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首页> 外文期刊>Journal of the American Chemical Society >Infrared Spectroscopy of Cationized Arginine in the Gas Phase: Direct Evidence for the Transition from Nonzwitterionic to Zwitterionic Structure
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Infrared Spectroscopy of Cationized Arginine in the Gas Phase: Direct Evidence for the Transition from Nonzwitterionic to Zwitterionic Structure

机译:气相精氨酸精氨酸的红外光谱:从非两性离子结构到两性离子结构转变的直接证据

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摘要

The gas-phase structures of protonated and alkali metal cationized arginine (Arg) and arginine methyl ester (ArgOMe) are investigated with infrared spectroscopy and ab initio calculations. Infrared spectra, measured in the hydrogen-stretch region, provide compelling evidence that arginine changes from its nonzwitterionic to zwitterionic form with increasing metal ion size, with the transition in structure occurring between lithium and sodium. For sodiated arginine, evidence for both forms is obtained from spectral deconvolution, although the zwitterionic form is predominant. Comparisons of the photodissociation spectra with spectra calculated for low-energy candidate structures provide additional insights into the detailed structures of these ions. Arg·Li~+, ArgOMe·Li~+, and ArgOMe·Na~+ exist in nonzwitterionic forms in which the metal ion is tricoordinated with the amino acid, whereas Arg·Na~+ and Arg·K~+ predominately exist in a zwitterionic form where the protonated side chain donates one hydrogen bond to the N terminus of the amino acid and the metal ion is bicoordinated with the carboxylate group. Arg·H~+ and ArgOMe·H~+ have protonated side chains that form the same interaction with the N terminus as zwitterionic, alkali metal cationized arginine, yet both are unambiguously determined to be nonzwitterionic. Calculations indicate that for clusters with protonated side chains, structures with two strong hydrogen bonds are lowest in energy, in disagreement with these experimental results. This study provides new detailed structural assignments and interpretations of previously observed fragmentation patterns for these ions.
机译:质子化和碱金属阳离子化精氨酸(Arg)和精氨酸甲酯(ArgOMe)的气相结构进行了红外光谱和从头算的研究。在氢拉伸区域测量的红外光谱提供了令人信服的证据,表明精氨酸会随着金属离子尺寸的增加而从其非两性离子形式变为两性离子形式,并且结构发生在锂和钠之间。对于两性精氨酸,虽然两性离子形式占主导地位,但从光谱去卷积获得了这两种形式的证据。将光解离光谱与为低能候选结构计算的光谱进行比较,可以进一步了解这些离子的详细结构。 Arg·Li〜+,ArgOMe·Li〜+和ArgOMe·Na〜+以非两性离子形式存在,其中金属离子与氨基酸三配位,而Arg·Na〜+和Arg·K〜+主要存在于金属中。两性离子形式,其中质子化的侧链在氨基酸的N末端提供一个氢键,金属离子与羧酸酯基双配位。 Arg·H〜+和ArgOMe·H〜+具有质子化的侧链,与两性离子的碱金属阳离子化精氨酸形成了与N末端相同的相互作用,但是明确确定它们均为非两性离子。计算表明,对于具有质子化侧链的簇,具有两个强氢键的结构的能量最低,与这些实验结果不一致。这项研究为这些离子提供了新的详细结构分配和先前观察到的碎片模式的解释。

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