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通过亚基界面处的诱变实现二聚体酪氨酸-tRNA合成酶的可逆解离。

Reversible dissociation of dimeric tyrosyl-tRNA synthetase by mutagenesis at the subunit interface.

作者信息

Jones D H, McMillan A J, Fersht A R, Winter G

出版信息

Biochemistry. 1985 Oct 8;24(21):5852-7. doi: 10.1021/bi00342a024.

Abstract

Dimeric tyrosyl-tRNA synthetase from Bacillus stearothermophilus exhibits half-of-the-sites reactivity and negative cooperativity in binding of tyrosine. Protein engineering has been applied to the enzyme to determine whether it can be reversibly dissociated into monomers and if the monomers are active. The target for mutation is the residue Phe-164. The side chain of Phe-164 in one subunit interacts with its symmetry-related partner in the other. Mutation of Phe-164----Asp-164 gives a mutant [TyrTS(Asp-164)] that undergoes dissociation at high pH when the aspartate residues are ionized. The monomer is inactive and does not bind tyrosine. Dissociation is enhanced at low concentrations of enzyme by a mass action effect. Kinetic and binding measurements on TyrTS(Asp-164) with tyrosine and tyrosyl adenylate show that the monomer has very weak affinity for these ligands. Accordingly, dimerization is favored by high concentrations of tyrosine and ATP since the dimeric form has a high affinity for the ligands. The presence of tRNA does not encourage dimer formation, and so it must bind to the monomer. TyrTS(Asp-164) is fully active at pH 6 where dimerization is favored but has low activity at pH 7.8 where dissociation is favored. It should now prove possible to engineer heterodimers that may be used to investigate the subunit interactions further.

摘要

嗜热脂肪芽孢杆菌的二聚体酪氨酰 - tRNA合成酶在酪氨酸结合方面表现出半位点反应性和负协同性。已对该酶应用蛋白质工程技术,以确定它是否能可逆地解离成单体以及单体是否具有活性。突变的靶点是164位苯丙氨酸残基。一个亚基中164位苯丙氨酸的侧链与另一个亚基中与其对称相关的对应侧链相互作用。将苯丙氨酸164突变为天冬氨酸164得到一个突变体[TyrTS(Asp - 164)],当天冬氨酸残基离子化时,该突变体在高pH值下会发生解离。单体无活性且不结合酪氨酸。低浓度酶时,质量作用效应会增强解离。对TyrTS(Asp - 164)与酪氨酸和酪氨酰腺苷酸进行的动力学和结合测量表明,单体对这些配体的亲和力非常弱。因此,高浓度的酪氨酸和ATP有利于二聚化,因为二聚体形式对配体具有高亲和力。tRNA的存在不促进二聚体形成,所以它一定是与单体结合。TyrTS(Asp - 164)在有利于二聚化的pH 6时具有完全活性,但在有利于解离的pH 7.8时活性较低。现在应该能够构建可用于进一步研究亚基相互作用的异源二聚体。

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