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核孔篮蛋白nup153纳入核孔结构取决于核纤层组装:来自非洲爪蟾卵无细胞提取物的证据。

Incorporation of the nuclear pore basket protein nup153 into nuclear pore structures is dependent upon lamina assembly: evidence from cell-free extracts of Xenopus eggs.

作者信息

Smythe C, Jenkins H E, Hutchison C J

机构信息

The MRC Protein Phosphorylation Unit, MSI/WTB Complex, Dow Street, The University of Dundee, Dundee DD1 5EH, UK.

出版信息

EMBO J. 2000 Aug 1;19(15):3918-31. doi: 10.1093/emboj/19.15.3918.

Abstract

In cell-free extracts of Xenopus eggs that support the assembly of replication-competent nuclei, we found that lamin B(3) specifically associates with four polypeptides (termed SLAPs, soluble lamin associated proteins). Here, one SLAP is identified as the nuclear pore complex protein Nup153, one member of the F/GXFG motif-containing nucleoporins. In vitro translated Nup153 and lamin B(3) co-immunoprecipitate, and lamin B(3) interacts specifically with the C-terminal domain of Nup153. During nuclear envelope assembly, other F/GXFG-containing nucleoporins are incorporated into the nuclear envelope preceding lamina assembly. Incorporation of Nup153 occurs at the same time as lamina assembly. When lamina assembly is prevented using the dominant-negative mutant XlaminB delta 2+, Nup153 does not appear at the nuclear envelope, while other F/GXFG-containing nucleoporins and Nup93 are recruited normally. When the lamina of pre-assembled nuclei is disrupted using the same dominant-negative mutant, the distribution of other nucleoporins is unaffected. However, Nup153 recruitment at the nuclear envelope is lost. Our results indicate that both the recruitment and maintenance of Nup153 at the pore are dependent upon the integrity of the lamina.

摘要

在支持具有复制能力的细胞核组装的非洲爪蟾卵无细胞提取物中,我们发现核纤层蛋白B(3) 特异性地与四种多肽(称为SLAPs,可溶性核纤层相关蛋白)结合。在这里,一种SLAP被鉴定为核孔复合体蛋白Nup153,它是含F/GXFG基序的核孔蛋白之一。体外翻译的Nup153和核纤层蛋白B(3) 可进行共免疫沉淀,并且核纤层蛋白B(3) 与Nup153的C末端结构域特异性相互作用。在核膜组装过程中,其他含F/GXFG的核孔蛋白在核纤层组装之前就被整合到核膜中。Nup153的整合与核纤层组装同时发生。当使用显性负性突变体XlaminB delta 2+阻止核纤层组装时,Nup153不会出现在核膜上,而其他含F/GXFG的核孔蛋白和Nup93则正常募集。当使用相同的显性负性突变体破坏预先组装好的细胞核的核纤层时,其他核孔蛋白的分布不受影响。然而,Nup153在核膜处的募集丧失。我们的结果表明,Nup153在核孔处的募集和维持均依赖于核纤层的完整性。

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