Both HIV-1 integrase (IN) and the central catalytic domain of IN (IN-CCD) catalyze the disintegration reaction in vitro.In this study,IN and IN-CCD proteins were expressed and purified,and a high-throughput format enz...Both HIV-1 integrase (IN) and the central catalytic domain of IN (IN-CCD) catalyze the disintegration reaction in vitro.In this study,IN and IN-CCD proteins were expressed and purified,and a high-throughput format enzyme-linked immunosorbent assay (ELISA) was developed for the disintegration reaction.IN exhibited a marked preference for Mn2+ over Mg2+ as the divalent cation cofactor in disintegration.Baicalein,a known IN inhibitor,was found to be an IN-CCD inhibitor.The assay is sensitive and specific for the study of disintegration reaction as well as for the in vitro identification of antiviral drugs targeting IN,especially targeting IN-CCD.展开更多
基金supported by the National Natural Science Foundation of China (Grant No. 30670497)the Beijing Natural Science Foundation (Grant No. 5072002)
文摘Both HIV-1 integrase (IN) and the central catalytic domain of IN (IN-CCD) catalyze the disintegration reaction in vitro.In this study,IN and IN-CCD proteins were expressed and purified,and a high-throughput format enzyme-linked immunosorbent assay (ELISA) was developed for the disintegration reaction.IN exhibited a marked preference for Mn2+ over Mg2+ as the divalent cation cofactor in disintegration.Baicalein,a known IN inhibitor,was found to be an IN-CCD inhibitor.The assay is sensitive and specific for the study of disintegration reaction as well as for the in vitro identification of antiviral drugs targeting IN,especially targeting IN-CCD.