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首页> 外文期刊>Biochemical and Biophysical Research Communications >RNA polymerase III control elements are required for trans-activation by the murine retroviral long terminal repeat sequences
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RNA polymerase III control elements are required for trans-activation by the murine retroviral long terminal repeat sequences

机译:通过鼠逆转录病毒长末端重复序列需要RNA聚合酶III对照元件进行晶体激活

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摘要

RNA leukemia viruses induce T-cell lymphoblastic lymphomas or myeloid leukemias. Infection of cells with Moloney murine leukemia virus (M-MuLV) up-regulates the expression of a number of cellular genes, including those involved in T-lymphocyte activation. Previously, we demonstrated that this up-regulation occurs via the trans-activation activity of the M-MuLV long terminal repeat (LTR) sequences which produce an LTR-encoded transcript. Sequence analysis of the LTR revealed a potential transcription unit for RNA polymerase III (Pol III) within the U3 region that is actively occupied by Pol II factors. Here, we provide the direct evidence of involvement of Pol III in the trans-activation process and demonstrate the precise localization of the intragenic control elements for accurate and active Pol III transcription. Deletions of a copy of the directed repeats and further immediate upstream sequences significantly abrogated the generation of LTR-encoded transcript and abolished the trans-activational activity, whereas the deletion of a copy of directed repeats alone proportionally reduced the transcript size, but still retained moderately high trans-activational activity. In electrophoretic mobility shift assay, the fraction containing a multiple transcription factor TFIIIC complex strongly bound to the LTR-U3 probe containing the essential control elements. The specificity of the DNA-TFIIIC interaction was confirmed by conducting competition assays with DNA fragments containing a genuine Pol III-transcribed gene, VA1 and by vaccinia virus infection which stimulates the expression of Pol III factors. However, a deletion mutant lacking an essential control element bound to the TFIIIC complex poorly, consequently resulting in weak Pol III transcription as assessed by an IRES-GFP reporter system. This correlation strongly supports the possibility that the generation of LTR-encoded transcript is directed by Pol III. Therefore, this finding suggests the involvement of Pol III transcription in the retrovirus-induced activation of cellular genes, potentially contributing to leukemogenesis. (C) 2014 Elsevier Inc. All rights reserved.
机译:RNA白血病病毒诱导T细胞淋巴细胞淋巴瘤或骨髓性白血病。用莫尼鼠白血病病毒(MULV)感染细胞上调许多细胞基因的表达,包括参与T淋巴细胞活化的细胞基因。以前,我们证明,该上调通过产生LTR编码的转录物的M-Mulv Long终端重复(LTR)序列的泛激活活性进行。 LTR的序列分析揭示了在U3区内的RNA聚合酶III(POL III)的潜在转录单元,其被POL II因子积极占据。在这里,我们提供POL III参与的直接证据在跨活化过程中,并证明了腺体控制元素的精确定位,用于准确和活性POL III转录。删除定向重复的副本和进一步的立即上游序列显着消除了LTR编码的转录物的产生并消除了跨动力活动,而单独的定向重复副本的缺失成比例地降低了转录尺寸,但仍然适度地保留高跨动力活动。在电泳迁移率偏移测定中,含有含有含有必需控制元件的LTR-U3探针的多转录因子TFIIIC复合物的馏分。通过用含有真正的POL III转录的基因,VA1和痘苗病毒感染的DNA片段进行竞争测定来证实DNA-TFIIIC相互作用的特异性,刺激POL III因子的表达。然而,缺乏缺乏与TFIIC复合物结合的基本对照元素的缺失突变体,因此导致IRE-GFP报告系统评估的POL III转录弱。这种相关性强烈支持LTR编码的转录物的产生的可能性由POL III引导。因此,该发现表明POL III转录在逆转录病毒诱导的细胞基因激活中的参与,可能导致白血病。 (c)2014年elsevier Inc.保留所有权利。

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