首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Disruption of the FG nucleoporin NUP98 causes selective changes in nuclear pore complex stoichiometry and function
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Disruption of the FG nucleoporin NUP98 causes selective changes in nuclear pore complex stoichiometry and function

机译:FG核孔蛋白NUP98的破坏导致选择性变化 在核孔复合体的化学计量和功能

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摘要

The NUP98 gene encodes precursor proteins that generate two nucleoplasmically oriented nucleoporins, NUP98 and NUP96. By using gene targeting, we have selectively disrupted the murine NUP98 protein, leaving intact the expression and localization of NUP96. We show that NUP98 is essential for mouse gastrulation, a developmental stage that is associated with rapid cell proliferation, but dispensable for basal cell growth. NUP98−/− cells had an intact nuclear envelope with a normal number of embedded nuclear pore complexes. Typically, NUP98-deficient cells contained on average approximately 5-fold more cytoplasmic annulate lamellae than control cells. We found that a set of cytoplasmically oriented nucleoporins, including NUP358, NUP214, NUP88, and p62, assembled inefficiently into nuclear pores of NUP98−/− cells. Instead, these nucleoporins were prominently associated with the annulate lamellae. By contrast, a group of nucleoplasmically oriented nucleoporins, including NUP153, NUP50, NUP96, and NUP93, had no affinity for annulate lamellae and assembled normally into nuclear pores. Mutant pores were significantly impaired in transport receptor-mediated docking of proteins with a nuclear localization signal or M9 import signal and showed weak nuclear import of such substrates. In contrast, the ability of mutant pores to import ribosomal protein L23a and spliceosome protein U1A appeared intact. These observations show that NUP98 disruption selectively impairs discrete protein import pathways and support the idea that transport of distinct import complexes through the nuclear pore complex is mediated by specific subsets of nucleoporins.
机译:NUP98基因编码前体蛋白,该蛋白产生两个核质定向的核孔蛋白NUP98和NUP96。通过使用基因靶向,我们选择性地破坏了鼠NUP98蛋白,使NUP96的表达和定位保持完整。我们表明,NUP98对于小鼠胃泌素是必不可少的,这是一个与细胞快速增殖相关的发育阶段,但对于基础细胞的生长是必不可少的。 NUP98-/-细胞具有完整的核膜和正常数量的嵌入式核孔复合物。通常,NUP98缺陷细胞平均比对照细胞多含5倍的胞质环状薄片。我们发现,一组胞质定向的核孔蛋白,包括NUP358,NUP214,NUP88和p62,都无法有效地组装到NUP98-/-细胞的核孔中。相反,这些核孔蛋白与环状薄片显着相关。相比之下,包括NUP153,NUP50,NUP96和NUP93在内的一组核质定向的核孔蛋白对环状薄片没有亲和力,并且通常组装成核孔。突变的毛孔明显受损 在转运受体介导的蛋白质与核的对接中 定位信号或M9进口信号并显示出弱的核进口 这样的基板。相反,突变毛孔的导入能力 核糖体蛋白L23a和剪接体蛋白U1A完整无缺。 这些观察结果表明,NUP98破坏有选择地损害 离散的蛋白质导入途径,并支持 通过核孔复合体介导不同的进口复合体 通过核孔蛋白的特定子集。

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