首页> 美国卫生研究院文献>Journal of Virology >Specific binding of host cellular proteins to multiple sites within the 3 end of mouse hepatitis virus genomic RNA.
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Specific binding of host cellular proteins to multiple sites within the 3 end of mouse hepatitis virus genomic RNA.

机译:宿主细胞蛋白与小鼠肝炎病毒基因组RNA 3端多个位点的特异性结合。

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摘要

The initial step in mouse hepatitis virus (MHV) RNA replication is the synthesis of negative-strand RNA from a positive-strand genomic RNA template. Our approach to begin studying MHV RNA replication is to identify the cis-acting signals for RNA synthesis and the proteins which recognize these signals at the 3' end of genomic RNA of MHV. To determine whether host cellular and/or viral proteins interact with the 3' end of the coronavirus genome, an RNase T1 protection/gel mobility shift electrophoresis assay was used to examine cytoplasmic extracts from mock- and MHV-JHM-infected 17Cl-1 murine cells for the ability to form complexes with defined regions of the genomic RNA. We demonstrated the specific binding of host cell proteins to multiple sites within the 3' end of MHV-JHM genomic RNA. By using a set of RNA probes with deletions at either the 5' or 3' end or both ends, two distinct binding sites were located. The first protein-binding element was mapped in the 3'-most 42 nucleotides of the genomic RNA [3' (+42) RNA], and the second element was mapped within an 86-nucleotide sequence encompassing nucleotides 171 to 85 from the 3' end of the genome (171-85 RNA). A single potential stem-loop structure is predicted for the 3' (+)42 RNA, and two stem-loop structures are predicted for the 171-85 RNA. Proteins interacting with these two elements were identified by UV-induced covalent cross-linking to labeled RNAs followed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis analysis. The RNA-protein complex formed with the 3'-most 42 nucleotides contains approximately five host polypeptides, a highly labeled protein of 120 kDa and four minor species with sizes of 103, 81, 70, and 55 kDa. The second protein-binding element, contained within a probe representing nucleotides 487 to 85 from the 3' end of the genome, also appears to bind five host polypeptides, 142, 120, 100, 55, and 33 kDa in size, with the 120-kDa protein being the most abundant. The RNA-protein complexes observed with MHV-infected cells in both RNase protection/gel mobility shift and UV cross-linking assays were identical to those observed with uninfected cells. The possible involvement of the interaction of host proteins with the viral genome during MHV replication is discussed.
机译:小鼠肝炎病毒(MHV)RNA复制的第一步是从正链基因组RNA模板合成负链RNA。我们开始研究MHV RNA复制的方法是,鉴定用于RNA合成的顺式作用信号以及在MHV基因组RNA的3'端识别这些信号的蛋白质。为了确定宿主细胞和/或病毒蛋白是否与冠状病毒基因组的3'末端相互作用,使用RNase T1保护/凝胶迁移率移动电泳分析法来检查模拟和MHV-JHM感染的17Cl-1小鼠的细胞质提取物细胞具有与基因组RNA定义区域形成复合物的能力。我们证明了宿主细胞蛋白与MHV-JHM基因组RNA 3'端内多个位点的特异性结合。通过使用一组在5'或3'端或两端都有缺失的RNA探针,找到了两个不同的结合位点。第一个蛋白质结合元件被定位在基因组RNA [3'(+42)RNA]的3'-最远42个核苷酸中,第二个元件被定位在一个86个核苷酸的核苷酸序列中,该核苷酸序列包含3个核苷酸171至85基因组的末端(171-85 RNA)。预测了3'(+)42 RNA的单个潜在茎环结构,而预测171-85 RNA的两个茎环结构。通过紫外线诱导的共价交联至标记的RNA,然后通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳分析,鉴定与这两个元素相互作用的蛋白质。由3'-最末端42个核苷酸形成的RNA-蛋白质复合物包含约5个宿主多肽,一个高度标记的120 kDa的蛋白质和四个大小分别为103、81、70和55 kDa的次要物种。包含在代表基因组3'端487至85位核苷酸的探针中的第二个蛋白质结合元件,似乎也结合了五个宿主多肽,大小分别为142、120、100、55和33 kDa,其中120 -kDa蛋白含量最高。在RNase保护/凝胶迁移和UV交联试验中,用MHV感染的细胞观察到的RNA-蛋白质复合物与未感染的细胞观察到的相同。讨论了MHV复制过程中宿主蛋白与病毒基因组相互作用的可能参与。

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