首页> 美国卫生研究院文献>Journal of Virology >Bovine Coronavirus Nonstructural Protein 1 (p28) Is an RNA Binding Protein That Binds Terminal Genomic cis-Replication Elements
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Bovine Coronavirus Nonstructural Protein 1 (p28) Is an RNA Binding Protein That Binds Terminal Genomic cis-Replication Elements

机译:牛冠状病毒非结构蛋白1(p28)是绑定末端基因组顺式复制元件的RNA结合蛋白。

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摘要

Nonstructural protein 1 (nsp1), a 28-kDa protein in the bovine coronavirus (BCoV) and closely related mouse hepatitis coronavirus, is the first protein cleaved from the open reading frame 1 (ORF 1) polyprotein product of genome translation. Recently, a 30-nucleotide (nt) cis-replication stem-loop VI (SLVI) has been mapped at nt 101 to 130 within a 288-nt 5′-terminal segment of the 738-nt nsp1 cistron in a BCoV defective interfering (DI) RNA. Since a similar nsp1 coding region appears in all characterized groups 1 and 2 coronavirus DI RNAs and must be translated in cis for BCoV DI RNA replication, we hypothesized that nsp1 might regulate ORF 1 expression by binding this intra-nsp1 cistronic element. Here, we (i) establish by mutation analysis that the 72-nt intracistronic SLV immediately upstream of SLVI is also a DI RNA cis-replication signal, (ii) show by gel shift and UV-cross-linking analyses that cellular proteins of ∼60 and 100 kDa, but not viral proteins, bind SLV and SLVI, (SLV-VI) and (iii) demonstrate by gel shift analysis that nsp1 purified from Escherichia coli does not bind SLV-VI but does bind three 5′ untranslated region (UTR)- and one 3′ UTR-located cis-replication SLs. Notably, nsp1 specifically binds SLIII and its flanking sequences in the 5′ UTR with ∼2.5 μM affinity. Additionally, under conditions enabling expression of nsp1 from DI RNA-encoded subgenomic mRNA, DI RNA levels were greatly reduced, but there was only a slight transient reduction in viral RNA levels. These results together indicate that nsp1 is an RNA-binding protein that may function to regulate viral genome translation or replication but not by binding SLV-VI within its own coding region.
机译:非结构蛋白1(nsp1)是牛冠状病毒(BCoV)和密切相关的小鼠肝炎冠状病毒中的28 kDa蛋白,是从基因组翻译的开放阅读框1(ORF 1)多蛋白产物中切割的第一个蛋白。最近,在BCoV缺陷性干扰中,一个30个核苷酸(nt)的顺式复制茎环VI(SLVI)被定位在738-nt nsp1顺反子的288-nt 5'-末端片段的101-130核苷酸处( DI)RNA。由于类似的nsp1编码区出现在所有特征化的第1组和第2组冠状病毒DI RNA中,并且必须顺式翻译才能用于BCoV DI RNA复制,因此我们推测nsp1可能通过结合该nsp1内部顺反子元件来调节ORF 1表达。在这里,我们(i)通过突变分析确定SLVI上游紧邻的72 nt顺反子内SLV也是DI RNA顺式复制信号,(ii)通过凝胶移位和UV交联分析显示〜的细胞蛋白60和100 kDa但不与病毒蛋白结合的SLV和SLVI(SLV-VI)和(iii)通过凝胶位移分析证明,从大肠杆菌纯化的nsp1不结合SLV-VI,但结合三个5'非翻译区( UTR)和一个位于3'UTR的顺式复制SL。值得注意的是,nsp1以约2.5μM的亲和力特异性结合5'UTR中的SLIII及其侧翼序列。此外,在能够从DI RNA编码的亚基因组mRNA中表达nsp1的条件下,DI RNA的水平大大降低,但病毒RNA的水平只是短暂的降低。这些结果共同表明,nsp1是一种RNA结合蛋白,可起调节病毒基因组翻译或复制的作用,但不能通过在其自身编码区内结合SLV-VI而发挥作用。

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