Balagurumoorthy Pichumani, Adelstein S James, Kassis Amin I
Department of Radiology, Harvard Medical School, Boston, MA 02115, USA.
Anal Biochem. 2008 Oct 1;381(1):172-4. doi: 10.1016/j.ab.2008.06.037. Epub 2008 Jul 4.
Preparations of circular plasmid DNA in either supercoiled or nicked circular form often are contaminated with undesired linear DNA fragments arising from shearing/degradation of chromosomal DNA or linearization of plasmid DNA itself. We report a simple enzymatic method, using a combination of lambda exonuclease and RecJ(f), for the selective removal of linear DNA from such mixtures. lambda exonuclease digests one strand of linear duplex DNA in the 5' to 3' direction, whereas RecJ(f), a single-strand-specific exonuclease, digests the remaining complementary single strand into mononucleotides. This combination of exonucleases can remove linear DNA from a mixture of linear and supercoiled DNA, leaving the supercoiled form intact. Furthermore, the inability of lambda exonuclease to initiate digestion at nicks or gaps enables the removal of undesired linear DNA when nicked circular DNA has been enzymatically prepared from supercoiled DNA. This method can be useful in the preparation of homogeneous circular plasmid DNA required for therapeutic applications and biophysical studies.
超螺旋或缺口环状形式的环状质粒DNA制备物常常被来自染色体DNA剪切/降解或质粒DNA自身线性化产生的不需要的线性DNA片段污染。我们报道了一种简单的酶法,使用λ外切核酸酶和RecJ(f)的组合,用于从这类混合物中选择性去除线性DNA。λ外切核酸酶沿5'至3'方向消化线性双链DNA的一条链,而RecJ(f),一种单链特异性外切核酸酶,将剩余的互补单链消化成单核苷酸。这种外切核酸酶的组合可以从线性和超螺旋DNA的混合物中去除线性DNA,使超螺旋形式保持完整。此外,λ外切核酸酶无法在切口或间隙处起始消化,使得当从超螺旋DNA酶促制备缺口环状DNA时能够去除不需要的线性DNA。该方法可用于制备治疗应用和生物物理研究所需的均一性环状质粒DNA。