Lee-Chen G J, Bourgeois N, Davidson K, Condit R C, Niles E G
Biochemistry Department, State University of New York, Buffalo 14214.
Virology. 1988 Mar;163(1):64-79. doi: 10.1016/0042-6822(88)90234-6.
The vaccinia virus HindIII D fragment is 16,060 bp in length and encodes 13 complete genes [E.G. Niles et al. (1986). Virology 153, 96-112; S. L. Weinrich and D. E. Hruby (1986). Nucleic Acids Res. 14, 3003-3016]. Six of these genes are expressed only at early times after infection and one gene is expressed at both early and late times [G. -J. Lee-Chen and E. G. Niles (1988). Virology 163, 52-63]. Transcript mapping by S1 nuclease protection studies was carried out and compared to the results of primer extension analyses, in order to locate map positions of the 5' termini of each early mRNA. The lengths of the products of in vitro transcription, from DNA templates which possess the transcription start regions of each of the early genes, were determined and compared to the lengths of DNA products generated by S1 nuclease protection and primer extension, in order to demonstrate that the 5' termini identified by S1 mapping and primer extension are due to transcription initiation and not to mRNA processing. For each of the early genes in the HindIII D fragment, transcription starts within 25 nucleotides of the translation initiation codon. The precise location of the 3' termini of each early transcript was identified by S1 nuclease mapping. In all but one case, the 3' ends map within 75 nucleotides of the putative transcription termination signal TTTTTNT [G. Rohrmann, L. Yuen, and B. Moss (1986).
痘苗病毒HindIII D片段长度为16,060碱基对,编码13个完整基因[例如E.G. 奈尔斯等人(1986年)。《病毒学》153卷,96 - 112页;S.L. 温里希和D.E. 赫鲁比(1986年)。《核酸研究》14卷,3003 - 3016页]。这些基因中的六个仅在感染后的早期表达,一个基因在早期和晚期都表达[G.-J. 李 - 陈和E.G. 奈尔斯(1988年)。《病毒学》163卷,52 - 63页]。通过S1核酸酶保护研究进行转录图谱分析,并与引物延伸分析的结果进行比较,以定位每个早期mRNA 5'末端的图谱位置。测定了来自具有每个早期基因转录起始区域的DNA模板的体外转录产物的长度,并与S1核酸酶保护和引物延伸产生的DNA产物的长度进行比较,以证明通过S1图谱分析和引物延伸鉴定的5'末端是由于转录起始而非mRNA加工。对于HindIII D片段中的每个早期基因,转录起始于翻译起始密码子的25个核苷酸内。通过S1核酸酶图谱分析确定了每个早期转录本3'末端的精确位置。除了一个案例外,在所有情况下,3'末端都定位在推定的转录终止信号TTTTTNT的75个核苷酸内[G. 罗尔曼、L. 阮和B. 莫斯(1986年)。