改变其5'非翻译区高阶结构的突变影响叶绿体rps7 mRNA的稳定性。

D C Fargo, E Hu, J E Boynton, N W Gillham
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引用次数: 9

摘要

在本文中,我们研究了莱茵衣藻叶绿体rps7转录物的5'UTR突变对mRNA稳定性的影响。rps7 5'UTR中的5个点突变体是根据它们在大肠杆菌中无法积累报告mRNA而选择的。这些突变中的每一个都会在rps75 ' utr的预测高阶结构中产生改变,从而破坏mRNA的稳定性。这些突变的顺式作用抑制因子已经在大肠杆菌和莱茵哈氏杆菌叶绿体中被选择,以恢复信息的稳定性和功能。在野生型、原始突变型和体外转录的抑制型5' utr之间,没有观察到RNA融化和再退火谱的差异。与任何突变的rps7 5'UTR进行紫外交联试验时,未检测到与野生型rps7 5'UTR结合的32 kDa和47 kDa蛋白。然而,在检测的6个抑制突变体中,32 kda蛋白的结合得以恢复。这表明32kda蛋白可能参与保护rps7 5'UTR和附着的编码区免受核糖核酸酶的酶切。或者,32 kda蛋白的结合位点可能在突变体5'UTR的重排三级结构中独立丢失,使RNA暴露于降解,并在抑制突变体中恢复。
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Mutations that alter the higher-order structure of its 5' untranslated region affect the stability of chloroplast rps7 mRNA.

In this paper, we examine the effects of mutations in the 5'UTR of the chloroplast rps7 transcript of Chlamydomonas reinhardtii that reduce the stability of the mRNA. Five point mutants in the rps7 5'UTR were selected on the basis of their failure to accumulate reporter mRNA in Escherichia coli. Each of these mutations produces alterations in the predicted higher-order structures of the rps7 5'UTR that destabilize the mRNA. Cis-acting suppressors of these mutations have been selected in E. coli and in the C. reinhardtii chloroplast that restore message stability and function. No differences in RNA melting and reannealing profiles have been observed between wild type, original mutant, and suppressor 5'UTRs transcribed in vitro. Proteins of 32 kDa and 47 kDa that bind to the wild-type rps7 5'UTR are not detected by UV cross-linking assays performed with any of the mutant rps7 5'UTRs. However, binding of the 32-kDa protein is restored in the six suppressor mutants examined. This suggests that the 32-kDa protein may be involved in protecting the rps7 5'UTR and the attached coding region from digestion by ribonucleases. Alternatively, the binding site for the 32-kDa protein may be independently lost in the rearranged tertiary structure of the mutant 5'UTR that exposes the RNA to degradation and is restored in the suppressor mutants.

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