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A stem cell-specific silencer in the primer-binding site of a retrovirus.

机译:逆转录病毒引物结合位点中的干细胞特异性沉默子。

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摘要

Retrovirus expression in embryonal carcinoma (EC) cells is blocked at a postintegration stage of the viral life cycle, in part because of the inadequate function of the viral long terminal repeat promoter in this cell type. However, selection for retrovirus expression in EC cells has identified mutations in Moloney murine leukemia virus (M-MuLV) located in the tRNA primer-binding site (PBS) region which relieve the EC cell-specific repression. We have found that exchanging the M-MuLV proline PBS for a glutamine one in a recombinant virus permits expression in EC cells. By using the recombinant virus as a backbone, the EC cell-specific repressor-binding site (RBS) element has been mapped to M-MuLV nucleotides 147 to 174. The RBS does not require precise positioning downstream of the M-MuLV promoter and can function in either orientation and in an intron, indicating that the regulatory effect is probably at the DNA, rather than RNA, level. We also show that the RBS element can repress heterologous promoters from an upstream position. Our results indicate that the RBS acts as a silencer that its inhibitory effect is mediated by a trans-acting factor, and that the mechanism of action is probably at the level of transcription. Through in vitro binding assays we have identified a binding factor which specifically recognizes the wild-type RBS sequence (binding factor A). The binding characteristics of factor A suggest that it is a stem cell repressor which acts at the M-MuLV RBS. Our DNA-binding assays also have identified a unique binding factor (binding factor Hp) which specifically recognizes a hemimethylated form of the wild-type RBS. This factor may play a role in methylation mediated control of retrovirus expression in EC cells.
机译:在病毒生命周期的整合后阶段,逆转录病毒在胚胎癌细胞(EC)中的表达被阻止,部分原因是这种类型的病毒长末端重复序列启动子的功能不足。然而,选择在EC细胞中进行逆转录病毒表达已在位于tRNA引物结合位点(PBS)区域的Moloney鼠白血病病毒(M-MuLV)中发现了可缓解EC细胞特异性阻遏的突变。我们已经发现,用M-MuLV脯氨酸PBS交换重组病毒中的谷氨酰胺可以在EC细胞中表达。通过使用重组病毒作为骨干,EC细胞特异性阻遏物结合位点(RBS)元件已定位到M-MuLV核苷酸147至174。RBS不需要精确定位在M-MuLV启动子的下游,并且可以它在任一方向和内含子中均发挥功能,表明调节作用可能是在DNA而不是RNA水平上。我们还表明,RBS元件可以从上游位置抑制异源启动子。我们的结果表明,RBS充当了沉默者,它的抑制作用是由反式作用因子介导的,作用机理可能在转录水平上。通过体外结合测定,我们已经鉴定了一种特异性识别野生型RBS序列的结合因子(结合因子A)。因子A的结合特征表明它是在M-MuLV RBS上起作用的干细胞阻遏物。我们的DNA结合测定还确定了独特的结合因子(结合因子Hp),该因子特异性识别野生型RBS的半甲基化形式。此因子可能在EC细胞中甲基化介导的逆转录病毒表达控制中起作用。

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