Masterson C, Boehmer P E, McDonald F, Chaudhuri S, Hickson I D, Emmerson P T
Department of Biochemistry and Genetics, Medical School, University, Newcastle upon Tyne, United Kingdom.
J Biol Chem. 1992 Jul 5;267(19):13564-72.
The Escherichia coli RecBCD holoenzyme and the individual constituent subunits have been purified from overproducing strains. The purified RecBCD holoenzyme has a native molecular mass of approximately 330 kDa, indicative of a heterotrimer subunit assembly. The RecB, RecC, and RecD subunits can associate in vitro to give nuclease, helicase, ATPase, and Chi-specific endonuclease activities which are indistinguishable from those of the RecBCD holoenzyme. At concentrations at which the reconstituted RecB + C + D enzyme is very active, none of the individual RecB, RecC, or RecD subunits have readily detectable activities of the holoenzyme, except RecB protein which had previously been shown to exhibit DNA-dependent ATPase activity (Hickson, I. D., Robson, C. N., Atkinson, K. E., Hutton, L., and Emmerson, P. T. (1985) J. Biol. Chem. 260, 1224-1229). At higher concentrations and with shorter DNA substrates reconstituted RecBC protein exhibits low levels of helicase and exonuclease activity.
大肠杆菌RecBCD全酶及其各个组成亚基已从过量表达菌株中纯化出来。纯化后的RecBCD全酶的天然分子量约为330 kDa,表明其为异源三聚体亚基组装。RecB、RecC和RecD亚基在体外可以结合,产生核酸酶、解旋酶、ATP酶和Chi特异性内切核酸酶活性,这些活性与RecBCD全酶的活性无法区分。在重组的RecB + C + D酶非常活跃的浓度下,除了之前已被证明具有DNA依赖性ATP酶活性的RecB蛋白外,单个的RecB、RecC或RecD亚基均没有易于检测到的全酶活性(希克森,I. D.,罗布森,C. N.,阿特金森,K. E.,赫顿,L.,和埃默森,P. T.(1985年)《生物化学杂志》260,1224 - 1229)。在更高浓度和使用更短DNA底物的情况下,重组的RecBC蛋白表现出低水平的解旋酶和核酸外切酶活性。