Dolinnaya N G, Sokolova N I, Gryaznova O I, Shabarova Z A
Belozersky Laboratory of Molecular Biology and Bioorganic Chemistry, Moscow State University, USSR.
Nucleic Acids Res. 1988 May 11;16(9):3721-38. doi: 10.1093/nar/16.9.3721.
The efficiency of chemical ligation method have been demonstrated by assembling a number of DNA duplexes with modified sugar phosphate backbone. Condensation on a tetradecanucleotide template of hexa(penta)- and undecanucleotides differing only in the terminal nucleoside residue have been performed using water-soluble carbodiimide as a condensing agent. As was shown by comparing the efficiency of chemical ligation of single-strand breaks in those duplexes, the reaction rate rises 70 or 45 times if the 3'-OH group is substituted with an amino or phosphate group (the yield of products with a phosphoramidate or pyrophosphate bond is 96-100% in 6 d). Changes in the conformation of reacting groups caused by mismatched base pairs (A.A, A.C) as well as the hybrid rU.dA pair or an unpaired base make the template-directed condensation less effective. The thermal stability of DNA duplexes was assayed before and after the chemical ligation. Among all of the modified duplexes, only the duplex containing 3'-rU in the nick was found to be a substrate of T4 DNA ligase.
通过组装多个具有修饰糖磷酸骨架的DNA双链体,证明了化学连接方法的效率。使用水溶性碳二亚胺作为缩合剂,在仅末端核苷残基不同的六(五)和十一核苷酸的十四核苷酸模板上进行缩合反应。通过比较这些双链体中单链断裂的化学连接效率表明,如果3'-OH基团被氨基或磷酸基团取代,反应速率会提高70倍或45倍(在6天内,具有磷酰胺或焦磷酸键的产物产率为96-100%)。错配碱基对(A.A、A.C)以及杂交rU.dA对或未配对碱基引起的反应基团构象变化,使得模板导向的缩合效率降低。在化学连接前后测定了DNA双链体的热稳定性。在所有修饰的双链体中,仅发现切口处含有3'-rU的双链体是T4 DNA连接酶的底物。