Sharff A J, Wilson D K, Chang Z, Quiocho F A
Howard Hughes Medical Institute, Houston, TX.
J Mol Biol. 1992 Aug 20;226(4):917-21. doi: 10.1016/0022-2836(92)91040-v.
The X-ray structure of murine adenosine deaminase complexed with the transition-state analogue 6-hydroxyl-1,6-dihydropurine ribonucleoside has been determined from a single crystal grown at pH 4.2 and transferred to mother liquor of increasing pH up to a final pH of 6.0 prior to data collection. The structure has been refined to 2.5 A to a final crystallographic R-factor of 20% using phases from the previously refined 2.4 A structure at pH 4.2. Kinetic measurements show that the enzyme is only 20% active at pH 4.2 whereas it is fully active between pH 6.0 and pH 8.5. The refined structures at either pH are essentially the same. Consideration of the pKa values of the key catalytic residues and the mechanism proposed on the basis of the structure suggests that the ionization state of these residues is largely responsible for the pH dependence on activity.
已从在pH 4.2条件下生长的单晶中确定了与过渡态类似物6-羟基-1,6-二氢嘌呤核糖核苷复合的小鼠腺苷脱氨酶的X射线结构,并在数据收集之前将其转移至pH值逐渐升高直至最终pH值为6.0的母液中。使用来自先前在pH 4.2条件下精修至2.4 Å的结构的相位,该结构已精修至2.5 Å,最终晶体学R因子为20%。动力学测量表明,该酶在pH 4.2时仅具有20%的活性,而在pH 6.0至pH 8.5之间则具有完全活性。在任一pH值下精修的结构基本相同。对关键催化残基的pKa值以及基于该结构提出的机制的考虑表明,这些残基的电离状态在很大程度上决定了活性对pH的依赖性。