UPMC Univ Paris 06, UMR 7622, Laboratoire de Biologie du Développement, Paris, France.
PLoS One. 2011;6(7):e22296. doi: 10.1371/journal.pone.0022296. Epub 2011 Jul 19.
Ilf3 and NF90, two proteins containing double-stranded RNA-binding domains, are generated by alternative splicing and involved in several functions. Their heterogeneity results from posttranscriptional and posttranslational modifications. Alternative splicing of exon 3, coding for a 13 aa N-terminal motif, generates for each protein a long and short isoforms. Subcellular fractionation and localization of recombinant proteins showed that this motif acts as a nucleolar localization signal. Deletion and substitution mutants identified four arginines, essential for nucleolar targeting, and three histidines to stabilize the proteins within the nucleolus. The short isoforms are never found in the nucleoli, whereas the long isoforms are present in the nucleoplasm and the nucleoli. For Ilf3, only the posttranslationally-unmodified long isoform is nucleolar, suggesting that this nucleolar targeting is abrogated by posttranslational modifications. Confocal microscopy and FRAP experiments have shown that the long Ilf3 isoform localizes to the granular component of the nucleolus, and that L-Ilf3 and L-NF90 exchange rapidly between nucleoli. The presence of this 13 aminoacid motif, combined with posttranslational modifications, is responsible for the differences in Ilf3 and NF90 isoforms subcellular localizations. The protein polymorphism of Ilf3/NF90 and the various subcellular localizations of their isoforms may partially explain the various functions previously reported for these proteins.
Ilf3 和 NF90 是两种含有双链 RNA 结合结构域的蛋白质,它们通过选择性剪接产生,参与多种功能。它们的异质性是由转录后和翻译后修饰产生的。外显子 3 的选择性剪接,编码一个 13 个氨基酸的 N 端基序,为每种蛋白质产生长和短的异构体。重组蛋白的亚细胞分离和定位表明,该基序作为核仁定位信号。缺失和取代突变体鉴定出四个精氨酸,是核仁靶向所必需的,还有三个组氨酸,稳定核仁内的蛋白质。短异构体从未在核仁中发现,而长异构体存在于核质和核仁中。对于 Ilf3,只有未经翻译后修饰的长异构体是核仁的,这表明这种核仁靶向被翻译后修饰所破坏。共聚焦显微镜和 FRAP 实验表明,长 Ilf3 异构体定位于核仁的颗粒成分,并且 L-Ilf3 和 L-NF90 在核仁之间快速交换。这种 13 个氨基酸基序的存在,加上翻译后修饰,是 Ilf3 和 NF90 异构体亚细胞定位差异的原因。Ilf3/NF90 的蛋白质多态性和其异构体的各种亚细胞定位可能部分解释了这些蛋白质以前报道的各种功能。