Roman L J, Kowalczykowski S C
Department of Molecular Biology, Northwestern University Medical School, Chicago, Illinois 60611.
Biochemistry. 1989 Apr 4;28(7):2873-81. doi: 10.1021/bi00433a019.
We find that the rate of dsDNA-dependent ATPase activity is biphasic, with a fast component which represents the unwinding of the dsDNA and a slow component which results from the ssDNA-dependent ATPase activity of recBCD enzyme. Comparison of the ATPase and helicase activities permits evaluation of the efficiency of ATP hydrolysis during unwinding. This efficiency can be calculated from the maximum rates of ATPase and helicase activities and is found to range between 2.0 and 3.0 ATP molecules hydrolyzed per base pair of DNA unwound. The number of ATP molecules hydrolyzed per base pair unwound is not altered by temperature but does increase at low concentrations of DNA and high concentrations of sodium chloride and magnesium acetate. The apparent Km values for the DNA and ATP substrates of recBCD enzyme dsDNA-dependent ATPase activity at 25 degrees C were determined to be 0.13 nM DNA molecules and 85 microM ATP, respectively. The observed kcat value is approximately 45 microM ATP s-1 (microM recBCD enzyme)-1. If this rate is corrected for the measured stoichiometry of recBCD enzyme binding to dsDNA, the kcat for ATPase activity corresponds to an ATP hydrolysis rate of approximately 740 ATP molecules s-1 (functional recBCD complex)-1 at 25 degrees C.
我们发现,双链DNA依赖性ATP酶活性的速率呈双相性,其中快速成分代表双链DNA的解旋,而缓慢成分则源于recBCD酶的单链DNA依赖性ATP酶活性。通过比较ATP酶和螺旋酶活性,可以评估解旋过程中ATP水解的效率。该效率可根据ATP酶和螺旋酶活性的最大速率计算得出,发现每解开一对DNA碱基对,水解的ATP分子数在2.0至3.0之间。每解开一对碱基对水解的ATP分子数不受温度影响,但在低浓度DNA以及高浓度氯化钠和醋酸镁条件下会增加。在25℃时,recBCD酶双链DNA依赖性ATP酶活性的DNA和ATP底物的表观Km值分别确定为0.13 nM DNA分子和85 μM ATP。观察到的kcat值约为45 μM ATP s-1(μM recBCD酶)-1。如果根据测量的recBCD酶与双链DNA结合的化学计量进行校正,25℃时ATP酶活性的kcat对应于约740个ATP分子s-1(功能性recBCD复合物)-1的ATP水解速率。