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性致死基因RNA结合结构域与RNA的相互作用。

Interaction of the sex-lethal RNA binding domains with RNA.

作者信息

Kanaar R, Lee A L, Rudner D Z, Wemmer D E, Rio D C

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley 94720, USA.

出版信息

EMBO J. 1995 Sep 15;14(18):4530-9. doi: 10.1002/j.1460-2075.1995.tb00132.x.

Abstract

Sex determination and X chromosome dosage compensation in Drosophila melanogaster are directed by the Sex-lethal (Sxl) protein. In part, Sxl functions by regulating the splicing of the transformer pre-mRNA by binding to a 3' splice site polypyrimidine tract. Polypyrimidine tracts are essential for splicing of metazoan pre-mRNAs. To unravel the mechanism of splicing regulation at polypyrimidine tracts we analyzed the interaction of Sxl with RNA. The RNA binding activity of Sxl was mapped to the two ribonucleoprotein consensus sequence domains of the protein. Quantitation of binding showed that both RNA binding domains (RBDs) were required in cis for site-specific RNA binding. Individual RBDs interacted with RNA more weakly and had lost the ability to discriminate between wild-type and mutant transformer polypyrimidine tracts. Structural elements in one of the RBDs that are likely to interact with a polypyrimidine tract were identified using nuclear magnetic resonance techniques. In addition, our data suggest that multiple imino protons of the transformer polypyrimidine tract were involved in hydrogen bonding. Interestingly, in vitro Sxl bound with equal affinity to polypyrimidine tracts of pre-mRNAs that it does not regulate in vivo. We discuss the implications of this finding for the mechanism through which Sxl may gain selectivity for particular polypyrimidine tracts in vivo.

摘要

黑腹果蝇的性别决定和X染色体剂量补偿由性致死(Sex-lethal,Sxl)蛋白指导。部分情况下,Sxl通过与一个3'剪接位点多嘧啶序列结合来调节transformer前体mRNA的剪接,从而发挥功能。多嘧啶序列对于后生动物前体mRNA的剪接至关重要。为了阐明多嘧啶序列处的剪接调控机制,我们分析了Sxl与RNA的相互作用。Sxl的RNA结合活性被定位到该蛋白的两个核糖核蛋白共有序列结构域。结合定量分析表明,两个RNA结合结构域(RBDs)在顺式作用中对于位点特异性RNA结合都是必需的。单个RBD与RNA的相互作用较弱,并且失去了区分野生型和突变型transformer多嘧啶序列的能力。利用核磁共振技术鉴定了其中一个RBD中可能与多嘧啶序列相互作用的结构元件。此外,我们的数据表明,transformer多嘧啶序列的多个亚氨基质子参与了氢键形成。有趣的是,在体外,Sxl与它在体内不调控的前体mRNA的多嘧啶序列以相同的亲和力结合。我们讨论了这一发现对于Sxl在体内可能获得对特定多嘧啶序列选择性的机制的意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6e1/394545/a2012364fba1/emboj00042-0155-a.jpg

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