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在一种半合成牛胰核糖核酸酶中,伴随失活的天冬氨酸121被天冬酰胺取代而发生的组氨酸pKa位移。

Histidine pKa shifts accompanying the inactivating Asp121----Asn substitution in a semisynthetic bovine pancreatic ribonuclease.

作者信息

Cederholm M T, Stuckey J A, Doscher M S, Lee L

机构信息

Department of Biochemistry, Wayne State University School of Medicine, Detroit, MI 48201.

出版信息

Proc Natl Acad Sci U S A. 1991 Sep 15;88(18):8116-20. doi: 10.1073/pnas.88.18.8116.

Abstract

A semisynthetic RNase, RNase-(1-118).(111-124), consisting of a noncovalent complex between residues 1-118 of RNase (obtained from the proteolytic digestion of RNase A), and a synthetic 14-residue peptide containing residues 111-124 of RNase, exhibits 98% of the enzymatic activity of bovine pancreatic ribonuclease A (EC 3.1.27.5). The replacement of aspartic acid-121 by asparagine in this semisynthetic RNase to form the "D121N" analog reduces kcat/Km to 2.7% of the value for RNase A. In the present work, 1H NMR spectroscopy has been used to probe the ionization states of His12, His105, and His119 in this catalytically defective semisynthetic RNase. A comparison of the observed resonances of D121N with those previously determined by others for RNase A enabled us to assign the C2 proton NMR resonances to individual residues; the assignment of His119 was confirmed by titrating D121N with the fully deuterated peptide, [Asn121]-RNase-(111-124). The observed pKa values of His12, His105, and His119 decrease 0.18, 0.16, and 0.02 pH unit, respectively, as a result of the D121N replacement. Values calculated by using a finite difference algorithm to solve the Poisson-Boltzmann equation (the DELPHI program, version 3.0) and a refined 2.0-A coordinate set for the crystal structure of D121N differ significantly for active site residues His12 (delta pKa = -0.58) and His119 (delta pKa = -0.55) but not for His105 (delta pKa = -0.10). The elmination of bound water from the calculations reduced, but did not reconcile, these discrepancies (His12, delta pKa = -0.36; His119, delta pKa = -0.41).

摘要

一种半合成核糖核酸酶RNase-(1-118).(111-124),它由核糖核酸酶1-118位残基(通过核糖核酸酶A的蛋白水解消化获得)与含核糖核酸酶111-124位残基的14残基合成肽之间的非共价复合物组成,具有牛胰核糖核酸酶A(EC 3.1.27.5)98%的酶活性。在这种半合成核糖核酸酶中,将天冬氨酸-121替换为天冬酰胺形成“D121N”类似物后,kcat/Km降低至核糖核酸酶A值的2.7%。在本研究中,利用1H核磁共振光谱来探测这种催化缺陷型半合成核糖核酸酶中组氨酸12、组氨酸105和组氨酸119的电离状态。将D121N观察到的共振与其他人先前为核糖核酸酶A测定的共振进行比较,使我们能够将C2质子核磁共振共振归属于各个残基;通过用完全氘代的肽[天冬酰胺121]-RNase-(111-124)滴定D121N,证实了组氨酸119的归属。由于D121N替换,组氨酸12、组氨酸105和组氨酸119观察到的pKa值分别降低了0.18、0.16和0.02个pH单位。使用有限差分算法求解泊松-玻尔兹曼方程(DELPHI程序,3.0版)并结合D121N晶体结构的精制2.0埃坐标集计算得到的值,对于活性位点残基组氨酸12(δpKa = -0.58)和组氨酸119(δpKa = -0.55)有显著差异,但对于组氨酸105(δpKa = -0.10)没有差异。计算中去除结合水减少了这些差异,但并未使其一致(组氨酸12,δpKa = -0.36;组氨酸119,δpKa = -0.41)。

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Redesigning protein pKa values.重新设计蛋白质的pKa值。
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