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Sxl蛋白在体外和体内与RNA的结合。

RNA binding by Sxl proteins in vitro and in vivo.

作者信息

Samuels M E, Bopp D, Colvin R A, Roscigno R F, Garcia-Blanco M A, Schedl P

机构信息

Department of Molecular Biology, Princeton University, New Jersey 08544.

出版信息

Mol Cell Biol. 1994 Jul;14(7):4975-90. doi: 10.1128/mcb.14.7.4975-4990.1994.

Abstract

Sxl has been proposed to regulate splicing of specific target genes by directly interacting with their pre-mRNAs. We have therefore examined the RNA-binding properties of Sxl protein in vitro and in vivo. Gel shift and UV cross-linking assays with a purified recombinant MBP-Sxl fusion protein demonstrated preferential binding to RNAs containing poly(U) tracts, and the protein footprinted over the poly(U) region. The protein did not appear to recognize either branch point or AG dinucleotide sequences, but an adenosine residue at the 5' end of the poly(U) tract enhanced binding severalfold. MBP-Sxl formed two shifted complexes on a tra regulated acceptor site RNA; the doubly shifted form may have been stabilized by protein-protein interactions. Consistent with its proposed role in pre-mRNA processing, in nuclear extracts Sxl was found in large ribonucleoprotein (RNP) complexes which sedimented significantly faster than bulk heterogeneous nuclear RNP and small nuclear RNPs. Anti-Sxl staining of polytene chromosomes showed Sxl protein at a number of chromosomal locations, among which was the Sxl locus itself. Sxl protein could also be targeted to a new chromosomal site carrying a transgene containing splicing regulatory sequences from the Sxl gene, following transcriptional induction. After prolonged heat shock, all Sxl protein was restricted to the heat-induced puff at the hs93D locus. In contrast, a presumptive small nuclear RNP protein was observed at several heat puffs following shock.

摘要

有人提出,Sxl 通过直接与特定靶基因的前体 mRNA 相互作用来调节其剪接。因此,我们在体外和体内研究了 Sxl 蛋白的 RNA 结合特性。用纯化的重组 MBP - Sxl 融合蛋白进行凝胶迁移和紫外线交联试验表明,该蛋白优先结合含有聚(U)序列的 RNA,并且蛋白足迹覆盖在聚(U)区域。该蛋白似乎不识别分支点或 AG 二核苷酸序列,但聚(U)序列 5' 端的一个腺苷残基可使结合增强几倍。MBP - Sxl 在 tra 调控的受体位点 RNA 上形成了两种迁移复合物;双重迁移形式可能通过蛋白质 - 蛋白质相互作用而稳定。与其在前体 mRNA 加工中的假定作用一致,在核提取物中发现 Sxl 存在于大型核糖核蛋白(RNP)复合物中,这些复合物的沉降速度明显快于大量异质核 RNP 和小核 RNP。对多线染色体进行抗 Sxl 染色显示,Sxl 蛋白存在于多个染色体位置,其中包括 Sxl 基因座本身。转录诱导后,Sxl 蛋白也可靶向携带含有来自 Sxl 基因剪接调控序列的转基因的新染色体位点。长时间热休克后,所有 Sxl 蛋白都局限于 hs93D 基因座处热诱导的胀泡中。相比之下,在热休克后的几个热胀泡中观察到一种假定的小核 RNP 蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f65/358869/77ed18d1899f/molcellb00007-0654-a.jpg

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