Naik Abani Kanta, Raghavan Sathees C
Department of Biochemistry, Indian Institute of Science, Bangalore, India.
DNA Repair (Amst). 2008 Aug 2;7(8):1384-91. doi: 10.1016/j.dnarep.2008.04.010. Epub 2008 Jun 4.
P1 nuclease is one of the most extensively used single-strand DNA specific nucleases in molecular biology. In modern biology, it is used as an enzymatic probe to detect altered DNA conformations. It is well documented that P1 cleaves single-stranded nucleic acids and single-stranded DNA regions. The fact that P1 can act under a wide range of conditions, including physiological pH and temperature make it the most commonly used enzymatic probe in DNA structural studies. Surprisingly, to this date, there is no study to characterize the influence of length of mismatches on P1 sensitivity. Using a series of radioactively labeled oligomeric DNA substrates-containing mismatches, we find that P1 nuclease cleavage is dependent on the length of mismatches. P1 does not cleave DNA when there is a single-base mismatch. P1 cleavage efficiency is optimum when mismatch length is 3 nt or more. Changing the position of the mismatches also does not make any difference in cleavage efficacy. These novel findings on P1 properties have implications for its use in DNA structure and DNA repair studies.
P1核酸酶是分子生物学中使用最广泛的单链DNA特异性核酸酶之一。在现代生物学中,它被用作一种酶促探针来检测改变的DNA构象。有充分的文献记载,P1能切割单链核酸和单链DNA区域。P1能在包括生理pH值和温度在内的广泛条件下起作用,这一事实使其成为DNA结构研究中最常用的酶促探针。令人惊讶的是,迄今为止,尚无研究来表征错配长度对P1敏感性的影响。使用一系列含有错配的放射性标记寡聚DNA底物,我们发现P1核酸酶切割取决于错配的长度。当存在单碱基错配时,P1不会切割DNA。当错配长度为3个核苷酸或更长时,P1切割效率最佳。改变错配的位置对切割效率也没有任何影响。这些关于P1特性的新发现对其在DNA结构和DNA修复研究中的应用具有重要意义。