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第4章. 评估裂殖酵母中mRNA衰变的调控

Chapter 4. Evaluating the control of mRNA decay in fission yeast.

作者信息

Cuthbertson Brandon J, Blackshear Perry J

机构信息

Laboratory of Signal Transduction, National Institute of Environmental Health Sciences, Research Triangle Park, North Carolina, USA.

出版信息

Methods Enzymol. 2008;449:73-95. doi: 10.1016/S0076-6879(08)02404-X.

Abstract

Abnormalities in rates of mRNA decay can lead to changes in steady-state levels of transcripts, which in turn can result in changes in protein production and abnormal phenotypes. For example, mice deficient in the gene encoding tristetraprolin (TTP), a tandem CCCH zinc finger domain protein, develop a complex syndrome that includes wasting, arthritis, and myeloid hyperplasia, all secondary to elevated levels of tumor necrosis factor (TNF). This in turn reflects elevated levels of TNF mRNA, which is a direct "target" of TTP binding and TTP-promoted deadenylation and decay. Three TTP-like proteins are expressed in human and four in mice, all of which bind mRNA and control transcript decay. In contrast, the Schizosaccharomyces pombe genome contains only one TTP-like protein, named Zfs1. Microarray analysis revealed that S. pombe cells deficient in zfs1 overexpress the arz1 mRNA, which has several ideal TTP-like binding sites in its 3'-untranslated region (UTR). We used the "no message in thiamine (nmt)" repressible system, in which thiamine rapidly shuts off gene transcription, to evaluate the relative stability of the arz1 mRNA in wild-type and zfs1-deficient cells. We found that the arz1 mRNA decayed much more rapidly in the presence of endogenous zfs1 than in its absence. The nmt system also proved useful for the study of mRNA sequence elements that are essential for interactions with zfs1, which eventually results in accelerated transcript decay. These studies illustrate the utility of the S. pombe nmt system for evaluating protein-mRNA interactions that affect mRNA decay in vivo and provide an alternative to the use of transcription inhibitors or heat-sensitive polymerase promoters that are used more commonly to evaluate mRNA decay in Saccharomyces cerevesiae. We hope to use this convenient experimental system to unravel the mechanism by which TTP family members, in this and other organisms, bind to mRNAs and promote their instability.

摘要

mRNA 降解速率异常会导致转录本稳态水平发生变化,进而可能导致蛋白质生成改变和出现异常表型。例如,缺乏编码三指四脯氨酸蛋白(TTP,一种串联 CCCH 锌指结构域蛋白)基因的小鼠会出现一种复杂综合征,包括消瘦、关节炎和髓样增生,所有这些都是肿瘤坏死因子(TNF)水平升高的继发结果。这反过来又反映出 TNF mRNA 水平升高,而 TNF mRNA 是 TTP 结合以及 TTP 促进去腺苷酸化和降解的直接“靶点”。人类表达三种 TTP 样蛋白,小鼠表达四种,它们都能结合 mRNA 并控制转录本降解。相比之下,粟酒裂殖酵母基因组仅包含一种 TTP 样蛋白,名为 Zfs1。微阵列分析显示,缺乏 zfs1 的粟酒裂殖酵母细胞中 arz1 mRNA 过度表达,arz1 mRNA 的 3'非翻译区(UTR)有几个理想的 TTP 样结合位点。我们使用“硫胺素存在时无信息(nmt)”可抑制系统,其中硫胺素能迅速关闭基因转录,以评估野生型和缺乏 zfs1 的细胞中 arz1 mRNA 的相对稳定性。我们发现,在内源性 zfs1 存在的情况下,arz1 mRNA 的降解速度比不存在时快得多。nmt 系统还被证明可用于研究与 zfs1 相互作用所必需的 mRNA 序列元件,这种相互作用最终导致转录本加速降解。这些研究说明了粟酒裂殖酵母 nmt 系统在评估影响体内 mRNA 降解的蛋白质 - mRNA 相互作用方面的实用性,并为使用转录抑制剂或热敏感聚合酶启动子提供了一种替代方法,转录抑制剂或热敏感聚合酶启动子更常用于评估酿酒酵母中的 mRNA 降解。我们希望利用这个便捷的实验系统来阐明 TTP 家族成员在该生物体及其他生物体中与 mRNA 结合并促进其不稳定性的机制。

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