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Dithioamide Substitutions in Proteins: Effects on thermostability peptide binding and fluorescence quenching in calmodulin

机译:蛋白质中的二硫酰胺取代:对钙调蛋白中热稳定性肽结合和荧光猝灭的影响

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摘要

Thioamide substitutions in the backbones of proteins can modulate their structure and thermostability, or serve as spectroscopic probes in fluorescence quenching experiments. Using native chemical ligation, we have produced the first examples of a protein (calmodulin) containing two thioamides. Dithioamide variants were made to explore the effects of combining stabilizing, neutral, and destabilizing single thioamide substitutions. One of the dithioamide calmodulin variants exhibited stabilization greater than any monothioamide variant, although the effect could not easily be anticipated from the results of single substitutions. Each of the calmodulin variants retained the ability to bind a target peptide, and the dithioamide proteins exhibited an increase in fluorescence quenching of tryptophan relative to their single thioamide counterparts. These results show that multiply thioamidated proteins can be synthesized, and that properly placed thioamides can be used to increase protein thermostability or enhance fluorecsence quenching in peptide binding experiments.
机译:蛋白质骨架中的硫酰胺​​取代可调节其结构和热稳定性,或在荧光猝灭实验中用作光谱探针。使用天然化学连接,我们产生了包含两个硫代酰胺的蛋白质(钙调蛋白)的第一个实例。制作了二硫代酰胺变体,以探索将稳定的,中性的和去稳定的单个硫代酰胺取代相结合的效果。二硫代酰胺钙调蛋白变体之一表现出比任何单硫代酰胺变体更大的稳定性,尽管从单次取代的结果不容易预期到效果。每个钙调蛋白变体都保留了结合靶肽的能力,并且相对于它们的单个硫代酰胺对应物,二硫代酰胺蛋白显示出色氨酸的荧光猝灭增加。这些结果表明,可以合成多种硫酰胺化的蛋白质,并且在肽结合实验中,适当放置的硫酰胺可用于增加蛋白质的热稳定性或增强荧光猝灭。

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