Huang S L, Tsai M D
Biochemistry. 1982 Mar 2;21(5):951-9. doi: 10.1021/bi00534a021.
The binding of Mg2+ with adenine nucleotides is an important problem in enzyme-catalyzed phosphoryl transfer reactions. The previously used 31P chemical shift method has been shown to be inadequate to define the chelation pattern of the Mg2+ complex with adenosine 5'-triphosphate (ATP) [Jaffe, E. K., & Cohn, M. (1978) Biochemistry 17, 652-657]. The center of controversy is whether the alpha-phosphate of ATP is involved in chelation. We have recently found that Mg2+ causes the 17O NMR signal of [gamma-17O3]ATP to broaden [Tsai, M.-D., Huang, S. L., Kozlowski, J. F., & Chang, C. C. (1980) Biochemistry 19, 3531-3536]. The 17O NMR method was then used to investigate the binding of Mg2+ with ATP and adenosine 5'-diphosphate (ADP). The results indicate that Mg2+ interacts with both the alpha- and beta-phosphate of ADP, and all the alpha-, beta-, and gamma-phosphates of ATP. The extent of alpha coordination in MgATP may be smaller than the beta and gamma coordination. These results establish the "macroscopic" structure of MgADP and MgATP but have not determined the "microscopic" structures. The site specificity of the line-broadening effect in 17O NMR was supported by the results from substitution-inert Co3+ complexes of ADP and ATP with known structures. The Co3+ coordination also causes a large upfield shift (180-200 ppm). Various experiments were performed to ensure that the nonspecific factors (factors unrelated to the quadrupolar effect of 17O) do not dominate the results, although a small contribution from them cannot be ruled out. The experimental problems and the detailed mechanism of the line-broadening effect in 17O NMR are discussed.
Mg2+与腺嘌呤核苷酸的结合是酶催化磷酸基转移反应中的一个重要问题。先前使用的31P化学位移方法已被证明不足以确定Mg2+与腺苷5'-三磷酸(ATP)形成的配合物的螯合模式[贾菲,E.K.,&科恩,M.(1978年)《生物化学》17,652 - 657]。争议的焦点在于ATP的α - 磷酸是否参与螯合。我们最近发现Mg2+会使[γ - 17O3]ATP的17O NMR信号变宽[蔡,M.-D.,黄,S.L.,科兹洛夫斯基,J.F.,&张,C.C.(1980年)《生物化学》19,3531 - 3536]。然后使用17O NMR方法研究Mg2+与ATP和腺苷5'-二磷酸(ADP)的结合。结果表明,Mg2+与ADP的α - 和β - 磷酸以及ATP的所有α - 、β - 和γ - 磷酸相互作用。MgATP中α配位的程度可能小于β和γ配位。这些结果确定了MgADP和MgATP的“宏观”结构,但尚未确定“微观”结构。17O NMR中线宽效应的位点特异性得到了具有已知结构的ADP和ATP的取代惰性Co3+配合物结果的支持。Co3+配位也会导致大幅的高场位移(180 - 200 ppm)。进行了各种实验以确保非特异性因素(与17O的四极效应无关的因素)不会主导结果,尽管不能排除它们有小的贡献。讨论了17O NMR中的实验问题和线宽效应的详细机制。