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NDC1:后生动物核孔复合体中一种关键的膜整合核孔蛋白。

NDC1: a crucial membrane-integral nucleoporin of metazoan nuclear pore complexes.

作者信息

Stavru Fabrizia, Hülsmann Bastian B, Spang Anne, Hartmann Enno, Cordes Volker C, Görlich Dirk

机构信息

Zentrum für Molekulare Biologie der Universität Heidelberg, D-69120 Heidelberg, Germany.

出版信息

J Cell Biol. 2006 May 22;173(4):509-19. doi: 10.1083/jcb.200601001. Epub 2006 May 15.

Abstract

POM121 and gp210 were, until this point, the only known membrane-integral nucleoporins (Nups) of vertebrates and, thus, the only candidate anchors for nuclear pore complexes (NPCs) within the nuclear membrane. In an accompanying study (Stavru et al.), we provided evidence that NPCs can exist independently of POM121 and gp210, and we predicted that vertebrate NPCs contain additional membrane-integral constituents. We identify such an additional membrane protein in the NPCs of mammals, frogs, insects, and nematodes as the orthologue to yeast Ndc1p/Cut11p. Human NDC1 (hNDC1) likely possesses six transmembrane segments, and it is located at the nuclear pore wall. Depletion of hNDC1 from human HeLa cells interferes with the assembly of phenylalanine-glycine repeat Nups into NPCs. The loss of NDC1 function in Caenorhabditis elegans also causes severe NPC defects and very high larval and embryonic mortality. However, it is not ultimately lethal. Instead, homozygous NDC1-deficient worms can be propagated. This indicates that none of the membrane-integral Nups is universally essential for NPC assembly, and suggests that NPC biogenesis is an extremely fault-tolerant process.

摘要

在此之前,POM121和gp210是脊椎动物中仅知的膜整合核孔蛋白(Nups),因此也是核膜内核孔复合体(NPCs)的唯一候选锚定蛋白。在一项同期研究(斯塔夫鲁等人)中,我们提供了证据表明NPCs可以独立于POM121和gp210存在,并且我们预测脊椎动物的NPCs含有其他膜整合成分。我们在哺乳动物、青蛙、昆虫和线虫的NPCs中鉴定出这样一种额外的膜蛋白,它是酵母Ndc1p/Cut11p的直系同源物。人类NDC1(hNDC1)可能具有六个跨膜区段,并且它位于核孔壁上。从人类HeLa细胞中耗尽hNDC1会干扰苯丙氨酸 - 甘氨酸重复Nups组装到NPCs中。秀丽隐杆线虫中NDC1功能的丧失也会导致严重的NPC缺陷以及非常高的幼虫和胚胎死亡率。然而,这并非最终致命。相反,纯合NDC1缺陷的蠕虫可以繁殖。这表明没有一种膜整合Nups对于NPC组装是普遍必需的,并表明NPC生物发生是一个极具容错性的过程。

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