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二氧和一氧化碳与大豆豆血红蛋白结合的动力学

Dynamics of dioxygen and carbon monoxide binding to soybean leghemoglobin.

作者信息

Stetzkowski F, Banerjee R, Marden M C, Beece D K, Bowne S F, Doster W, Eisenstein L, Frauenfelder H, Reinisch L, Shyamsunder E

出版信息

J Biol Chem. 1985 Jul 25;260(15):8803-9.

PMID:4040516
Abstract

The association of dioxygen and carbon monoxide to soybean leghemoglobin (Lb) has been studied by laser flash photolysis at temperatures from 10 to 320 K and times from 50 ns to 100 s. Infrared spectra of the bound and the photodissociated state were investigated between 10 and 20 K. The general features of the binding process in leghemoglobin are similar to the ones found in myoglobin. Below about 200 K, the photodissociated ligands stay in the heme pocket and rebinding is not exponential in time, implying a distributed enthalpy barrier between pocket and heme. At around 300 K, ligands migrate from the solvent through the protein to the heme pocket, and a steady state is set up between the ligands in the solvent and in the heme pocket. The association rate, lambda on, is mainly controlled by the final binding step at the heme, the bond formation with the heme iron. Differences between Lb and other heme proteins show up in the details of the various steps. The faster association rate in Lb compared to sperm whale myoglobin (Mb) is due to a faster bond formation. The migration from the solvent to the heme pocket is much faster in Lb than in Mb. The low-temperature binding (B----A) and the infrared spectra of CO in the bound state A and the photodissociated state B are essentially solvent-independent in Mb, but depend strongly on solvent in Lb. These features can be correlated with the x-ray structure.

摘要

在10至320K的温度范围以及50纳秒至100秒的时间范围内,通过激光闪光光解研究了双氧基和一氧化碳与大豆豆血红蛋白(Lb)的结合。在10至20K之间研究了结合态和光解离态的红外光谱。豆血红蛋白中结合过程的一般特征与肌红蛋白中的相似。在约200K以下,光解离的配体留在血红素口袋中,重新结合在时间上不是指数形式的,这意味着口袋和血红素之间存在分布的焓垒。在约300K时,配体从溶剂通过蛋白质迁移到血红素口袋,并且在溶剂中的配体和血红素口袋中的配体之间建立了稳态。缔合速率λon主要由血红素处的最终结合步骤控制,即与血红素铁的键形成。Lb与其他血红素蛋白之间的差异出现在各个步骤的细节中。与抹香鲸肌红蛋白(Mb)相比,Lb中更快的缔合速率是由于更快的键形成。Lb中从溶剂到血红素口袋的迁移比Mb中快得多。在Mb中,低温结合(B→A)以及结合态A和光解离态B中CO的红外光谱基本上与溶剂无关,但在Lb中强烈依赖于溶剂。这些特征可以与X射线结构相关联。

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