Zeeberg B, Caplow M
Biochemistry. 1979 Sep 4;18(18):3880-6. doi: 10.1021/bi00585a007.
The dissociation constant for GDP binding to the E site of tubulin isolated by chromatography on Sepharose 6B is equal to 6.1 X 10(-8) M, as determined by the Hummel-Dryer procedure. This is smaller than any previously reported value, and the discrepancy with earlir results is analyzed. By use of a recently described column centrifugation procedure [Penefsky, H. S. (1977) J. Biol. Chem. 252, 2891-2899], it was established that GDP and GTP bind to the same site. GTP is bound 2.8-fold tighter than GDP, and the dissociation constant is 2.2 X 10(-8) M. A new method for the determination of dissociation constants for a protein-bound ligand, based on a quantitative analysis of the loss of ligand during exclusion chromatography, is presented. This has been used to determine that the dissociation constant for GDP bound to tubulin is equal to 5.5 X 10(-8) M, in excellent agreement with that determined independently from the Hummel-Dryer method. A previous theoretical treatment [Dixon, H. B. F. (1976) Biochem. J. 159, 161-162] of ligand loss during exclusion chromatography is discussed.
通过在琼脂糖6B上进行色谱分离得到的微管蛋白E位点与GDP结合的解离常数,经Hummel-Dryer方法测定为6.1×10⁻⁸M。该值小于此前报道的任何值,并对其与早期结果的差异进行了分析。利用最近描述的柱离心方法[Penefsky, H. S. (1977) J. Biol. Chem. 252, 2891 - 2899],确定GDP和GTP结合于同一位点。GTP的结合比GDP紧密2.8倍,其解离常数为2.2×10⁻⁸M。本文提出了一种基于排阻色谱过程中配体损失定量分析来测定蛋白质结合配体解离常数的新方法。该方法已用于测定与微管蛋白结合的GDP的解离常数为5.5×10⁻⁸M,与通过Hummel-Dryer方法独立测定的结果高度一致。本文还讨论了此前关于排阻色谱过程中配体损失的理论处理[Dixon, H. B. F. (1976) Biochem. J. 159, 161 - 162]。