Teraoka H, Minami H, Iijima S, Tsukada K, Koiwai O, Date T
Department of Pathological Biochemistry, Tokyo Medical and Dental University, Japan.
J Biol Chem. 1993 Nov 15;268(32):24156-62.
A recombinant plasmid for expression of full-length human DNA ligase I (phLig-I) was constructed in a plasmid/phage chimeric vector, pTD-T7N, which was derived from pUC118 by oligonucleotide-directed mutagenesis. The insert contained a 2757-base pair coding sequence for a whole human DNA ligase I and an extra ACC codon adjacent to the ATG initiation codon. This ACC codon was required for achieving high levels of expression of full-length DNA ligase I in Escherichia coli strain BL21. The recombinant plasmid, which was designed to exploit the T7 late promoter and the ATG initiation codon for beta-galactosidase was transfected into E. coli BL21 cells that express T7 RNA polymerase. The recombinant clone produced relatively high levels of DNA ligase I with a molecular mass of 130 kDa, as estimated by SDS-polyacrylamide gel electrophoresis. The DNA ligase was purified to near-homogeneity by the two-step column chromatographic procedure from BLphLig-I cells that had been induced with isopropyl beta-D-thiogalactoside. The specific activity, chromatographic behavior, kinetic properties, molecular mass, and antigenicity of the recombinant human DNA ligase I were indistinguishable from those of purified mammalian DNA ligase I. Metabolically labeling experiments with 32P(i) indicate that the recombinant DNA ligase I was present as an enzyme-AMP reaction intermediate, but not as a phosphoprotein, in the E. coli cells.
一种用于表达全长人DNA连接酶I(phLig-I)的重组质粒构建于质粒/噬菌体嵌合载体pTD-T7N中,该载体通过寡核苷酸定向诱变从pUC118衍生而来。插入片段包含一个2757个碱基对的整个人DNA连接酶I编码序列以及一个紧邻ATG起始密码子的额外ACC密码子。这个ACC密码子是在大肠杆菌BL21菌株中实现全长DNA连接酶I高水平表达所必需的。将设计用于利用T7晚期启动子和β-半乳糖苷酶的ATG起始密码子的重组质粒转染到表达T7 RNA聚合酶的大肠杆菌BL21细胞中。通过SDS-聚丙烯酰胺凝胶电泳估计,重组克隆产生了相对高水平的分子量为130 kDa的DNA连接酶I。用异丙基β-D-硫代半乳糖苷诱导的BLphLig-I细胞经两步柱层析法将DNA连接酶纯化至接近均一。重组人DNA连接酶I的比活性、色谱行为、动力学性质、分子量和抗原性与纯化的哺乳动物DNA连接酶I无法区分。用32P(i)进行的代谢标记实验表明,重组DNA连接酶I在大肠杆菌细胞中以酶-AMP反应中间体的形式存在,而不是以磷蛋白的形式存在。