Brauer M, Benz F W
Biochim Biophys Acta. 1978 Mar 28;533(1):186-94. doi: 10.1016/0005-2795(78)90563-9.
EDTA binds at the active site of ribonuclease causing a selective downfield shift of the C2 proton resonance of His 12 at pH 5.5 (pH denotes an uncorrected glass electrode pH meter reading of a 2H2O solution). A dissociation constant for EDTA binding to ribonuclease of 1.70 mM was calculated from this chemical shift change. The pKa of His 12 increased from 5.79 in ribonuclease alone to 6.73 in the RNAase . EDTA complex. Compared to these effects, the other histidine residues were not significantly affected by EDTA. EDTA was shown to act as a competitive inhibitor of cytidine 2',3'-cyclic phosphate hydrolysis by ribonuclease with a Ki of 1.37 mM at pH 5.5, 25 degrees C. Molecular model building suggests that three of the four carboxyl groups of EDTA could simultaneously interact with histidine 12, lysine 41 and lysine 7. A complex of this type would account for the data described herein.
在pH 5.5时(pH表示2H₂O溶液未经校正的玻璃电极pH计读数),乙二胺四乙酸(EDTA)与核糖核酸酶的活性位点结合,导致组氨酸12的C2质子共振选择性地向低场位移。根据这种化学位移变化计算出EDTA与核糖核酸酶结合的解离常数为1.70 mM。组氨酸12的pKa值从单独的核糖核酸酶中的5.79增加到核糖核酸酶-EDTA复合物中的6.73。与这些效应相比,其他组氨酸残基受EDTA的影响不显著。在pH 5.5、25℃条件下,EDTA被证明是核糖核酸酶催化胞苷2',3'-环磷酸水解的竞争性抑制剂,其抑制常数(Ki)为1.37 mM。分子模型构建表明,EDTA的四个羧基中的三个可以同时与组氨酸12、赖氨酸41和赖氨酸7相互作用。这种类型的复合物可以解释本文所述的数据。