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首页> 外文期刊>Journal of Molecular Biology >DIFFERENTIAL EFFECTS OF AROMATIC AND CHARGED RESIDUE SUBSTITUTIONS IN THE RNA BINDING DOMAINS OF THE YEAST POLY(A) BINDING PROTEIN
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DIFFERENTIAL EFFECTS OF AROMATIC AND CHARGED RESIDUE SUBSTITUTIONS IN THE RNA BINDING DOMAINS OF THE YEAST POLY(A) BINDING PROTEIN

机译:酵母多聚(A)结合蛋白RNA结合域中芳香和带电残基取代基的差异作用

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摘要

The yeast poly(A)-binding protein (Pab1p) contains four RNA recognition motifs (RRMs). Site-directed mutations were introduced into each of these RRMs in order to investigate their relative contributions to specific and non-specific RNA binding, and to determine the consequences of these mutations on the ability of Pab1p to support viability. Specifically, a charged and an aromatic residue that were predicted to be involved in RNA binding were mutated in each RRM. These mutations revealed that the second RRM is primarily responsible for poly(A) binding, while the fourth RRM is primarily responsible for non-specific polypyrimidine RNA binding. The mutated aromatic residues in each RRM contributed to both modes of binding whereas the mutated charged residues contributed primarily to non-specific RNA binding. RNA binding in vivo correlated with the in vitro binding measurements. Furthermore, RNA binding, but not high-affinity poly(A) binding, correlated with the ability of Pab1p to sustain yeast cell viability. These data suggest that a single aromatic substitution in Pab1p can significantly reduce its RNA binding ability, that the capacity of Pab1p to bind poly(A) as well as other RNAs is mediated by distinct residues within different RRMs, and that Pab1p does not require high affinity poly(A) tail binding to perform its essential function. (C) 1997 Academic Press Limited. [References: 47]
机译:酵母聚(A)结合蛋白(Pab1p)包含四个RNA识别基序(RRM)。将定点突变引入这些RRM中的每一个中,以研究它们对特异性和非特异性RNA结合的相对贡献,并确定这些突变对Pab1p支持生存能力的影响。具体而言,在每个RRM中突变了预计参与RNA结合的带电荷和芳香族残基。这些突变表明第二个RRM主要负责poly(A)结合,而第四个RRM主要负责非特异性的聚嘧啶RNA结合。每个RRM中突变的芳香族残基都对两种结合模式都有贡献,而带电荷的突变残基则主要对非特异性RNA结合有贡献。体内RNA结合与体外结合测量相关。此外,RNA结合而不是高亲和力的poly(A)结合与Pab1p维持酵母细胞活力的能力有关。这些数据表明,Pab1p中的单个芳族取代会显着降低其RNA结合能力,Pab1p结合poly(A)以及其他RNA的能力是由不同RRM中不同的残基介导的,并且Pab1p不需要高亲和力poly(A)尾部绑定以执行其基本功能(C)1997 Academic Press Limited。 [参考:47]

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