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Spectroscopic studies of wild-type and mutant zinc finger peptides: determinants of domain folding and structure.

机译:野生型和突变型锌指肽的光谱研究:结构域折叠和结构的决定因素。

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摘要

The "zinc finger" model [Miller, J., McLachlan, A. D. & Klug, A. (1985) EMBO J. 4, 1609-1614; Brown, R. S., Sander, C. & Argos, P. (1985) FEBS Lett. 186, 271-274] makes both specific structural and specific functional predictions about zinc finger consensus sequences that can be tested with a combination of genetic, molecular biological, and biophysical techniques. The yeast transcription factor ADR1 contains two adjacent zinc finger domains; genetic and deletion analyses showed that amino acid substitutions and deletions in the zinc finger domains resulted in the loss of protein activity. To test the structural and folding predictions of the zinc finger model, peptides encompassing each of the ADR1 fingers were synthesized (ADR1a and ADR1b) as well as a mutant finger peptide (del138) deleted for a single amino acid residue. The folding and metal-binding characteristics of these were assessed by 1H nuclear magnetic resonance (NMR) and visible spectroscopy. While a single unique conformational species was detected for the two wild-type peptides upon tetrahedral binding of zinc, the deletion peptide did not bind zinc with tetrahedral geometry, nor did it fold into a zinc finger domain. The metal-binding and folding results found with the mutant peptide were similar to those obtained when thiol alkylation or imidazole protonation of the wild-type peptides was performed. These data indicate that ligand spacing and both thiol and imidazole participation in zinc binding are specific and necessary requirements for zinc finger folding, which provides direct support for the initial predictions of the model.
机译:“锌指”模型[Miller,J.,McLachlan,A.D。&Klug,A。(1985)EMBO J.4,1609-1614; Med.J.,McLachlan,A.D。 Brown,R.S.,Sander,C.&Argos,P.(1985)FEBS Lett。 [186,271-274]对锌指共有序列做出了特定的结构预测和特定的功能预测,可以结合遗传,分子生物学和生物物理技术进行测试。酵母转录因子ADR1包含两个相邻的锌指结构域;遗传和缺失分析表明,锌指结构域中的氨基酸取代和缺失导致蛋白质活性丧失。为了测试锌指模型的结构和折叠预测,合成了包围每个ADR1指的肽(ADR1a和ADR1b)以及缺失了一个氨基酸残基的突变指肽(del138)。这些的折叠和金属结合特性通过1 H核磁共振(NMR)和可见光谱进行了评估。虽然在锌的四面体结合后检测到两个野生型肽的单一独特构象物种,但缺失肽不结合具有四面体几何形状的锌,也没有折叠成锌指结构域。用突变肽发现的金属结合和折叠结果与进行野生型肽的巯基烷基化或咪唑质子化时获得的结果相似。这些数据表明配体间距以及硫醇和咪唑参与锌结合是锌指折叠的特定且必要的要求,这为模型的初始预测提供了直接支持。

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