Wiaderkiewicz R, Ruiz-Carrillo A
Cancer Research Center, Laval University School of Medicine, Québec, Canada.
Nucleic Acids Res. 1987 Oct 12;15(19):7831-48. doi: 10.1093/nar/15.19.7831.
A nuclear DNA ligase activity from immature chicken erythrocytes, and to a lesser extent T4-induced DNA ligase, can join cohesive-ends (3 and 5-nucleotides long) having one of the mismatches, A/A, T/T, C/C, G/G, at the middle position. The rate of ligation depends on the length and stability of the mispaired intermediate (G/G, T/T greater than A/A, C/C). When the non-complementary overhanging-ends are short (i.e. 1-nucleotide) both ligases catalyze the joining of the single-stranded protruding-end with a blunt-end. This reaction occurs at low but significant rates compared to blunt-end ligation. The chicken ligase has lower flush-end joining activity than T4 DNA ligase, but it is more permissive since it joins C/C or A/A mismatched-ends, whereas the prokaryotic ligase does not. Possible biological implications of the reactions are discussed. We have also found that BstEII easily cleaves at sites harboring a C/C or a G/G mismatch at the center of its recognition sequence, whereas AvaII (T/T or A/A), HinfI (G/G) and DdeI (G/G) do not.
来自未成熟鸡红细胞的一种核DNA连接酶活性,以及程度稍低的T4诱导的DNA连接酶,能够连接在中间位置存在错配(A/A、T/T、C/C、G/G)之一的粘性末端(3至5个核苷酸长)。连接速率取决于错配中间体的长度和稳定性(G/G、T/T大于A/A、C/C)。当非互补突出末端较短(即1个核苷酸)时,两种连接酶都能催化单链突出末端与平端的连接。与平端连接相比,该反应以较低但显著的速率发生。鸡连接酶的平端连接活性低于T4 DNA连接酶,但它更具宽容性,因为它能连接C/C或A/A错配末端,而原核连接酶则不能。文中讨论了这些反应可能的生物学意义。我们还发现,BstEII很容易在其识别序列中心存在C/C或G/G错配的位点切割,而AvaII(T/T或A/A)、HinfI(G/G)和DdeI(G/G)则不会。