Park C, Schultz L W, Raines R T
Department of Biochemistry and Department of Chemistry, University of Wisconsin-Madison, 53706, USA.
Biochemistry. 2001 Apr 24;40(16):4949-56. doi: 10.1021/bi0100182.
His12 and His119 are critical for catalysis of RNA cleavage by ribonuclease A (RNase A). Substitution of either residue with an alanine decreases the value of k(cat)/K(M) by more than 10(4)-fold. His12 and His119 are proximal to the scissile phosphoryl group of an RNA substrate in enzyme-substrate complexes. Here, the role of these active site histidines in RNA binding was investigated by monitoring the effect of mutagenesis and pH on the stability of enzyme-nucleic acid complexes. X-ray diffraction analysis of the H12A and H119A variants at a resolution of 1.7 and 1.8 A, respectively, shows that the amino acid substitutions do not perturb the overall structure of the variants. Isothermal titration calorimetric studies on the complexation of wild-type RNase A and the variants with 3'-UMP at pH 6.0 show that His12 and His119 contribute 1.4 and 1.1 kcal/mol to complex stability, respectively. Determination of the stability of the complex of wild-type RNase A and 6-carboxyfluorescein approximately d(AUAA) at varying pHs by fluorescence anisotropy shows that the stability increases by 2.4 kcal/mol as the pH decreases from 8.0 to 4.0. At pH 4.0, replacing His12 with an alanine residue decreases the stability of the complex with 6-carboxyfluorescein approximately d(AUAA) by 2.3 kcal/mol. Together, these structural and thermodynamic data provide the first thorough analysis of the contribution of histidine residues to nucleic acid binding.
组氨酸12(His12)和组氨酸119(His119)对于核糖核酸酶A(RNase A)催化RNA裂解至关重要。将这两个残基中的任何一个替换为丙氨酸都会使k(cat)/K(M)的值降低超过10^4倍。在酶-底物复合物中,His12和His119靠近RNA底物的可裂解磷酰基。在此,通过监测诱变和pH对酶-核酸复合物稳定性的影响,研究了这些活性位点组氨酸在RNA结合中的作用。分别以1.7 Å和1.8 Å的分辨率对H12A和H119A变体进行X射线衍射分析,结果表明氨基酸替换并未扰乱变体的整体结构。在pH 6.0条件下,对野生型RNase A及其变体与3'-UMP络合进行等温滴定量热研究,结果表明His12和His119分别对复合物稳定性贡献1.4 kcal/mol和1.1 kcal/mol。通过荧光各向异性测定野生型RNase A与6-羧基荧光素近似d(AUAA)在不同pH下的复合物稳定性,结果表明随着pH从8.0降至4.0,稳定性增加2.4 kcal/mol。在pH 4.0时,用丙氨酸残基替换His12会使与6-羧基荧光素近似d(AUAA)的复合物稳定性降低2.3 kcal/mol。这些结构和热力学数据共同首次全面分析了组氨酸残基对核酸结合的贡献。