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研究PMR1核酸内切酶介导的mRNA降解的方法。

Approaches for studying PMR1 endonuclease-mediated mRNA decay.

作者信息

Otsuka Yuichi, Schoenberg Daniel R

机构信息

Department of Molecular and Cellular Biochemistry and The RNA Group, The Ohio State University, Columbus, Ohio, USA.

出版信息

Methods Enzymol. 2008;448:241-63. doi: 10.1016/S0076-6879(08)02613-X.

Abstract

Although most eukaryotic mRNAs are degraded by exonucleases acting on either end of the molecule, a subset of mRNAs undergo endonuclease cleavage within the mRNA body. Endonuclease cleavage can be activated by cellular stress, extracellular signals, or by ribosome stalling, as might occur at a premature termination codon. Only a few eukaryotic mRNA endonucleases have been identified, and of these, polysomal ribonuclease 1 (PMR1) is the best characterized. A notable feature of PMR1-mediated mRNA decay is that it acts on specific mRNAs while they are engaged by translating ribosomes. This chapter begins with several procedures used to characterize in vivo endonuclease cleavage of any mRNA by any endonuclease. These include approaches for identifying the 5'-end(s) downstream of an endonuclease cleavage site (S1 nuclease protection and primer extension), and a ligation-mediated RT-PCR approach developed in our laboratory for identifying the 3'-ends upstream of a cleavage site. We then describe a number of approaches used to characterize PMR1-mediated mRNA decay in cultured cells. PMR1 participates in a number of different complexes. We show several approaches for studying these complexes, and we describe techniques for isolating and characterizing PMR1-interacting proteins and its target mRNAs. Although the various techniques described here have proven their usefulness in studying PMR1, they can be generalized to studying decay by any other mRNA endonuclease.

摘要

尽管大多数真核生物mRNA是由作用于分子两端的核酸外切酶降解的,但有一部分mRNA会在mRNA主体内发生核酸内切酶切割。核酸内切酶切割可由细胞应激、细胞外信号或核糖体停滞激活,比如在提前终止密码子处可能发生的情况。目前仅鉴定出少数几种真核生物mRNA核酸内切酶,其中多聚核糖体核糖核酸酶1(PMR1)的特征最为明确。PMR1介导的mRNA降解的一个显著特点是,它在特定mRNA与正在翻译的核糖体结合时发挥作用。本章首先介绍了几种用于在体内表征任何核酸内切酶对任何mRNA进行核酸内切酶切割的方法。这些方法包括鉴定核酸内切酶切割位点下游5'端的方法(S1核酸酶保护法和引物延伸法),以及我们实验室开发的用于鉴定切割位点上游3'端的连接介导RT-PCR方法。然后,我们描述了一些用于在培养细胞中表征PMR1介导的mRNA降解的方法。PMR1参与多种不同的复合物。我们展示了几种研究这些复合物的方法,并描述了分离和表征与PMR1相互作用的蛋白质及其靶mRNA的技术。尽管这里描述的各种技术已证明在研究PMR1方面很有用,但它们也可推广用于研究任何其他mRNA核酸内切酶介导的降解。

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