Reha-Krantz L J, Lambert J K
J Mol Biol. 1985 Dec 5;186(3):505-14. doi: 10.1016/0022-2836(85)90125-1.
We describe here our first attempt in using suppressor mutations to study structure-function relationships of the bacteriophage T4 DNA polymerase. One intragenic suppressor mutation, J5(43) degrees, was isolated that suppresses the temperature sensitivity but not the mutator activity of tsM19, a DNA polymerase mutant. Thus, the substituted amino acid induced by the tsM19 lesion decreases DNA polymerase fidelity, even if the temperature sensitivity has been corrected by a second amino acid substitution in the DNA polymerase polypeptide. The isolation, mapping and characterization of the J5(43) degrees mutation as well as the purification and characterization of the tsM19-J5(43) degrees mutant DNA polymerase are presented. The suppressor isolation procedure has general applicability for the selection of suppressor mutations of other T4 DNA polymerase mutator mutants.
我们在此描述了我们首次尝试利用抑制突变来研究噬菌体T4 DNA聚合酶的结构-功能关系。分离出了一种基因内抑制突变J5(43)°,它可抑制tsM19(一种DNA聚合酶突变体)的温度敏感性,但不能抑制其诱变活性。因此,即使DNA聚合酶多肽中的第二个氨基酸取代已校正了温度敏感性,由tsM19损伤诱导的取代氨基酸仍会降低DNA聚合酶的保真度。本文介绍了J5(43)°突变的分离、定位和表征,以及tsM19-J5(43)°突变体DNA聚合酶的纯化和表征。这种抑制突变体分离程序对于选择其他T4 DNA聚合酶诱变突变体的抑制突变具有普遍适用性。