Hill J E, Myers A M, Koerner T J, Tzagoloff A
Department of Biological Sciences, Columbia University, New York, NY 10027.
Yeast. 1986 Sep;2(3):163-7. doi: 10.1002/yea.320020304.
Two yeast/E. coli shuttle vectors have been constructed. The two vectors, YEp351 and YEp352, have the following properties: (1) they can replicate autonomously in Saccharomyces cerevisiae and in E. coli; (2) they contain the beta-lactamase gene and confer ampicillin resistance to E. coli; (3) they contain the entire sequence of pUC18; (4) all ten restriction sites of the multiple cloning region of pUC18 including EcoRI, SacI, KpnI, SmaI, BamHI, XbaI, SalI, PstI, SphI and HindIII are unique in YEp352; these sites are also unique in YEp351 except for EcoRI and KpnI, which occur twice; (5) recombinant plasmids with DNA inserts in the multiple cloning region of YEp351 and YEp352 can be recognised by loss of beta-galactosidase function in appropriate E. coli hosts; (6) YEp351 and YEp352 contain the yeast LEU2 and URA3 genes, respectively, allowing for selection of these auxotrophic markers in yeast and E. coli; (7) both plasmids are retained with high frequency in yeast grown under non-selective conditions indicative of high plasmid copy number. The above properties make the shuttle vectors suitable for construction of yeast genomic libraries and for cloning of DNA fragments defined by a large number of different restriction sites. The two vectors have been further modified by deletion of the sequences necessary for autonomous replication in yeast. The derivative plasmids YIp351 and YIp352 can therefore be used to integrate specific sequences into yeast chromosomal DNA.
已经构建了两种酵母/大肠杆菌穿梭载体。这两种载体,即YEp351和YEp352,具有以下特性:(1)它们能够在酿酒酵母和大肠杆菌中自主复制;(2)它们含有β-内酰胺酶基因,赋予大肠杆菌氨苄青霉素抗性;(3)它们包含pUC18的完整序列;(4)pUC18多克隆区域的所有十个限制性酶切位点,包括EcoRI、SacI、KpnI、SmaI、BamHI、XbaI、SalI、PstI、SphI和HindIII,在YEp352中都是唯一的;除了EcoRI和KpnI出现两次外,这些位点在YEp351中也是唯一的;(5)在合适的大肠杆菌宿主中,通过β-半乳糖苷酶功能的丧失可以识别在YEp351和YEp352多克隆区域插入了DNA片段的重组质粒;(6)YEp351和YEp352分别含有酵母LEU2和URA3基因,允许在酵母和大肠杆菌中选择这些营养缺陷型标记;(7)在非选择性条件下生长的酵母中,这两种质粒都以高频率保留,表明质粒拷贝数高。上述特性使得穿梭载体适用于构建酵母基因组文库以及克隆由大量不同限制性酶切位点定义的DNA片段。这两种载体已通过缺失酵母中自主复制所需的序列进行了进一步修饰。因此,衍生质粒YIp351和YIp352可用于将特定序列整合到酵母染色体DNA中。