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信使核糖核酸内的核糖体核糖核酸互补性:信使核糖核酸与核糖体相互作用及翻译控制的可能基础。

rRNA complementarity within mRNAs: a possible basis for mRNA-ribosome interactions and translational control.

作者信息

Tranque P, Hu M C, Edelman G M, Mauro V P

机构信息

Department of Neurobiology, The Scripps Research Institute and The Skaggs Institute for Chemical Biology, 10550 North Torrey Pines Road, La Jolla, CA 92037, USA.

出版信息

Proc Natl Acad Sci U S A. 1998 Oct 13;95(21):12238-43. doi: 10.1073/pnas.95.21.12238.

Abstract

Our recent demonstration that many eukaryotic mRNAs contain sequences complementary to rRNA led to the hypothesis that these sequences might mediate specific interactions between mRNAs and ribosomes and thereby affect translation. In the present experiments, the ability of complementary sequences to bind to rRNA was investigated by using photochemical cross-linking. RNA probes with perfect complementarity to 18S or 28S rRNA were shown to cross-link specifically to the corresponding rRNA within intact ribosomal subunits. Similar results were obtained by using probes based on natural mRNA sequences with varying degrees of complementarity to the 18S rRNA. RNase H cleavage localized four such probes to complementary regions of the 18S rRNA. The effects of complementarity on translation were assessed by using the mRNA encoding ribosomal protein S15. This mRNA contains a sequence within its coding region that is complementary to the 18S rRNA at 20 of 22 nucleotides. RNA from an S15-luciferase fusion construct was translated in a cell-free lysate and compared with the translation of four related constructs that were mutated to decrease complementarity to the 18S rRNA. These mutations did not alter the amino acid sequence or the codon bias. A correlation between complementarity and translation was observed; constructs with less complementarity increased the amount of translation up to 54%. These findings raised the possibility that direct base-pairing of particular mRNAs to rRNAs within ribosomes may function as a mechanism of translational control.

摘要

我们最近证明,许多真核生物mRNA含有与rRNA互补的序列,这引发了一个假说,即这些序列可能介导mRNA与核糖体之间的特异性相互作用,从而影响翻译过程。在本实验中,通过光化学交联研究了互补序列与rRNA结合的能力。与18S或28S rRNA具有完全互补性的RNA探针被证明能在完整的核糖体亚基内与相应的rRNA特异性交联。使用基于与18S rRNA具有不同程度互补性的天然mRNA序列的探针也获得了类似结果。RNase H切割将四个这样的探针定位到18S rRNA的互补区域。通过使用编码核糖体蛋白S15的mRNA评估互补性对翻译的影响。该mRNA在其编码区域内包含一个序列,在22个核苷酸中的20个处与18S rRNA互补。来自S15-荧光素酶融合构建体的RNA在无细胞裂解物中进行翻译,并与四个相关构建体的翻译进行比较,这些构建体经过突变以降低与18S rRNA的互补性。这些突变没有改变氨基酸序列或密码子偏好。观察到互补性与翻译之间存在相关性;互补性较低的构建体使翻译量增加了高达54%。这些发现提出了一种可能性,即特定mRNA与核糖体中的rRNA直接碱基配对可能作为一种翻译控制机制发挥作用。

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