Steinke L, Bacon R, Schuster S M
Department of Chemistry, University of Nebraska, Lincoln 68588-0304.
Arch Biochem Biophys. 1987 Nov 1;258(2):482-90. doi: 10.1016/0003-9861(87)90369-9.
The inhibition of beef heart mitochondrial F1 by exchange-inert metal-nucleotide complexes was examined. Mono- and bidentate Cr(NH3)4ATP were found to be mixed noncompetitive inhibitors of F1-catalyzed ATP hydrolysis (values of Ki = 0.5 and 0.1 mM; values of alpha = 0.2 and 24, respectively). Rh(H2O)nATP was also found to be a mixed noncompetitive inhibitor of F1-catalyzed ATP hydrolysis (Ki = 0.3 mM, alpha = 0.7). These compounds were used in a series of dual inhibition experiments, along with mono- and bidentate CrATP and Co(NH3)4ATP. All the exchange-inert metal-nucleotides examined were found to be mutually exclusive inhibitors of F1, indicating that they all bind to the same site(s). It is postulated that the pKa of the metal-coordinated ligands is related to the potency of inhibition by these compounds. It appears probable that the exchange-inert nucleotide complexes are binding to site(s) in addition to the catalytic site(s) of F1.
研究了交换惰性金属 - 核苷酸复合物对牛心线粒体F1的抑制作用。发现单齿和双齿的Cr(NH3)4ATP是F1催化的ATP水解的混合非竞争性抑制剂(Ki值分别为0.5和0.1 mM;α值分别为0.2和24)。还发现Rh(H2O)nATP是F1催化的ATP水解的混合非竞争性抑制剂(Ki = 0.3 mM,α = 0.7)。这些化合物与单齿和双齿的CrATP以及Co(NH3)4ATP一起用于一系列双重抑制实验。所有检测的交换惰性金属 - 核苷酸均被发现是F1的相互排斥抑制剂,这表明它们都结合到相同的位点。据推测,金属配位配体的pKa与这些化合物的抑制效力有关。交换惰性核苷酸复合物似乎除了F1的催化位点外还结合到其他位点。