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Covalent heme attachment in Synechocystis hemoglobin is required to prevent ferrous heme dissociation

机译:为了防止亚铁血红素解离需要将共价血红素附着在集胞藻血红蛋白中

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摘要

Synechocystis hemoglobin contains an unprecedented covalent bond between a nonaxial histidine side chain (H117) and the heme 2-vinyl. This bond has been previously shown to stabilize the ferric protein against denaturation, and also to affect the kinetics of cyanide association. However, it is unclear why Synechocystis hemoglobin would require the additional degree of stabilization accompanying the His117–heme 2-vinyl bond because it also displays endogenous bis-histidyl axial heme coordination, which should greatly assist heme retention. Furthermore, the mechanism by which the His117–heme 2-vinyl bond affects ligand binding has not been reported, nor has any investigation of the role of this bond on the structure and function of the protein in the ferrous oxidation state. Here we report an investigation of the role of the Synechocystis hemoglobin His117–heme 2-vinyl bond on structure, heme coordination, exogenous ligand binding, and stability in both the ferrous and ferric oxidation states. Our results reveal that hexacoordinate Synechocystis hemoglobin lacking this bond is less stable in the ferrous oxidation state than the ferric, which is surprising in light of our understanding of pentacoordinate Hb stability, in which the ferric protein is always less stable. It is also demonstrated that removal of the His117–heme 2-vinyl bond increases the affinity constant for intramolecular histidine coordination in the ferric oxidation state, thus presenting greater competition for the ligand binding site and lowering the observed rate and affinity constants for exogenous ligands.
机译:蓝藻血红蛋白在非轴向组氨酸侧链(H117)和2-乙烯基血红素之间含有前所未有的共价键。先前已显示该键可稳定铁蛋白抵抗变性,并影响氰化物缔合的动力学。但是,尚不清楚为什么集胞藻血红蛋白需要伴随His117-血红素2-乙烯基键的附加程度的稳定化,因为它还显示出内源性双组氨酸轴向血红素的配位,这应大大有助于血红素的保留。此外,还没有报道过His117-血红素2-乙烯基键影响配体结合的机理,也没有任何研究该键在氧化亚铁状态下对蛋白质结构和功能的作用。在这里,我们报告了对蓝藻血红蛋白His117-血红素2-乙烯基键在结构,血红素配位,外源配体结合以及在亚铁和三价铁氧化态下的稳定性的作用的研究。我们的结果表明,缺少该键的六配位集胞藻血红蛋白在亚铁氧化态下的稳定性不如三价铁,鉴于我们对五配位Hb稳定性的了解,这是令人惊讶的,其中三价铁蛋白始终不稳定。还证明了去除His117-血红素2-乙烯基键会增加铁氧化状态下分子内组氨酸配位的亲和常数,从而对配体结合位点产生更大的竞争,并降低外源性配体的观察速率和亲和常数。

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