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Regioselective Aliphatic Carbon-Carbon Bond Cleavage by a Model System of Relevance to Iron-Containing Acireductone Dioxygenase

机译:区域选择性脂肪碳-碳键裂解的模型系统与含铁的乙酸酐-双加氧酶相关

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摘要

Mononuclear Fe(II) complexes ([(6-PH_2TPA)Fe(PhC(O)- C(R)C(O)Ph)]X (3-X: R = OH, X = ClO_4 or OTf; 4: R = H, X = ClO_4)) supported by the 6-PH_2TPA chelate ligand (6-PH_2TPA = N,N-bis((6-phenyl- 2-pyridyl)methyl)-N-(2-pyridylmethyl)amine) and containing a β-diketonate ligand bound via a six-membered chelate ring have been synthesized. The complexes have all been characterized by ~1H NMR, UV-vis, and infrared spectroscopy and variably by elemental analysis, mass spectrometry, and X- ray crystallography. Treatment of dry CH_3CN solutions of 3-OTf with O_2 leads to oxidative cleavage of the C(1)-C(2) and C(2)-C(3) bonds of the acireductone via a dioxygenase reaction, leading to formation of carbon monoxide and 2 equiv of benzoic acid as well as two other products not derived from dioxygenase reactivity: 2-oxo-2-phenylethylbenzoate and benzil. Treatment of CH_3CN/H_2O solutions of 3-X with O_2 leads to the formation of an additional product, benzoylformic acid, indicative of the operation of a new reaction pathway in which only the C(1)-C(2) bond is cleaved. Mechanistic studies show that the change in regioselectivity is due to the hydration of a vicinal triketone intermediate in the presence of both an iron center and water. This is the first structural and functional model of relevance to iron-containing acireductone dioxygenase (Fe-ARD'), an enzyme in the methionine salvage pathway that catalyzes the regiospecific oxidation of 1,2-dihydroxy-3-oxo-(S)-methylthiopentene to form 2-oxo-4-methylthiobutyrate. Importantly, this model system is found to control the regioselectivity of aliphatic carbon-carbon bond cleavage by changes involving an intermediate in the reaction pathway, rather than by the binding mode of the substrate, as had been proposed in studies of acireductone enzymes.
机译:单核Fe(II)配合物([(6-PH_2TPA)Fe(PhC(O)-C(R)C(O)Ph)] X(3-X:R = OH,X = ClO_4或OTf; 4:R = H,X = ClO_4))由6-PH_2TPA螯合配体(6-PH_2TPA = N,N-双((6-苯基-2-吡啶基)甲基)-N-(2-吡啶基甲基)胺所支撑并含有已经合成了通过六元螯合环结合的β-二酮酸酯配体。这些复合物均已通过〜1 H NMR,UV-vis和红外光谱进行了表征,并通过元素分析,质谱和X射线晶体学进行了表征。用O_2处理3-OTf的干燥CH_3CN溶液会通过双加氧酶反应氧化a啶酮的C(1)-C(2)和C(2)-C(3)键氧化裂解,导致形成碳一氧化碳和2当量的苯甲酸,以及另外两种不是由双加氧酶反应性衍生的产物:2-氧代-2-苯基乙基苯甲酸酯和苯甲醚。用O_2处理3-X的CH_3CN / H_2O溶液会导致形成另一种产物苯甲酰基甲酸,这表明只有C(1)-C(2)键被裂解的新反应途径的操作。机理研究表明,区域选择性的变化是由于在铁中心和水同时存在的情况下,邻位三酮中间体的水合。这是第一个与含铁的氧化还原酮双加氧酶(Fe-ARD')相关的结构和功能模型,该酶是蛋氨酸抢救途径中的一种酶,可催化1,2-二羟基-3-氧代-(S)-的区域特异性氧化甲硫基戊烯形成2-氧代-4-甲硫基丁酸酯。重要的是,发现该模型系统通过涉及反应途径中的中间体的变化而不是通过对阿卡瑞酮酶的研究已提出的底物的结合模式来控制脂族碳-碳键裂解的区域选择性。

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  • 来源
    《Journal of the American Chemical Society》 |2013年第2期|659-668|共10页
  • 作者单位

    Department of Chemistry and Biochemistry, Utah State University, Logan, Utah 84322-0300, United States;

    Department of Chemistry and Biochemistry, Utah State University, Logan, Utah 84322-0300, United States;

    Department of Chemistry and Biochemistry, Utah State University, Logan, Utah 84322-0300, United States;

    Department of Chemistry, University of Utah, Salt Lake City, Utah 84112-0850, United States;

    Department of Chemistry and Biochemistry, Utah State University, Logan, Utah 84322-0300, United States;

  • 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);
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  • 正文语种 eng
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