Katz F S, Bryant F R
Department of Biochemistry and Molecular Biology, Bloomberg School of Public Health, The Johns Hopkins University, Baltimore, Maryland 21205, USA.
Biochemistry. 2001 Sep 18;40(37):11082-9. doi: 10.1021/bi011030x.
The ssDNA-dependent NTP hydrolysis activity of the RecA protein was examined using a series of dTn oligomers ranging in size from dT10 to dT2000 as the ssDNA effector. There were three distinct manifestations of the dTn-dependent NTP hydrolysis reaction, depending on the length of the dTn effector that was used. With longer dTn oligomers, NTP hydrolysis occurred with a turnover number of 20-25 min(-1) and the observed S0.5 value for the NTP was independent of the concentration of the dTn oligomer (DNA concentration-independent hydrolysis). With dTn oligomers of intermediate length, NTP hydrolysis still occurred with a turnover number of 20-25 min(-1), but the observed S0.5 for the NTP decreased with increasing dTn concentration until reaching a value similar to that obtained with the longer dTn oligomers (DNA concentration-dependent hydrolysis). With shorter dTn oligomers, the NTP hydrolysis activity was effectively eliminated. Although this general progression of kinetic behavior was observed for the three structurally related NTPs (dATP, ATP, and GTP), the dTn oligomer length at which DNA concentration-independent, DNA concentration-dependent, and no NTP hydrolysis was observed depended on the NTP being considered. For example, dATP (S0.5 = 35 microM) was hydrolyzed in the presence of dT20, whereas ATP (S0.5 = 70 microM) and GTP (S0.5 = 1200 microM) required at least dT50 and dT200 for hydrolysis, respectively. These results are discussed in terms of a kinetic model in which the stability of the RecA-ssDNA-NTP complex is dependent on the intrinsic S0.5 value of the NTP being hydrolyzed.
使用一系列长度从dT10到dT2000的dTn寡聚物作为单链DNA效应物,检测了RecA蛋白的依赖于单链DNA的NTP水解活性。根据所使用的dTn效应物的长度,dTn依赖的NTP水解反应有三种不同的表现形式。对于较长的dTn寡聚物,NTP水解以20 - 25 min⁻¹的周转数发生,并且观察到的NTP的S0.⁵值与dTn寡聚物的浓度无关(DNA浓度无关的水解)。对于中等长度的dTn寡聚物,NTP水解仍以20 - 25 min⁻¹的周转数发生,但观察到的NTP的S0.⁵随着dTn浓度的增加而降低,直到达到与较长dTn寡聚物获得的值相似的值(DNA浓度依赖的水解)。对于较短的dTn寡聚物,则有效地消除了NTP水解活性。尽管对于三种结构相关的NTP(dATP、ATP和GTP)都观察到了这种动力学行为的一般进展,但观察到DNA浓度无关、DNA浓度依赖和无NTP水解的dTn寡聚物长度取决于所考虑的NTP。例如,dATP(S0.⁵ = 35 μM)在dT20存在下被水解,而ATP(S0.⁵ = 70 μM)和GTP(S0.⁵ = 1200 μM)分别至少需要dT50和dT200才能水解。根据动力学模型对这些结果进行了讨论,在该模型中,RecA - 单链DNA - NTP复合物的稳定性取决于被水解的NTP的固有S0.⁵值。