Amemura M, Shinagawa H, Makino K, Otsuji N, Nakata A
J Bacteriol. 1982 Nov;152(2):692-701. doi: 10.1128/jb.152.2.692-701.1982.
The regulatory genes of alkaline phosphatase, phoS and phoT, of Escherichia coli were cloned on pBR322, initially as an 11.8-kilobase EcoRI fragment. A restriction map of the hybrid plasmid was established. Deletion plasmids of various sizes were constructed in vitro, and the presence of phoS and phoT genes on the cloned DNA fragments was tested by introducing the plasmids into phoS64 and phoT9 strains for complementation tests. One set complemented only phoS64 but not phoT9; the other set complemented only phoT9 but not phoS64. We conclude that phoS64 and phoT9 mutations belong to different complementation groups and probably to different cistrons. The hybrid plasmid with the 11.8-kilobase chromosomal fragment also complemented the phoT35 mutation. A smaller derivative of the hybrid plasmid was constructed in vitro which complemented phoT35 but did not complement phoS64, phoT9, or pst-2. Our results agree with the suggestion that phoT35 lies in a different complementation group from phoS, phoT, or pst-2 (Zuckier and Torriani, J. Bacteriol. 145:1249--1256, 1981). Therefore, we propose to designate phoT35 as phoU. The effect of amplification of phoS or phoT on alkaline phosphatase production was examined. It was found that multiple copies of the phoS gene borne on pBR322 repressed enzyme production even in low-phosphate medium, whether it was introduced into wild-type strains (partially repressed) or phoR (phoR68 or phoR17) strains (fully repressed), whereas the introduction of multicopy plasmids bearing the phoT gene did not affect the inducibility of the enzyme.
大肠杆菌碱性磷酸酶的调控基因phoS和phoT最初作为一个11.8千碱基的EcoRI片段克隆于pBR322上。构建了杂交质粒的限制性图谱。体外构建了各种大小的缺失质粒,并通过将质粒导入phoS64和phoT9菌株进行互补试验,检测克隆DNA片段上phoS和phoT基因的存在情况。一组仅能互补phoS64而不能互补phoT9;另一组仅能互补phoT9而不能互补phoS64。我们得出结论,phoS64和phoT9突变属于不同的互补群,可能属于不同的顺反子。带有11.8千碱基染色体片段的杂交质粒也能互补phoT35突变。体外构建了该杂交质粒的一个较小衍生物,它能互补phoT35但不能互补phoS64、phoT9或pst - 2。我们的结果与phoT35与phoS、phoT或pst - 2处于不同互补群的推测一致(祖克耶尔和托里亚尼,《细菌学杂志》145:1249 - 1256,1981)。因此,我们提议将phoT35命名为phoU。研究了phoS或phoT扩增对碱性磷酸酶产生的影响。发现pBR322携带的phoS基因的多个拷贝即使在低磷酸盐培养基中也会抑制酶的产生,无论它是导入野生型菌株(部分抑制)还是phoR(phoR68或phoR17)菌株(完全抑制),而导入携带phoT基因的多拷贝质粒并不影响该酶的诱导性。