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Nucleotide-induced conformational changes of tetradecameric GroEL mapped by H/D exchange monitored by FT-ICR mass spectrometry

机译:FT-ICR质谱监测H / D交换绘制的核苷酸诱导的十四聚GroEL的构象变化

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摘要

Here we employ hydrogen/deuterium exchange mass spectrometry (HDX-MS) to access E. coli chaperonin GroEL conformation. The ~800 kDa tetradecameric GroEL plays an essential role in the proper folding of many proteins. Previous studies of the structural dynamics of GroEL upon ATP binding have been inconsistent, showing either minimal or major allosteric changes. Our results, based on the native, non-mutated, protein under physiological conditions in solution demonstrate substantial changes in conformation and/or flexibility upon ATP binding. We capture the pivotal step in its functional cycle by use of a non-hydrolyzable ATP analog, ATPγS, to mimic the ATP-bound GroEL state. Comparison of HDX-MS results for apo GroEL and GroEL-ATPγS enables the characterization of the nucleotide-regulated conformational changes throughout the entire protein with high sequence resolution. The 14-mer GroEL complex is the largest protein assembly yet accessed by HDX-MS, with sequence resolution of segments of as few as five amino acids.
机译:在这里,我们采用氢/氘交换质谱(HDX-MS)来访问大肠杆菌伴侣蛋白GroEL构象。约800 kDa的十四聚GroEL在许多蛋白质的正确折叠中起着至关重要的作用。以前对GroEL在ATP结合后的结构动力学的研究一直不一致,显示出最小或主要的变构变化。我们的结果基于生理条件下溶液中的天然非突变蛋白,证明了ATP结合后构象和/或柔韧性发生了实质性变化。我们通过使用不可水解的ATP类似物ATPγS来捕获其功能周期中的关键步骤,以模仿ATP结合的GroEL状态。对载脂蛋白GroEL和GroEL-ATPγS的HDX-MS结果的比较能够以高序列分辨率表征整个蛋白质中核苷酸调节的构象变化。 14-mer GroEL复合物是HDX-MS迄今获得的最大的蛋白质装配体,其片段分辨率仅为5个氨基酸。

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