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鼠逆转录病毒长末端重复序列中的R区域序列可特异性增加未剪接RNA的表达。

R region sequences in the long terminal repeat of a murine retrovirus specifically increase expression of unspliced RNAs.

作者信息

Trubetskoy A M, Okenquist S A, Lenz J

机构信息

Department of Molecular Genetics, Albert Einstein College of Medicine, Bronx, New York 10461, USA.

出版信息

J Virol. 1999 Apr;73(4):3477-83. doi: 10.1128/JVI.73.4.3477-3483.1999.

Abstract

A stem-loop structure at the 5' end of the R region of the long terminal repeat (LTR) of the murine leukemia virus SL3 and other type C mammalian retroviruses is important for maximum levels of expression of a reporter gene under the control of the viral LTR. This element, termed the R region stem-loop (RSL), has a small effect on transcriptional initiation and no effect on RNA polymerase processivity. Its major effect is on posttranscriptional processing of LTR-driven transcripts. Here we tested whether the RSL affected the production of RNAs from a full-length SL3 genome. Mutation of the RSL in the 5' LTR of SL3 reduced the cytoplasmic levels of full-length viral transcripts but not those of spliced, env mRNA transcripts. Thus, the RSL specifically affected the cytoplasmic levels of the unspliced viral RNA. To test further whether the effect was specific for unspliced transcripts, a system was devised in which the expression of a reporter gene under the control of the viral LTR was tested in the presence or absence of an intron. Mutation of the RSL resulted in only about a twofold decline in the level of reporter gene expression when the transcripts contained an intron. However, when the intron was removed, mutation of the RSL reduced expression of the reporter gene about 10- to 60-fold in various cell lines. The secondary structure of the RSL was essential for its activity on the intronless transcript. Thus, the RSL appears to be important for the cytoplasmic accumulation of unspliced viral RNA and unspliced RNA from chimeric transcription units under the control of the viral LTR.

摘要

小鼠白血病病毒SL3以及其他C型哺乳动物逆转录病毒的长末端重复序列(LTR)的R区域5'端的茎环结构,对于在病毒LTR控制下的报告基因的最大表达水平至关重要。这个元件,称为R区域茎环(RSL),对转录起始有较小影响,对RNA聚合酶的持续合成能力没有影响。它的主要作用是对LTR驱动转录本的转录后加工。在这里,我们测试了RSL是否影响全长SL3基因组RNA的产生。SL3 5' LTR中RSL的突变降低了全长病毒转录本的细胞质水平,但不影响剪接后的env mRNA转录本的水平。因此,RSL特异性地影响未剪接病毒RNA的细胞质水平。为了进一步测试这种效应是否对未剪接转录本具有特异性,构建了一个系统,在有或没有内含子的情况下,测试病毒LTR控制下的报告基因的表达。当转录本含有内含子时,RSL的突变导致报告基因表达水平仅下降约两倍。然而,当去除内含子时,RSL的突变在各种细胞系中使报告基因的表达降低了约10至60倍。RSL的二级结构对其对无内含子转录本的活性至关重要。因此,RSL似乎对于病毒LTR控制下未剪接病毒RNA和嵌合转录单元的未剪接RNA的细胞质积累很重要。

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