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pH值控制水溶性FeIII卟啉配合物的亚硝化速率和机制。

pH controls the rate and mechanism of nitrosylation of water-soluble FeIII porphyrin complexes.

作者信息

Wolak Maria, van Eldik Rudi

机构信息

Institute for Inorganic Chemistry, University of Erlangen-Nürnberg, 91058 Erlangen, Germany.

出版信息

J Am Chem Soc. 2005 Sep 28;127(38):13312-5. doi: 10.1021/ja052855n.

Abstract

In-depth kinetic and mechanistic studies on the reversible binding of NO to water-soluble iron(III) porphyrins as a function of pH revealed unexpected reaction kinetics for monohydroxo-ligated (P)Fe(III)(OH) species formed by deprotonation of coordinated water in diaqua-ligated (P)Fe(III)(H(2)O)(2). The observed significant decrease in the rate of NO binding to (P)Fe(OH) as compared to that of (P)Fe(H(2)O)(2) does not conform with expectations based on previous mechanistic work on NO-heme interactions, which would point to a diffusion-limited reaction for the five-coordinate Fe(III) center in (P)Fe(OH). The decrease in rate and an associatively activated mode of NO binding observed at high pH is ascribed to an increase in the activation barrier related to spin state and structural changes accompanying NO coordination to the high-spin (P)Fe(III)(OH) complex. The existence of such a barrier has previously been observed in the reactions of five-coordinate iron(II) hemes with CO and is evidenced for the first time for the process involving coordination of NO to the iron heme complex. The observed reactivity pattern, relevant in the context of studies on NO interactions with synthetic and biologically important hemes (in particular, hemoproteins), is reported here for an example of a simple water-soluble iron(III) porphyrin [meso-tetrakis(sulfonatomesityl)porphinato]-iron(III), (TMPS)Fe(III).

摘要

对一氧化氮(NO)与水溶性铁(III)卟啉的可逆结合进行的深入动力学和机理研究表明,随着pH值的变化,由二水配位的(P)Fe(III)(H₂O)₂中配位水去质子化形成的单羟基配位(P)Fe(III)(OH)物种呈现出意想不到的反应动力学。与(P)Fe(H₂O)₂相比,观察到NO与(P)Fe(OH)的结合速率显著降低,这与基于先前关于NO-血红素相互作用的机理研究的预期不符,后者认为(P)Fe(OH)中五配位Fe(III)中心的反应是扩散限制反应。在高pH下观察到的速率降低和NO结合的缔合活化模式归因于与自旋态相关以及NO配位至高自旋(P)Fe(III)(OH)配合物时伴随的结构变化导致的活化能垒增加。这种能垒的存在先前已在五配位铁(II)血红素与CO的反应中观察到,并且首次在涉及NO与铁血红素配合物配位的过程中得到证实。本文报道了一种简单的水溶性铁(III)卟啉[中-四(磺化间苯二甲酰)卟啉铁(III),(TMPS)Fe(III)]的观察到的反应活性模式,该模式在NO与合成和生物学上重要的血红素(特别是血红蛋白)相互作用的研究背景下具有相关性。

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