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非洲爪蟾多指蛋白Xfin的RNA结合特性及进化保守性

RNA binding properties and evolutionary conservation of the Xenopus multifinger protein Xfin.

作者信息

Andreazzoli M, De Lucchini S, Costa M, Barsacchi G

机构信息

Dipartimento di Fisiologia e Biochimica, Università di Pisa, Italy.

出版信息

Nucleic Acids Res. 1993 Sep 11;21(18):4218-25. doi: 10.1093/nar/21.18.4218.

Abstract

Xfin is a Xenopus zinc finger protein which is expressed in the cytoplasm of the oocyte and throughout embryogenesis, as well as in the cytoplasm of some specific and highly differentiated cell types (De Lucchini et al., Mech. Dev. 36, 31-40, 1991). In this paper we present a characterization of some structural features of the protein and of its nucleic acid binding properties. We found that Xfin is a phosphoprotein, is present in the soluble fraction of the cytoplasm, and is actively phosphorylated in cytosolic extracts. Several putative phosphorylation sites are present in the cDNA-derived protein sequence, mostly located at specific positions within the Zn-fingers. In an in vitro assay a fusion protein containing part of the finger region of Xfin exhibits specific binding to a poly (G) RNA homopolymer, while it does not bind DNA. The RNA binding activity of the protein is significantly enhanced by phosphorylation. A putative Xfin homolog, which appears to be evolutionarily conserved with regard to size, cytoplasmic expression and antigenic specificity, is present in representatives of five Vertebrate classes. Taken together, these results may suggest that, by virtue of its RNA binding activity modulated through phosphorylation, Xfin could serve some evolutionarily conserved function in post-transcriptional regulation processes.

摘要

Xfin是一种非洲爪蟾锌指蛋白,在卵母细胞的细胞质中以及整个胚胎发育过程中均有表达,在一些特定的高度分化的细胞类型的细胞质中也有表达(德卢基尼等人,《机制与发育》36卷,31 - 40页,1991年)。在本文中,我们对该蛋白的一些结构特征及其核酸结合特性进行了表征。我们发现Xfin是一种磷蛋白,存在于细胞质的可溶部分,并且在胞质提取物中被积极磷酸化。在源自cDNA的蛋白质序列中存在几个假定的磷酸化位点,大多位于锌指内的特定位置。在体外实验中,一种包含Xfin部分指状区域的融合蛋白对聚(G)RNA均聚物表现出特异性结合,而不结合DNA。该蛋白的RNA结合活性通过磷酸化得到显著增强。在五个脊椎动物类别的代表中存在一种假定的Xfin同源物,其在大小、细胞质表达和抗原特异性方面似乎具有进化保守性。综上所述,这些结果可能表明,凭借其通过磷酸化调节的RNA结合活性,Xfin可能在转录后调控过程中发挥一些进化保守的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e90/310053/1444e9e7402d/nar00067-0074-a.jpg

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