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Advantages of Isotopic Depletion of Proteins for Hydrogen/Deuterium Exchange Experiments Monitored by Mass Spectrometry

机译:质谱监测氢/氘交换实验中蛋白质同位素耗竭的优势

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摘要

Solution-phase hydrogen/deuterium exchange (HDX) monitored by mass spectrometry is an excellent tool to study protein-protein interactions and conformational changes in biological systems, especially when traditional methods such as X-ray crystallography or nuclear magnetic resonance are not feasible. Peak overlap among the dozens of proteolytic fragments (including those from autolysis of the protease) can be severe, due to high protein molecular weight(s) and the broad isotopic distributions due to multiple deuterations of many peptides. In addition, different subunits of a protein complex can yield isomeric proteolytic fragments. Here, we show that depletion of ~(13)C and/or ~(15)N for one or more protein subunits of a complex can greatly simplify the mass spectra, increase the signal-to-noise ratio of the depleted fragment ions, and remove ambiguity in assignment of the m/z values to the correct isomeric peptides. Specifically, it becomes possible to monitor the exchange progress for two isobaric fragments originating from two or more different subunits within the complex, without having to resort to tandem mass spectrometry techniques that can lead to deuterium scrambling in the gas phase. Finally, because the isotopic distribution for a small to medium-size peptide is essentially just the monoisotopic species (~(12)C_(c)~(1)H_(h)~(14)N_(n)~(16)O_(o)~(32)S_(s)), it is not necessary to deconvolve the natural abundance distribution for each partially deuterated peptide during HDX data reduction.
机译:质谱监测的溶液相氢/氘交换(HDX)是研究蛋白质-蛋白质相互作用和生物系统中构象变化的绝佳工具,尤其是当传统方法(例如X射线晶体学或核磁共振)不可行时。数十个蛋白水解片段(包括来自蛋白酶自溶的片段)之间的峰重叠可能很严重,这是由于高蛋白分子量和由于许多肽的多次氘代造成的宽同位素分布所致。另外,蛋白质复合物的不同亚基可以产生异构蛋白水解片段。在这里,我们表明,复合物中一个或多个蛋白质亚基的〜(13)C和/或〜(15)N消耗可以大大简化质谱图,增加消耗的碎片离子的信噪比,并消除在将m / z值分配给正确的异构肽时的歧义。具体而言,可以监测源自复合物中两个或更多个不同亚基的两个同量异位片段的交换进程,而不必诉诸可能导致氘在气相中加扰的串联质谱技术。最后,因为小到中型肽的同位素分布基本上只是单同位素物种(〜(12)C_(c)〜(1)H_(h)〜(14)N_(n)〜(16)O_ (o)〜(32)S_(s)),在HDX数据缩减过程中,不必对每个部分氘代的肽的自然丰度分布进行反卷积。

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