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首页> 外文期刊>Angewandte Chemie >Collisional and Coulombic Unfolding of Gas-Phase Proteins: High Correlation to Their Domain Structures in Solution
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Collisional and Coulombic Unfolding of Gas-Phase Proteins: High Correlation to Their Domain Structures in Solution

机译:气相蛋白的碰撞和库仑展开:与它们的域结构在溶液中的高度相关

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摘要

The three-dimensional structures adopted by proteins are predicated by their many biological functions. Mass spectrometry has played a rapidly expanding role in protein structure discovery, enabling the generation of models for both proteins and their higher-order assemblies. While important coursed-grained insights have been generated, relatively few examples exist where mass spectrometry has been successfully applied to the characterization of protein tertiary structure. Here, we demonstrate that gas-phase unfolding can be used to determine the number of autonomously folded domains within monomeric proteins. Our ion mobility-mass spectrometry data highlight a strong, positive correlation between the number of protein unfolding transitions observed in the gas phase and the number of known domains within a group of sixteen proteins ranging from 8-78 kDa. This correlation and its potential uses for structural biology is discussed.
机译:蛋白质采用的三维结构由其许多生物学功能决定。质谱在蛋白质结构发现中起着迅速扩展的作用,从而可以生成蛋白质及其高级组装模型。尽管已经获得了重要的循序渐进的见解,但相对而言,存在很少有将质谱成功应用于蛋白质三级结构表征的例子。在这里,我们证明了气相解折叠可用于确定单体蛋白质中自主折叠域的数量。我们的离子淌度质谱数据突出显示了在气相中观察到的蛋白质解折叠跃迁数与16种蛋白质(范围从8-78 kDa)中已知域的数目之间的强正相关。讨论了这种相关性及其在结构生物学中的潜在用途。

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