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本文引用的文献

1
A potential mechanism for selective control of cap-independent translation by a viral RNA sequence in cis and in trans.一种通过病毒RNA序列顺式和反式对不依赖帽结构的翻译进行选择性控制的潜在机制。
RNA. 1999 Jun;5(6):728-38. doi: 10.1017/s1355838299981979.
2
Identification of the RNA-binding, dimerization, and eIF4GI-binding domains of rotavirus nonstructural protein NSP3.轮状病毒非结构蛋白NSP3的RNA结合、二聚化及eIF4GI结合结构域的鉴定
J Virol. 1999 Jul;73(7):5411-21. doi: 10.1128/JVI.73.7.5411-5421.1999.
3
Expanded sequence dependence of thermodynamic parameters improves prediction of RNA secondary structure.热力学参数对序列依赖性的扩展改进了RNA二级结构的预测。
J Mol Biol. 1999 May 21;288(5):911-40. doi: 10.1006/jmbi.1999.2700.
4
RNA-binding and capping activities of proteins in rotavirus open cores.轮状病毒开放核心中蛋白质的RNA结合与加帽活性
J Virol. 1999 Feb;73(2):1382-91. doi: 10.1128/JVI.73.2.1382-1391.1999.
5
A newly identified N-terminal amino acid sequence of human eIF4G binds poly(A)-binding protein and functions in poly(A)-dependent translation.新鉴定出的人eIF4G的N端氨基酸序列可结合聚腺苷酸结合蛋白并在依赖聚腺苷酸的翻译中发挥作用。
EMBO J. 1998 Dec 15;17(24):7480-9. doi: 10.1093/emboj/17.24.7480.
6
Features of the autonomous function of the translational enhancer domain of satellite tobacco necrosis virus.卫星烟草坏死病毒翻译增强子结构域的自主功能特征
RNA. 1998 Nov;4(11):1347-56. doi: 10.1017/s135583829898092x.
7
Structure of the DNA repair and replication endonuclease and exonuclease FEN-1: coupling DNA and PCNA binding to FEN-1 activity.DNA修复与复制内切核酸酶和外切核酸酶FEN-1的结构:DNA与增殖细胞核抗原(PCNA)结合与FEN-1活性的偶联
Cell. 1998 Oct 2;95(1):135-46. doi: 10.1016/s0092-8674(00)81789-4.
8
Rotavirus RNA-binding protein NSP3 interacts with eIF4GI and evicts the poly(A) binding protein from eIF4F.轮状病毒RNA结合蛋白NSP3与真核翻译起始因子4GI相互作用,并从真核翻译起始因子4F复合物中驱逐多聚腺苷酸结合蛋白。
EMBO J. 1998 Oct 1;17(19):5811-21. doi: 10.1093/emboj/17.19.5811.
9
A tale of two termini: a functional interaction between the termini of an mRNA is a prerequisite for efficient translation initiation.两个末端的故事:mRNA末端之间的功能相互作用是高效翻译起始的先决条件。
Gene. 1998 Aug 17;216(1):1-11. doi: 10.1016/s0378-1119(98)00318-7.
10
Rotavirus RNA replication requires a single-stranded 3' end for efficient minus-strand synthesis.轮状病毒RNA复制需要一个单链3'末端以高效合成负链。
J Virol. 1998 Sep;72(9):7387-96. doi: 10.1128/JVI.72.9.7387-7396.1998.

轮状病毒非多聚腺苷酸化mRNA 3'末端共有序列中的一个四核苷酸翻译增强子。

A four-nucleotide translation enhancer in the 3'-terminal consensus sequence of the nonpolyadenylated mRNAs of rotavirus.

作者信息

Chizhikov V, Patton J T

机构信息

Laboratory of Infectious Diseases, National Institutes of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

RNA. 2000 Jun;6(6):814-25. doi: 10.1017/s1355838200992264.

DOI:10.1017/s1355838200992264
PMID:10864041
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1369960/
Abstract

The 5' cap and poly(A) tail of eukaryotic mRNAs work synergistically to enhance translation through a process that requires interaction of the cap-associated eukaryotic initiation factor, eIF-4G, and the poly(A)-binding protein, PABP. Because the mRNAs of rotavirus, and other members of the Reoviridae, contain caps but lack poly(A) tails, their translation may be enhanced through a unique mechanism. To identify translation-enhancement elements in the viral mRNAs that stimulate translation in vivo, chimeric RNAs were prepared that contained an open reading frame for luciferase and the 5' and 3' untranslated regions (UTRs) of a rotavirus mRNA or of a nonviral mRNA. Transfection of the chimeric RNAs into rotavirus-infected cells showed that the viral 3' UTR contained a translation-enhancement element that promoted gene expression. The element did not enhance gene expression in uninfected cells and did not affect the stability of the RNAs. Mutagenesis showed that the conserved sequence GACC located at the 3' end of rotavirus mRNAs operated as an enhancement element. The 3'-GACC element stimulated protein expression independently of the sequence of the 5' UTR, although efficient expression required the RNA to contain a cap. The results indicate that the expression of viral proteins in rotavirus-infected cells is specifically up-regulated by the activity of a novel 4-nt 3' translation enhancer (TE) common to the 11 nonpolyadenylated mRNAs of the virus. The 4-nt sequence of the rotavirus 3' TE represents by far the shortest of any of the sequence enhancers known to stimulate translation.

摘要

真核生物mRNA的5'帽和聚腺苷酸(poly(A))尾协同作用,通过一个需要帽相关真核起始因子eIF-4G和聚腺苷酸结合蛋白PABP相互作用的过程来增强翻译。由于轮状病毒及呼肠孤病毒科其他成员的mRNA含有帽但缺乏聚腺苷酸尾,它们的翻译可能通过一种独特的机制得到增强。为了鉴定病毒mRNA中能在体内刺激翻译的翻译增强元件,制备了嵌合RNA,其包含荧光素酶的开放阅读框以及轮状病毒mRNA或非病毒mRNA的5'和3'非翻译区(UTR)。将嵌合RNA转染到轮状病毒感染的细胞中表明,病毒3'UTR含有一个促进基因表达的翻译增强元件。该元件在未感染的细胞中不增强基因表达,也不影响RNA的稳定性。诱变显示,位于轮状病毒mRNA 3'端的保守序列GACC作为增强元件起作用。3'-GACC元件独立于5'UTR的序列刺激蛋白质表达,尽管高效表达需要RNA含有帽。结果表明,病毒蛋白在轮状病毒感染细胞中的表达通过该病毒11种非聚腺苷酸化mRNA共有的一种新型4核苷酸3'翻译增强子(TE)的活性而特异性上调。轮状病毒3' TE的4核苷酸序列是已知刺激翻译的所有序列增强子中最短的。