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单个突变破坏了甘氨酰胺核糖核苷酸转甲酰基酶的pH依赖性二聚化。

A single mutation disrupts the pH-dependent dimerization of glycinamide ribonucleotide transformylase.

作者信息

Mullen C A, Jennings P A

机构信息

Department of Chemistry and Biochemistry, University of California, San Diego, CA 92093-0359, USA.

出版信息

J Mol Biol. 1998 Mar 6;276(4):819-27. doi: 10.1006/jmbi.1997.1530.

Abstract

Monomeric GART reversibly associates into a dimeric form as a function of decreasing solution pH. The transition is consistent with a three-proton transfer reaction with an apparent pKa near 7. We now report that a single mutation, which replaces a glutamic acid at position 70 in the dimer interface with alanine (E70A), disrupts the pH-dependent dimerization of GART based on dynamic light scattering and gel filtration studies. A comparison of data obtained from UV-absorbance difference spectroscopy for both the wild-type and mutant forms of GART indicates that a tyrosine residue(s) undergoes a change in solvent exposure over the pH range 6.55 to 8.19. A conformational change in tertiary structure that accompanies dimerization accounts for 60% of the observed optical difference, while the remaining 40% can be attributed to a pH-dependent process unrelated to dimerization. In addition, fluorescence studies of the mutant protein indicate that a pH-dependent change in tryptophan fluorescence exhibited by the wild-type protein is unrelated to quaternary structural changes and is likely a result of simple fluorescence quenching by nearby protonated histidine side-chains. Taken together, our results indicate that a single amino acid change at the dimer interface is sufficient to interrupt the highly specific, pH-dependent assembly reaction of GART, although pH-dependent conformational changes present in the wild-type protein also occur in E70A GART. This work is a first application of structure-based site-directed mutagenesis to the analysis of this pH-dependent assembly reaction.

摘要

单体GART会随着溶液pH值的降低而可逆地缔合成二聚体形式。这种转变与一个表观pKa接近7的三质子转移反应相一致。我们现在报告,一个单点突变,即将二聚体界面处第70位的谷氨酸替换为丙氨酸(E70A),根据动态光散射和凝胶过滤研究,破坏了GART的pH依赖性二聚化。对野生型和突变型GART的紫外吸收差光谱数据的比较表明,在6.55至8.19的pH范围内,一个酪氨酸残基的溶剂暴露情况发生了变化。伴随二聚化的三级结构构象变化占观察到的光学差异的60%,而其余40%可归因于与二聚化无关的pH依赖性过程。此外,对突变蛋白的荧光研究表明,野生型蛋白表现出的色氨酸荧光的pH依赖性变化与四级结构变化无关,可能是附近质子化组氨酸侧链简单荧光猝灭的结果。综上所述,我们的结果表明,二聚体界面处的一个氨基酸变化足以中断GART高度特异性的、pH依赖性的组装反应,尽管野生型蛋白中存在的pH依赖性构象变化在E70A GART中也会发生。这项工作是基于结构的定点诱变在分析这种pH依赖性组装反应中的首次应用。

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