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首页> 外文期刊>Radiation Research: Official Organ of the Radiation Research Society >Hydroxyl radical-induced hydrogen/deuterium exchange in amino acid carbon-hydrogen bonds.
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Hydroxyl radical-induced hydrogen/deuterium exchange in amino acid carbon-hydrogen bonds.

机译:羟基自由基诱导的氨基酸碳氢键中的氢/氘交换。

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摘要

Hydroxyl radicals produced by radiolysis under anaerobic conditions in the presence of dithiothreitol and D2O have been shown to be capable of inducing hydrogen/deuterium (1H/2H) exchange in carbon-hydrogen bonds of amino acids. When the solution is saturated with N2O, a 1H/2H exchange efficiency of 38% (based on the G value of 5.6 x 10(-7) mol J(-1) for hydroxyl radical) was determined by measuring the amino acid isotope ratio [M+H+1]+/[M+H]+ using electrospray ionization-mass spectrometry. The incorporation of 2H was proportional to the amount of hydroxyl radical generated and required the presence of dithiothreitol. Using standard anaerobic reaction conditions with dithiothreitol and N2O, incorporations of 2H of 3% and 8% into L-valine (100 microM, 35 microM DTT) and L-leucine (100 microM, 31 microM DTT), respectively, were achieved after a dose of 89 Gy and, using d8-DL-valine (100 microM, 35 microM DTT) with H2O as the solvent, approximately 2% incorporation of protium was detected. Additionally, 1H/2H exchange into the peptide (Ala2)-leucine enkephalin produced 6% incorporation of 2H. These results directly demonstrate the ability of sulfhydryl groups to mediate the chemical repair of proteins through hydrogen-atom donation to an amino acid carbon-centered radical, thus providing a means of isotopically labeling solvent-accessible amino acid residues of peptides and proteins.
机译:已证明在二硫苏糖醇和D2O的存在下在厌氧条件下通过辐射分解产生的羟基能够诱导氨基酸的碳氢键中的氢/氘(1H / 2H)交换。当溶液被N2O饱和时,通过测量氨基酸同位素比率,可以确定38%的1H / 2H交换效率(基于5.6 x 10(-7)mol J(-1)对羟基的G值) [M + H + 1] + / [M + H] +使用电喷雾电离质谱分析。 2H的掺入与所产生的羟基自由基的量成比例,并且需要存在二硫苏糖醇。使用标准的厌氧反应条件与二硫苏糖醇和N2O,分别在L-缬氨酸(100 microM,35 microM DTT)和L-亮氨酸(100 microM,31 microM DTT)中分别加入3%和8%的2H。剂量为89 Gy,使用d8-DL-缬氨酸(100 microM,35 microM DTT)和H2O作为溶剂,检测到约2%的pro掺入。此外,将1H / 2H交换成肽(Ala2)-亮氨酸脑啡肽可产生6%的2H掺入。这些结果直接证明了巯基基团通过氢原子捐赠给氨基酸碳中心自由基而介导蛋白质的化学修复的能力,从而提供了同位素标记肽和蛋白质的溶剂可及氨基酸残基的手段。

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