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翻译过程中依赖编码序列的核糖体在翻译终止时停滞。

Coding sequence-dependent ribosomal arrest at termination of translation.

作者信息

Cao J, Geballe A P

机构信息

Division of Molecular Medicine and Clinical Research, Fred Hutchinson Cancer Research Center, Seattle, Washington 98104, USA.

出版信息

Mol Cell Biol. 1996 Feb;16(2):603-8. doi: 10.1128/MCB.16.2.603.

Abstract

A remarkably high percentage of proto-oncogene, growth factor, cellular receptor, and viral transcript leaders contain short upstream open reading frames (uORFs), yet the significance and regulatory effects of these uORFs have not been well characterized. In the case of the human cytomegalovirus gpUL4 (gp48) transcript, the second of three uORFs (uORF2) inhibits translation of the downstream cistron by a process that depends on the uORF2 amino acid coding information. To investigate the mechanism underlying this unusual regulatory element, we adapted the toeprinting (or reverse transcriptase extension inhibition) assay for use in detecting positions of ribosomal stalling on gp48 transcripts. Using a cell-free translation system, we demonstrate that ribosomes arrest at the termination codon of uORF2 by a uORF2 coding sequence-dependent mechanism. Further, the sequence requirements for ribosomal stalling are the same as for inhibition of downstream translation. We also provide evidence for ribosomal stalling in vivo, on the natural viral mRNA. These data support the hypothesis that the inhibition of downstream translation results from uORF2 peptide-dependent ribosomal arrest at termination and suggest that translation termination may be a regulatory step in expression of some eukaryotic genes.

摘要

相当高比例的原癌基因、生长因子、细胞受体和病毒转录本前导序列含有短的上游开放阅读框(uORF),然而这些uORF的意义和调控作用尚未得到充分表征。就人类巨细胞病毒gpUL4(gp48)转录本而言,三个uORF中的第二个(uORF2)通过一个依赖于uORF2氨基酸编码信息的过程抑制下游顺反子的翻译。为了研究这种异常调控元件的潜在机制,我们改进了足迹法(或逆转录酶延伸抑制法),用于检测核糖体在gp48转录本上的停滞位置。使用无细胞翻译系统,我们证明核糖体通过uORF2编码序列依赖的机制在uORF2的终止密码子处停滞。此外,核糖体停滞的序列要求与下游翻译抑制的序列要求相同。我们还提供了体内核糖体在天然病毒mRNA上停滞的证据。这些数据支持了以下假设:下游翻译的抑制是由于uORF2肽依赖的核糖体在终止时停滞所致,并表明翻译终止可能是某些真核基因表达中的一个调控步骤。

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