度和/或相互作用的位点,从而调节是否需要Ran来解离这些相互作用。

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