首页> 美国卫生研究院文献>Nucleic Acids Research >Zinc finger-like structure in U1-specific protein C is essential for specific binding to U1 snRNP.
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Zinc finger-like structure in U1-specific protein C is essential for specific binding to U1 snRNP.

机译:U1特异性蛋白C中的锌指状结构对于与U1 snRNP特异性结合至关重要。

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摘要

The U1 small nuclear ribonucleoprotein (snRNP) contains three specific proteins denoted 70K, A and C, in addition to the common proteins. Specific functions of these proteins are not known although recently protein C was shown to be involved in the binding of U1 snRNP to the 5' splice site of a pre-mRNA. Unlike proteins A and 70K, U1-C lacks an RNA binding domain (RNP-80 motif) and does not appear to bind directly to U1 snRNA. However, at the amino terminal end protein C contains a zinc finger-like structure of the CC-HH type found in transcription factor TF IIIA. Several lines of evidence indicate that the zinc finger-like structure is essential for the binding of protein C to U1 snRNP particles: i) deletion analysis of protein C showed that the N-terminal 45 amino acids are sufficient for binding to U1 snRNPs, ii) modification of the cysteine residues in the N-terminal domain with N-ethylmaleimide and iii) single point mutations of the cysteines and histidines contributing to the putative zinc finger abolished binding of protein C to U1 snRNPs. Interestingly, unlike the proteins U1-A and U1-70K the U1-C protein is unable to bind to naked U1 snRNA. On the other hand it is shown that protein C does not bind to the known protein constituents of the U1 particle without the U1 snRNA being present. These data indicate that the binding of protein C to U1 snRNP is dependent on the presence of both the U1 snRNA and one or more of the U1 snRNP proteins.
机译:U1小核糖核蛋白(snRNP)除常见蛋白外,还包含三个特定蛋白,分别表示为70K,A和C。这些蛋白的特定功能尚不清楚,尽管最近发现蛋白C参与U1 snRNP与pre-mRNA的5'剪接位点的结合。与蛋白质A和70K不同,U1-C缺少RNA结合结构域(RNP-80基序),并且似乎不直接与U1 snRNA结合。然而,在氨基末端蛋白C包含在转录因子TF IIIA中发现的CC-HH型锌指状结构。几条证据表明锌指状结构对于C蛋白与U1 snRNP颗粒的结合是必不可少的:i)对C蛋白的缺失分析表明N末端的45个氨基酸足以与U1 snRNPs结合,ii )用N-乙基马来酰亚胺修饰N末端结构域中的半胱氨酸残基,以及iii)半胱氨酸和组氨酸的单点突变,导致推定的锌指消除了蛋白C与U1 snRNPs的结合。有趣的是,与蛋白质U1-A和U1-70K不同,U1-C蛋白无法与裸露的U1 snRNA结合。另一方面表明,在不存在U1 snRNA的情况下,蛋白C不与U1颗粒的已知蛋白成分结合。这些数据表明蛋白C与U1 snRNP的结合取决于U1 snRNA和一个或多个U1 snRNP蛋白的存在。

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