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核孔蛋白的保守生物合成途径:186千道尔顿前体的蛋白水解加工产生Nup98和新型核孔蛋白Nup96。

A conserved biogenesis pathway for nucleoporins: proteolytic processing of a 186-kilodalton precursor generates Nup98 and the novel nucleoporin, Nup96.

作者信息

Fontoura B M, Blobel G, Matunis M J

机构信息

Laboratory of Cell Biology, Howard Hughes Medical Institute, The Rockefeller University, New York 10021, USA.

出版信息

J Cell Biol. 1999 Mar 22;144(6):1097-112. doi: 10.1083/jcb.144.6.1097.

Abstract

The mammalian nuclear pore complex (NPC) is comprised of approximately 50 unique proteins, collectively known as nucleoporins. Through fractionation of rat liver nuclei, we have isolated >30 potentially novel nucleoporins and have begun a systematic characterization of these proteins. Here, we present the characterization of Nup96, a novel nucleoporin with a predicted molecular mass of 96 kD. Nup96 is generated through an unusual biogenesis pathway that involves synthesis of a 186-kD precursor protein. Proteolytic cleavage of the precursor yields two nucleoporins: Nup98, a previously characterized GLFG-repeat containing nucleoporin, and Nup96. Mutational and functional analyses demonstrate that both the Nup98-Nup96 precursor and the previously characterized Nup98 (synthesized independently from an alternatively spliced mRNA) are proteolytically cleaved in vivo. This biogenesis pathway for Nup98 and Nup96 is evolutionarily conserved, as the putative Saccharomyces cerevisiae homologues, N-Nup145p and C-Nup145p, are also produced through proteolytic cleavage of a precursor protein. Using immunoelectron microscopy, Nup96 was localized to the nucleoplasmic side of the NPC, at or near the nucleoplasmic basket. The correct targeting of both Nup96 and Nup98 to the nucleoplasmic side of the NPC was found to be dependent on proteolytic cleavage, suggesting that the cleavage process may regulate NPC assembly. Finally, by biochemical fractionation, a complex containing Nup96, Nup107, and at least two Sec13- related proteins was identified, revealing that a major sub-complex of the NPC is conserved between yeast and mammals.

摘要

哺乳动物的核孔复合体(NPC)由大约50种独特的蛋白质组成,这些蛋白质统称为核孔蛋白。通过对大鼠肝细胞核进行分级分离,我们分离出了30多种潜在的新型核孔蛋白,并开始对这些蛋白质进行系统表征。在此,我们展示了对Nup96的表征,它是一种预测分子量为96kD的新型核孔蛋白。Nup96通过一种不寻常的生物发生途径产生,该途径涉及一种186kD前体蛋白的合成。前体蛋白的蛋白水解切割产生两种核孔蛋白:Nup98,一种先前已表征的含有GLFG重复序列的核孔蛋白,以及Nup96。突变和功能分析表明,Nup98-Nup96前体和先前表征的Nup98(由可变剪接的mRNA独立合成)在体内都会被蛋白水解切割。Nup98和Nup96的这种生物发生途径在进化上是保守的,因为酿酒酵母的假定同源物N-Nup145p和C-Nup145p也是通过前体蛋白的蛋白水解切割产生的。使用免疫电子显微镜,Nup96定位于NPC的核质侧,在核质篮处或其附近。发现Nup96和Nup98正确靶向NPC的核质侧取决于蛋白水解切割,这表明切割过程可能调节NPC的组装。最后,通过生化分级分离,鉴定出一个包含Nup96、Nup107和至少两种与Sec13相关蛋白的复合体,揭示了NPC的一个主要亚复合体在酵母和哺乳动物之间是保守的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c614/2150585/6d68685dcd41/JCB9809017.f1.jpg

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