Namsaraev E A, Berg P
Department of Biochemistry, Beckman Center for Molecular and Genetic Medicine, School of Medicine, Stanford University, California 94305, USA.
Biochemistry. 1998 Aug 25;37(34):11932-9. doi: 10.1021/bi9810297.
The presumptive first step in the Rad51-promoted formation of joint molecules is binding of the protein to ssDNA in the presence of ATP and Mg2+. In this paper, we report that Rad51's ability to bind DNA is rapidly inactivated when incubated at 30-37 degrees C but is stabilized by the presence of ATP and Mg2+. Although unable to promote binding to DNA, ATP-gamma-S also prevents inactivation of Rad51 at 37 degrees C. AMP-P-N-P lacks this property, while ADP protects partially but only at 5-10 times higher concentrations than ATP. These observations correlate with the dissociation constant of those nucleotides for Rad51 determined by equilibrium dialysis. Rad51 binds ATP and ATP-gamma-S with a 1:1 stoichiometry and Kds of 21 and 19 microM, respectively. The presence of DNA significantly increases the affinity of Rad51 for ATP, while DNA has a smaller effect on the affinity of ATP-gamma-S. Competition binding studies show that ADP and AMP-P-N-P bind with a 5- and 55-fold lower affinity, respectively, than ATP. The CD spectrum of Rad51 with negative double minima at around 210 and 222 nm is characteristic of an alpha-helical protein. Upon binding ATP and Mg2+, the CD spectrum is altered in the regions 194-208 and 208-235 nm, changes that are indicative of a more structured state; this change does not occur with Rad51 that has been inactivated at 37 degrees C. We surmise that the active conformation is more resistant to inactivation at elevated temperature. Our data suggest that one of the roles of ATP and Mg2+ in Rad51-mediated strand exchange is to induce the proper protein structure for binding the two DNA substrates.
Rad51促进形成连接分子的推测性第一步是在ATP和Mg2+存在的情况下,该蛋白与单链DNA结合。在本文中,我们报道,当在30 - 37摄氏度孵育时,Rad51结合DNA的能力会迅速失活,但ATP和Mg2+的存在可使其稳定。尽管ATP-γ-S不能促进与DNA的结合,但它也能防止Rad51在37摄氏度失活。AMP-P-N-P缺乏此特性,而ADP仅在浓度比ATP高5 - 10倍时才有部分保护作用。这些观察结果与通过平衡透析测定的那些核苷酸与Rad51的解离常数相关。Rad51以1:1的化学计量比结合ATP和ATP-γ-S,解离常数分别为21和19微摩尔。DNA的存在显著增加了Rad51对ATP的亲和力,而DNA对ATP-γ-S亲和力的影响较小。竞争结合研究表明,ADP和AMP-P-N-P的结合亲和力分别比ATP低5倍和55倍。Rad51在210和222纳米左右具有负双极小值的圆二色光谱是α-螺旋蛋白的特征。结合ATP和Mg2+后,在194 - 208纳米和208 - 235纳米区域圆二色光谱发生改变,这些变化表明结构更有序;在37摄氏度失活的Rad51不会出现这种变化。我们推测活性构象在高温下更抗失活。我们的数据表明,ATP和Mg2+在Rad51介导的链交换中的作用之一是诱导合适的蛋白质结构以结合两种DNA底物。