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1型人类免疫缺陷病毒5'包装信号结构影响翻译,但不具备内部核糖体进入位点结构的功能。

The human immunodeficiency virus type 1 5' packaging signal structure affects translation but does not function as an internal ribosome entry site structure.

作者信息

Miele G, Mouland A, Harrison G P, Cohen E, Lever A M

机构信息

University of Cambridge Department of Medicine, Addenbrooke's Hospital, United Kingdom.

出版信息

J Virol. 1996 Feb;70(2):944-51. doi: 10.1128/JVI.70.2.944-951.1996.

Abstract

The role of the RNA secondary structure in the 5' packaging signal region of human immunodeficiency virus type 1 (HIV-1) in initiating translation of gag mRNA has been investigated both in vitro and in the presence of cellular cofactors in vivo. Heat denaturation of the structure and mutagenic deletion both lead to an increase in levels of translated products, indicating that the structure is a significant inhibitor of translation. The proximity of the gag AUG to the packaging signal structure suggested that it might function as an internal ribosome entry site. However, in both a cell-free system and eukaryotic cells, translation will initiate at a novel upstream initiation codon introduced within the 5' noncoding region. This codon is utilized exclusively, resulting in gag protein products with an extra 11 amino acids at the amino terminus, which, when expressed in T lymphocytes, are confined intracellularly, probably because of the lack of an N-terminal glycine myristoylation signal. Deletion of the secondary structure abolishes gag production even in the presence of tat and rev in trans. Using dicistronic constructs containing the HIV-1 5' leader cloned between two heterologous open reading frames, we were unable to detect any significant expression of the second open reading frame that would have been supportive of an internal ribosome entry site mechanism. Using mutant proviruses either lacking the entire packaging signal structure region or containing the introduced upstream initiation codon in long-term replication studies, we were unable to detect reverse transcriptase activity in culture supernatants. The 5' packaging signal structure of HIV-1 does not serve as an internal ribosome entry site. The translation of gag is consistent with ribosomal scanning. However, the packaging signal structure causes significant translational inhibition.

摘要

人类免疫缺陷病毒1型(HIV-1)5'包装信号区域的RNA二级结构在启动gag mRNA翻译中的作用已在体外以及体内细胞辅因子存在的情况下进行了研究。该结构的热变性和诱变缺失均导致翻译产物水平增加,表明该结构是翻译的重要抑制剂。gag起始密码子AUG与包装信号结构的接近性表明它可能作为内部核糖体进入位点发挥作用。然而,在无细胞系统和真核细胞中,翻译将在5'非编码区内引入的一个新的上游起始密码子处起始。该密码子被专门利用,产生在氨基末端带有额外11个氨基酸的gag蛋白产物,当在T淋巴细胞中表达时,这些产物被限制在细胞内,可能是因为缺乏N末端甘氨酸肉豆蔻酰化信号。即使在反式存在tat和rev的情况下,二级结构的缺失也会消除gag的产生。使用包含克隆在两个异源开放阅读框之间的HIV-1 5'前导序列的双顺反子构建体,我们无法检测到任何支持内部核糖体进入位点机制的第二个开放阅读框的显著表达。在长期复制研究中,使用要么缺乏整个包装信号结构区域要么包含引入的上游起始密码子的突变原病毒,我们无法在培养上清液中检测到逆转录酶活性。HIV-1的5'包装信号结构不作为内部核糖体进入位点。gag的翻译与核糖体扫描一致。然而,包装信号结构会导致显著的翻译抑制。

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