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首页> 外文期刊>Biochemistry >The C-Terminal Heme Regulatory Motifs of Heme Oxygenase-2 Are Redox-Regulated Heme Binding Sites
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The C-Terminal Heme Regulatory Motifs of Heme Oxygenase-2 Are Redox-Regulated Heme Binding Sites

机译:血红素加氧酶-2的C终端血红素调节基元是氧化还原调节的血红素结合位点。

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摘要

Heme oxygenase-2 (HO2), an enzyme that catalyzes the conversion of heme to biliverdin, contains three heme regulatory motifs (HRMs) centered at Cys127, Cys265, and Cys282. Previous studies using the soluble form of human HO2 spanning residues 1-288 (HO2(sol)) have shown that a disulfide bond forms between Cys265 and Cys282 and that, in this oxidized state, heme binds to the catalytic site of HO2(sol) via His45. However, various mutational and spectroscopic studies have confirmed the involvement of cysteine in Fe3+-heme binding upon reduction of the disulfide bond. In an effort to understand how the HRMs are involved in binding of heme to disulfide-reduced HO2(sol), in the work described here, we further investigated the properties of Fe3+-heme bound to HO2. Specifically, we investigated binding of Fe3+-heme to a truncated form of soluble HO2 (residues 213-288; HO2(tail)) that spans the C-terminal HRMs of HO2 but lacks the catalytic core. We found that HO2(tail) in the disulfide-reduced state binds Fe3+-heme and accounts for the spectral features observed upon binding of heme to the disulfide-reduced form of HO2(sol) that cannot be attributed to heme binding at the catalytic site. Further analysis revealed that while HO2(sol) binds one Fe3+-heme per monomer of protein under oxidizing conditions, disulfide-reduced HO2(sol) binds slightly more than two. Both Cys265 and Cys282 were identified as Fe3+-heme ligands, and His256 also acts as a ligand to the Cys265-ligated heme. Additionally, Fe3+-heme binds with a much weaker affinity to Cys282 than to Cys265, which has an affinity much weaker than that of the His45 binding site in the catalytic core. In summary, disulfide-reduced HO2 has multiple binding sites with varying affinities for Fe3+-heme.
机译:血红素加氧酶2(HO2)是一种催化血红素向biliverdin转化的酶,它含有三个以Cys127,Cys265和Cys282为中心的血红素调节基序(HRM)。以前使用人类HO2跨残基1-288(HO2(sol))的可溶形式进行的研究表明,Cys265和Cys282之间形成了二硫键,在这种氧化状态下,血红素与HO2(sol)的催化位点结合通过His45。然而,各种突变和光谱学研究已证实,当二硫键还原时,半胱氨酸参与Fe3 +-血红素结合。为了了解HRM如何参与血红素与二硫化物还原的HO2(sol)的结合,在此处描述的工作中,我们进一步研究了与HO2结合的Fe3 +-血红素的性质。具体来说,我们调查了Fe3 +血红素与截短形式的可溶性HO2(残基213-288; HO2(尾))的结合,该形式横跨HO2的C端HRM,但缺少催化核心。我们发现,二硫化物还原态的HO2(尾)与Fe3 +-血红素结合,并解释了血红素与HO2(sol)的二硫化物还原形式结合后观察到的光谱特征,这不能归因于血红素在催化位点的结合。进一步的分析表明,在氧化条件下,HO2(sol)与蛋白质的每个单体结合一个Fe3 +血红素,而二硫化物还原的HO2(sol)则与两个单体结合。 Cys265和Cys282均被鉴定为Fe3 +-血红素配体,而His256也充当了Cys265连接的血红素的配体。另外,Fe3 +-血红素与Cys282的亲和力比与Cys265的亲和力弱,而Cys265的亲和力比催化核心中His45结合位点弱。总之,二硫化物还原的HO2具有多个对Fe3 +-血红素具有不同亲和力的结合位点。

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