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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >How a novel tyrosine-heme cross-link fine-tunes the structure and functions of heme proteins: a direct comparitive study of L29H/F43Y myoglobin
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How a novel tyrosine-heme cross-link fine-tunes the structure and functions of heme proteins: a direct comparitive study of L29H/F43Y myoglobin

机译:新型酪氨酸-血红素交联如何微调血红素蛋白的结构和功能:L29H / F43Y肌红蛋白的直接比较研究

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A heme-protein cross-link is a key post-translational modification (PTM) of heme proteins. Meanwhile, the structural and functional consequences of heme-protein cross-links are not fully understood, due to limited studies on a direct comparison of the same protein with and without the cross-link. A Tyr-heme cross-link with a C-O bond is a newly discovered PTM of heme proteins, and is spontaneously formed in F43Y myoglobin (Mb) between the Tyr hydroxyl group and the heme 4-vinyl group in vivo. In this study, we found that with an additional distal His29 introduced in the heme pocket, the double mutant L29H/F43Y Mb can form two distinct forms under different protein purification conditions, with and without a novel Tyr-heme cross-link. By solving the X-ray structures of both forms of L29H/F43Y Mb and performing spectroscopic studies, we made a direct structural and functional comparison in the same protein scaffold. It revealed that the Tyr-heme cross-link regulates the heme distal hydrogen-bonding network, and fine-tunes not only the spectroscopic and ligand binding properties, but also the protein reactivity. Moreover, the formation of the Tyr-heme cross-link in the double mutant L29H/F43Y Mb was investigated in vitro. This study addressed the key issue of how Tyr-heme cross-link fine-tunes the structure and functions of the heme protein, and provided a plausible mechanism for the formation of the newly discovered Tyr-heme cross-link.
机译:血红素蛋白交联是血红素蛋白的关键翻译后修饰(PTM)。同时,由于对有或没有交联的相同蛋白质的直接比较的有限研究,对血红蛋白-蛋白质交联的结构和功能后果尚不完全清楚。具有C-O键的Tyr-血红素交联是新发现的血红素蛋白PTM,在体内Tyr羟基和血红素4-乙烯基之间自发形成于F43Y肌红蛋白(Mb)中。在这项研究中,我们发现,在血红素口袋中引入一个额外的远端His29后,双突变L29H / F43Y Mb在不同的蛋白质纯化条件下可以形成两种不同的形式,并带有和不带有新颖的Tyr-血红素交联键。通过解决两种形式的L29H / F43Y Mb的X射线结构并进行光谱研究,我们在相同的蛋白质支架中进行了直接的结构和功能比较。结果表明,Tyr-血红素交联调节了血红素远端的氢键网络,不仅微调了光谱和配体结合特性,而且还微调了蛋白质反应性。此外,在体外研究了双重突变体L29H / F43Y Mb中Tyr-血红素交联的形成。这项研究解决了Tyr-血红素交联如何微调血红素蛋白的结构和功能的关键问题,并为新发现的Tyr-血红素交联的形成提供了可能的机制。

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