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通过逆转录病毒感染对人巨细胞病毒gpUL4(gp48)转录本前导区翻译信号进行突变分析。

Mutational analysis of the translational signal in the human cytomegalovirus gpUL4 (gp48) transcript leader by retroviral infection.

作者信息

Cao J, Geballe A P

机构信息

Department of Molecular Medicine, Fred Hutchinson Cancer Research Center, Seattle, Washington 98104.

出版信息

Virology. 1994 Nov 15;205(1):151-60. doi: 10.1006/viro.1994.1630.

Abstract

A short upstream open reading frame (uORF2) in the human cytomegalovirus (CMV) gpUL4 (gp48) transcript leader is conserved among CMV strains and inhibits translation of a downstream cistron. Remarkably, this inhibitory effect depends on the amino acid coding information of uORF2, at least in transient transfection assays in diploid human fibroblasts. Using retroviral vectors, we now report that the gp48 leader inhibits downstream translation in multiple additional cell types, even when expressed from a stably integrated gene, and on a transcript containing an additional kilobase of complex leader sequences. The magnitude of inhibition can be augmented approximately 3- to 10-fold by replacing the context of nucleotides flanking the wild-type initiation codon of uORF2 with an optimal context, suggesting that leaky scanning past the wild-type AUG codon accounts for translation of the downstream cistron. Using an in vivo mutagenesis protocol that relies on reverse transcriptase infidelity, we isolated mutants in which the inhibitory effect of the gp48 leader was inactivated as a result of alterations in the coding information of uORF2. These studies demonstrate that, independent of the cell type or expression system used, CMV gp48 uORF2 is a potent translational inhibitory element.

摘要

人巨细胞病毒(CMV)gpUL4(gp48)转录本前导区中的一个短上游开放阅读框(uORF2)在CMV毒株中保守,并抑制下游顺反子的翻译。值得注意的是,这种抑制作用取决于uORF2的氨基酸编码信息,至少在二倍体人成纤维细胞的瞬时转染试验中是如此。利用逆转录病毒载体,我们现在报告,gp48前导区在多种其他细胞类型中抑制下游翻译,即使从稳定整合的基因表达,并且在包含额外1千碱基复杂前导序列的转录本上也是如此。通过用最佳序列替换uORF2野生型起始密码子侧翼的核苷酸序列,抑制程度可增加约3至10倍,这表明通过野生型AUG密码子的漏扫描导致了下游顺反子的翻译。利用依赖逆转录酶错误掺入的体内诱变方案,我们分离出了一些突变体,其中由于uORF2编码信息的改变,gp48前导区的抑制作用失活。这些研究表明,无论使用何种细胞类型或表达系统,CMV gp48 uORF2都是一种有效的翻译抑制元件。

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