D'Silva I, Pelletier J D, Lagueux J, D'Amours D, Chaudhry M A, Weinfeld M, Lees-Miller S P, Poirier G G
Health and Environment Unit, Laval University Medical Research Center, CHUQ and Faculty of Medicine, Laval University, 2705 boul. Laurier, Ste-Foy, Quebec, G1V 4G2, Canada.
Biochim Biophys Acta. 1999 Feb 10;1430(1):119-26. doi: 10.1016/s0167-4838(98)00278-7.
Poly(ADP-ribose) polymerase (PARP) and DNA-dependent protein kinase (DNA-PK) are important nuclear enzymes that cooperate to minimize genomic damage caused by DNA strand interruptions. DNA strand interruptions trigger the ADP-ribosylation activity and phosphorylation activity of PARP and DNA-PK respectively. In order to understand the relationship of PARP and DNA-PK with respect to DNA binding required for their activation, we analyzed the kinetics of the reactions and determined the apparent dissociation constants (Kd app) of the enzymes for DNA strand interruptions. PARP has a high binding affinity for blunt ends of DNA (Kd app=116 pM) and 3' single-base overhangs (Kd app=332 pM) in comparison to long overhangs (Kd app=2.6-5.0 nM). Nicks are good activators of PARP although the affinity of PARP for nicks (Kd app=467 pM) is 4-fold less than that for blunt ends. The Kd app of DNA-PK for 3' single-base overhangs, blunt ends and long overhangs is 704 pM, 1.3 nM and 1.4-2.2 nM respectively. These results demonstrate that (1) PARP, when compared to DNA-PK, has a greater preference for blunt ends and 3' single-base overhangs but a weaker preference for long overhangs, and (2) nicks are effective in attracting and activating PARP. The possible implications of the preferences of PARP and DNA-PK for DNA strand interruptions in vivo are discussed.
聚(ADP - 核糖)聚合酶(PARP)和DNA依赖性蛋白激酶(DNA - PK)是重要的核酶,它们协同作用以最小化由DNA链中断引起的基因组损伤。DNA链中断分别触发PARP和DNA - PK的ADP - 核糖基化活性和磷酸化活性。为了了解PARP和DNA - PK在激活所需的DNA结合方面的关系,我们分析了反应动力学并确定了酶对DNA链中断的表观解离常数(Kd app)。与长突出端(Kd app = 2.6 - 5.0 nM)相比,PARP对DNA平端(Kd app = 116 pM)和3'单碱基突出端(Kd app = 332 pM)具有高结合亲和力。切口是PARP的良好激活剂,尽管PARP对切口的亲和力(Kd app = 467 pM)比对平端的亲和力低4倍。DNA - PK对3'单碱基突出端、平端和长突出端的Kd app分别为704 pM、1.3 nM和1.4 - 2.2 nM。这些结果表明:(1)与DNA - PK相比,PARP对平端和3'单碱基突出端的偏好更大,而对长突出端的偏好较弱;(2)切口在吸引和激活PARP方面是有效的。文中讨论了PARP和DNA - PK对体内DNA链中断偏好的可能影响。