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Stabilization of Zwitterionic Structures of Amino Acids (Gly, Ala, Val, Leu, Ile, Ser and Pro) by Ammonium Ions in the Gas Phase

机译:气相中铵离子稳定氨基酸的两性离子结构(Gly,Ala,Val,Leu,Ile,Ser和Pro)

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摘要

The thermochemistry of gas-phase ion-molecule interactions and structures of a variety of clusters formed between protonated amino acids and either ammonia or amines have been studied by pulsed ionization high-pressure mass spectrometry (HPMS) and ab initio calculations. The enthalpy changes for the association reactions of protonated Gly, Ala, Val, Leu, Ile, Ser, and Pro with ammonia have been measured as-23.2, -21.9, -21.0, -20.8, -20.6, -22.6, and-20.4 kcal mol~(-1), respectively. A very good linear relationship exists between the enthalpy changes and the proton affinities (PAs) of the amino acids, with an exception of Ser, where the hydroxyl substituent forms an extra hydrogen bond with ammonia. For the association reaction of protonated proline and methylamine, the measured enthalpy and entropy changes are -26.6 kcal mol~(-1) and -30.1 cal mol~(-1) K~(-1), respectively. The experimental and calculated results indicate that the zwitterionic structure of proline may be well stabilized by CH_3NH_3~+. For the first time, the interaction strengths between these amino acids and NH_4~+ have been obtained, and comparison with Na~+ is discussed. Stabilization of zwitterionic structures of a series of amino acids (Gly, Ala, Val, Ser, and Pro) by various ammonium ions (NH_4~+, CH_3NH_3~+, (CH_3)_2NH_2~+, and (CH_3)_3NH~+) has been investigated systematically. Energy decomposition analysis has been performed so that the salt bridge interaction strengths between zwitterionic amino acids and ammonium ions have been obtained. Some generalizations with respect to the relative stability of zwitterionic structures may be drawn. First, as the PA of an amino acid increases, within a series of Gly, Ala, Val, the zwitterionic structure becomes more energetically favorable relative to a non-zwitterionic isomer. Second, as the PA of an amine increases, the zwitterionic structure of a given amino acid within the complex becomes gradually less favorable. Third, compared to the other amino acids, Pro, the only secondary amine among the 20 naturally occurring amino acids, has a much more pronounced tendency to form the zwitterionic structure, which has been confirmed by the experimental results. Finally, substitutents on the amino acid backbone that may participate in additional hydrogen bond interactions in non-zwitterionic isomer may render it more stable, as seen in Ser. These organic ammonium ions are found to be able to very effectively stabilize the zwitterionic structure of amino acids, even more effectively than metal ions, which aids significantly in the understanding of why zwitterionic structures exist extensively in biological systems.
机译:气相离子分子相互作用的热化学和质子化氨基酸与氨或胺之间形成的各种簇的结构已通过脉冲电离高压质谱(HPMS)和从头算计算进行了研究。质子化的Gly,Ala,Val,Leu,Ile,Ser和Pro与氨的缔合反应的焓变已测量为23.2,-21.9,-21.0,-20.8,-20.6,-22.6和-20.4千卡摩尔〜(-1)。氨基酸的焓变和质子亲和力(PAs)之间存在非常好的线性关系,Ser例外,其中的羟基取代基与氨形成额外的氢键。对于质子化脯氨酸与甲胺的缔合反应,测得的焓变和熵变分别为-26.6 kcal mol〜(-1)和-30.1 cal mol〜(-1)K〜(-1)。实验和计算结果表明脯氨酸的两性离子结构可以被CH_3NH_3〜+很好地稳定。首次获得了这些氨基酸与NH_4〜+之间的相互作用强度,并讨论了与Na〜+的比较。通过各种铵离子(NH_4〜+,CH_3NH_3〜+,(CH_3)_2NH_2〜+和(CH_3)_3NH〜+)稳定一系列氨基酸(Gly,Ala,Val,Ser和Pro)的两性离子结构已经进行了系统的调查。进行了能量分解分析,从而获得了两性离子氨基酸和铵离子之间的盐桥相互作用强度。关于两性离子结构的相对稳定性,可以得出一些概括。首先,随着氨基酸的PA增加,在一系列的Gly,Ala,Val中,两性离子结构相对于非两性离子异构体在能量上变得更有利。其次,随着胺的PA的增加,复合物中给定氨基酸的两性离子结构逐渐变得不利。第三,与其他氨基酸相比,Pro是20种天然氨基酸中唯一的仲胺,具有形成两性离子结构的趋势要明显得多,这已被实验结果证实。最后,如在Ser中所见,氨基酸主链上可参与非两性离子异构体中的额外氢键相互作用的取代基可使其更稳定。发现这些有机铵离子能够非常有效地稳定氨基酸的两性离子结构,甚至比金属离子更有效,这大大有助于理解为什么两性离子结构广泛存在于生物系统中。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2008年第10期|p.3065-3078|共14页
  • 作者

    Ronghu Wu; Terry B. McMahon;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

  • 入库时间 2022-08-18 03:19:31

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