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首页> 外文期刊>Journal of the American Chemical Society >Solvent and H/D Isotope Effects on the Proton Transfer Pathways in Heteroconjugated Hydrogen-Bonded Phenol-Carboxylic Acid Anions Observed by Combined UV-vis and NMR Spectroscopy
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Solvent and H/D Isotope Effects on the Proton Transfer Pathways in Heteroconjugated Hydrogen-Bonded Phenol-Carboxylic Acid Anions Observed by Combined UV-vis and NMR Spectroscopy

机译:紫外-可见光谱和核磁共振光谱相结合观察到的溶剂和H / D同位素对杂共轭氢键合苯酚-羧酸阴离子中质子传递途径的影响

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摘要

Heteroconjugated hydrogen-bonded anions A…H…X~- of phenols (AH) and carboxylic/inorganic acids (HX) dissolved in CD_2Cl_2 and CDF_3/CDF_2Cl have been studied by combined low-temperature UV-vis and ~1H/~(13)C NMR spectroscopy (UVNMR). The systems constitute small molecular models of hydrogen-bonded cofactors in proteins such as the photoactive yellow protein (PYP). Thus, the phenols studied include the PYP cofactor 4-hydroxycinnamic acid methyl thioester, and the more acidic 4-nitrophenol and 2-chloro-4- nitrophenol which mimic electronically excited cofactor states. It is shown that the ~(13)C chemical shifts of the phenolic residues of A…H…X~-, referenced to the corresponding values of A…H…A~-, constitute excellent probes for the average proton positions. These shifts correlate with those of the H-bonded protons, as well as with the H/D isotope effects on the ~(13)C chemical shifts. A combined analysis of UV-vis and NMR data was employed to elucidate the proton transfer pathways in a qualitative way. Dual absorption bands of the phenolic moiety indicate a double-well situation for the shortest OHO hydrogen bonds studied. Surprisingly, when the solvent polarity is low the carboxylates are protonated whereas the proton shifts toward the phenolic oxygens when the polarity is increased. This finding indicates that because of stronger ion-dipole interactions small anions are stabilized at high solvent polarity and large anions exhibiting delocalized charges at low solvent polarities. It also explains the large acidity difference of phenols and carboxylic acids in water, and the observation that this difference is strongly reduced in the interior of proteins when both partners form mutual hydrogen bonds.
机译:通过低温紫外可见光谱和〜1H /〜(13 13 C NMR光谱法(UVNMR)。该系统构成了诸如光敏黄色蛋白质(PYP)之类的蛋白质中氢键辅因子的小分子模型。因此,所研究的酚包括PYP辅助因子4-羟基肉桂酸甲基硫酯,以及模拟电子激发辅助因子状态的更酸性的4-硝基苯酚和2-氯-4-硝基苯酚。结果表明,参照A…H…A〜-的相应值,A…H…X〜-的酚残基的〜(13)C化学位移构成了质子平均位置的极佳探针。这些位移与氢键质子的位移相关,并且与H / D同位素对〜(13)C化学位移的影响相关。对UV-vis和NMR数据进行了综合分析,以定性的方式阐明了质子转移途径。酚部分的双吸收带表明所研究的最短OHO氢键处于双阱情况。出人意料的是,当溶剂极性低时,羧酸盐被质子化,而当极性增加时,质子向酚氧移动。该发现表明,由于较强的离子-偶极相互作用,小阴离子在高溶剂极性下稳定,而大阴离子在低溶剂极性下表现出离域电荷。它还解释了水中苯酚和羧酸的酸度差异很大,并且观察到当两个伴侣形成相互的氢键时,蛋白质内部的这种差异会大大降低。

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  • 来源
    《Journal of the American Chemical Society》 |2013年第20期|7553-7566|共14页
  • 作者单位

    Institut fuer Chemie und Biochemie, Freie Universitaet Berlin, Takustrasse 3, D-14195 Berlin, Germany,Max Born Institut fuer Nichtlineare Optik und Kurzzeitspektroskopie, Max Born Strasse 2A, D-12489 Berlin, Germany;

    Institut fuer Chemie und Biochemie, Freie Universitaet Berlin, Takustrasse 3, D-14195 Berlin, Germany;

    Institut fuer Chemie und Biochemie, Freie Universitaet Berlin, Takustrasse 3, D-14195 Berlin, Germany,Department of Chemistry, St. Petersburg State University, Universitetskij pr. 26, 198504 St. Petersburg, Russia;

    V.A. Fock Institute of Physics, St. Petersburg State University, Ulyanovskaja 1, St.Petersburg State University, Russia;

    Institut fuer Chemie und Biochemie, Freie Universitaet Berlin, Takustrasse 3, D-14195 Berlin, Germany;

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