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Pat1有助于Lsm1-7-Pat1复合物的RNA结合活性。

Pat1 contributes to the RNA binding activity of the Lsm1-7-Pat1 complex.

作者信息

Chowdhury Ashis, Kalurupalle Swathi, Tharun Sundaresan

机构信息

Department of Biochemistry, Uniformed Services University of the Health Sciences, Bethesda, Maryland 20814, USA.

Department of Biochemistry, Uniformed Services University of the Health Sciences, Bethesda, Maryland 20814, USA

出版信息

RNA. 2014 Sep;20(9):1465-75. doi: 10.1261/rna.045252.114. Epub 2014 Jul 17.

Abstract

A major mRNA decay pathway in eukaryotes is initiated by deadenylation followed by decapping of the oligoadenylated mRNAs and subsequent 5'-to-3' exonucleolytic degradation of the capless mRNA. In this pathway, decapping is a rate-limiting step that requires the hetero-octameric Lsm1-7-Pat1 complex to occur at normal rates in vivo. This complex is made up of the seven Sm-like proteins, Lsm1 through Lsm7, and the Pat1 protein. It binds RNA and has a unique binding preference for oligoadenylated RNAs over polyadenylated RNAs. Such binding ability is crucial for its mRNA decay function in vivo. In order to determine the contribution of Pat1 to the function of the Lsm1-7-Pat1 complex, we compared the RNA binding properties of the Lsm1-7 complex purified from pat1Δ cells and purified Pat1 fragments with that of the wild-type Lsm1-7-Pat1 complex. Our studies revealed that both the Lsm1-7 complex and purified Pat1 fragments have very low RNA binding activity and are impaired in the ability to recognize the oligo(A) tail on the RNA. However, reconstitution of the Lsm1-7-Pat1 complex from these components restored these abilities. We also observed that Pat1 directly contacts RNA in the context of the Lsm1-7-Pat1 complex. These studies suggest that the unique RNA binding properties and the mRNA decay function of the Lsm1-7-Pat1 complex involve cooperation of residues from both Pat1 and the Lsm1-7 ring. Finally our studies also revealed that the middle domain of Pat1 is essential for the interaction of Pat1 with the Lsm1-7 complex in vivo.

摘要

真核生物中主要的mRNA降解途径是通过去腺苷酸化启动的,随后寡聚腺苷酸化的mRNA去帽,并对无帽mRNA进行后续的5'至3'外切核酸酶降解。在该途径中,去帽是限速步骤,需要异源八聚体Lsm1-7-Pat1复合物在体内以正常速率发生。该复合物由七个Sm样蛋白Lsm1至Lsm7和Pat1蛋白组成。它结合RNA,并且对寡聚腺苷酸化RNA比对多聚腺苷酸化RNA具有独特的结合偏好。这种结合能力对其在体内的mRNA降解功能至关重要。为了确定Pat1对Lsm1-7-Pat1复合物功能的贡献,我们比较了从pat1Δ细胞中纯化的Lsm1-7复合物和纯化的Pat1片段与野生型Lsm1-7-Pat1复合物的RNA结合特性。我们的研究表明,Lsm1-7复合物和纯化的Pat1片段都具有非常低的RNA结合活性,并且识别RNA上寡聚(A)尾的能力受损。然而,从这些组分中重建Lsm1-7-Pat1复合物恢复了这些能力。我们还观察到Pat1在Lsm1-7-Pat1复合物的背景下直接接触RNA。这些研究表明,Lsm1-7-Pat1复合物独特的RNA结合特性和mRNA降解功能涉及Pat1和Lsm1-7环中残基的协同作用。最后,我们的研究还表明,Pat1的中间结构域对于Pat1在体内与Lsm1-7复合物的相互作用至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/110c/4138329/2336b5e0e7a5/1465f01.jpg

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