首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Insight into Heme Protein Redox Potential Control and Functional Aspects of Six-Coordinate Ligand-Sensing Heme Proteins from Studies of Synthetic Heme Peptides
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Insight into Heme Protein Redox Potential Control and Functional Aspects of Six-Coordinate Ligand-Sensing Heme Proteins from Studies of Synthetic Heme Peptides

机译:从合成血红素肽的研究洞察六配体传感血红素蛋白的血红素蛋白氧化还原电位控制和功能方面。

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We describe detailed studies of peptide-sandwiched mesohemes PSM~A and PSM~W,which comprise two histidine (His)-containing peptides covalently attached to the propionate groups of iron mesoporphyrin II.Some of the energy produced by ligation of the His side chains to Fe in the PSMs is invested in inducing helical conformations in the peptides.Replacing an alanine residue in each peptide of PSM~A with tryptophan (Trp) to give PSM~W generates additional energy via Trp side chain-porphyrin interactions,which enhances the peptide helicity and stability of the His-ligated state.The structural change strengthened His-Fe~(III) ligation to a greater extent than His-Fe~(II) ligation,leading to a 56-mV negative shift in the midpoint reduction potential at pH 8 (E_(m,8) value).This is intriguing because converting PSM~A to PSM~W decreased heme solvent exposure,which would normally be expected to stabilize Fe~(II) relative to Fe~(III).This and other results presented herein suggest that differences in stability may be at least as important as differences in porphyrin solvent exposure in governing redox potentials of heme protein variants having identical heme ligation motifs.Support for this possibility is provided by the results of studies from our laboratories comparing the microsomal and mitochondrial isoforms of mammalian cytochrome b_5.Our studies of the PSMs also revealed that reduction of Fe~(III) to Fe~(II) reversed the relative affinities of the first and second His ligands for Fe (K_2~(III) > K_1~(III);K_2~(III) < K_1~(II)).We propose that this is a consequence of conformational mobility of the peptide components,coupled with the much greater ease with which Fe" can be pulled from the mean plane of a porphyrin.An interesting consequence of this phenomenon,which we refer to as "dynamic strain",is that an exogenous ligand can compete with one of the His ligands in an Fe~(II)-PSM,a reaction accompanied by peptide helix unwinding.In this regard,the PSMs are better models of neuroglobin,CooA,and other six-coordinate ligand-sensing heme proteins than of stably bis(His)-ligated electron-transfer heme proteins such as cytochrome b_5.Exclusive binding of exogenous ligands by the Fe~(II) form of PSM~A led to positive shifts in its E_(m,8) value,which increases with increasing ligand strength.The possible relevance of this observation to the function of six-coordinate ligand-sensing heme proteins is discussed.
机译:我们描述了肽夹心介导的PSM〜A和PSM〜W的详细研究,它们包含两个共价附于铁中卟啉II的丙酸酯基团的含组氨酸(His)的肽。一些通过His侧链的连接产生的能量将PSM中Fe的Fe引入到肽中以诱导螺旋构象。用色氨酸(Trp)取代PSM〜A的每个肽中的丙氨酸残基,从而通过Trp侧链-卟啉相互作用产生PSM〜W产生额外的能量,从而增强了肽的螺旋度和His连接状态的稳定性。结构变化比His-Fe〜(II)连接更大程度地增强了His-Fe〜(III)连接,导致中点还原电位出现56 mV负移这很有趣,因为将PSM〜A转换为PSM〜W降低了血红素溶剂的暴露,通常可以预期它相对于Fe〜(III)可以稳定Fe〜(II)。本文提供的此结果和其他结果表明存在差异在控制具有相同血红素连接基序的血红素变体的氧化还原电势方面,稳定性方面的差异可能至少与卟啉溶剂暴露的差异一样重要。我们实验室比较微粒体和线粒体同工型的研究结果为这种可能性提供了支持。我们对PSM的研究还表明,Fe〜(III)还原为Fe〜(II)可以逆转第一和第二个His配体对Fe的相对亲和力(K_2〜(III)> K_1〜(III) ; K_2〜(III)

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