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首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >Coupling effects of distal loops on structural stability and enzymatic activity of Escherichia coli dihydrofolate reductase revealed by deletion mutants.
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Coupling effects of distal loops on structural stability and enzymatic activity of Escherichia coli dihydrofolate reductase revealed by deletion mutants.

机译:远端环对缺失突变体揭示的大肠杆菌二氢叶酸还原酶的结构稳定性和酶活性的耦合作用。

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摘要

Residues distal from the active site in dihydrofolate reductase (DHFR) have regulatory roles in catalytic reaction and also folding stability. The couplings of the distal residues to the ones in the active site have been analyzed using site-directed mutants. To expand our understanding of the structural and functional influences of distal residue mutation, we explored the structural stability and enzymatic activity of deletion mutants. Deletion has greater structural and dynamical impacts on the corresponding part than site-directed mutation does. Thus, deletion amplifies the effects caused by distal mutations, which should make the mutual couplings among the distant residues more apparent. We focused on residues 52, 67, 121, and 145 in the four distinct loops of DHFR. All the single-residue deletion mutants showed marked reduction in stability, except for Delta52 in an alphaC-betaC loop. Double deletion mutants showed that the loop alphaC-betaC has nonadditive couplings with the betaF-betaG and betaG-betaH loops regarding stability. Single deletion to the loops alphaC-betaC or betaC-betaD resulted in considerable activity reduction, demonstrating that the loops couple to the residues near the active site. The four loops were shown to be functionally interdependent from the double deletion experiments.
机译:二氢叶酸还原酶(DHFR)中位于活性位点远端的残基在催化反应中具有调节作用,并且还具有折叠稳定性。使用定点突变体分析了远端残基与活性位点的结合。为了扩大我们对远端残基突变的结构和功能影响的理解,我们探讨了缺失突变体的结构稳定性和酶活性。与定点突变相比,缺失对相应部分的结构和动力学影响更大。因此,缺失放大了由远端突变引起的影响,这应该使远距离残基之间的相互偶联更加明显。我们专注于DHFR四个不同环中的残基52、67、121和145。除alphaC-betaC环中的Delta52外,所有单残基缺失突变体均显示出明显的稳定性降低。双缺失突变体显示,就稳定性而言,αC-βC环与betaF-betaG和betaG-betaH环具有非加成性偶联。对环αC-betaC或betaC-betaD的单个删除导致相当大的活​​性降低,表明环与活性位点附近的残基偶联。从双重缺失实验显示,四个环在功能上是相互依赖的。

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