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水稻(Oryza sativa)血红蛋白的过氧化物酶活性:酪氨酸 112 和 151 的独特作用。

Peroxidase activity of rice (Oryza sativa) hemoglobin: distinct role of tyrosines 112 and 151.

机构信息

Institut de Chimie Physique, UMR8000, Université Paris-Saclay, CNRS, Avenue Jean Perrin. Bat 350, 91405, Orsay, France.

出版信息

J Biol Inorg Chem. 2023 Sep;28(6):613-626. doi: 10.1007/s00775-023-02014-0. Epub 2023 Jul 29.

DOI:10.1007/s00775-023-02014-0
PMID:37507628
Abstract

Five non-symbiotic hemoglobins (nsHb) have been identified in rice (Oryza sativa). Previous studies have shown that stress conditions can induce their overexpression, but the role of those globins is still unclear. To better understand the functions of nsHb, the reactivity of rice Hb1 toward hydrogen peroxide (HO) has been studied in vitro. Our results show that recombinant rice Hb1 dimerizes through dityrosine cross-links in the presence of HO. By site-directed mutagenesis, we suggest that tyrosine 112 located in the FG loop is involved in this dimerization. Interestingly, this residue is not conserved in the sequence of the five rice non-symbiotic hemoglobins. Stopped-flow spectrophotometric experiments have been performed to measure the catalytic constants of rice Hb and its variants using the oxidation of guaiacol. We have shown that Tyrosine112 is a residue that enhances the peroxidase activity of rice Hb1, since its replacement by an alananine leads to a decrease of guaiacol oxidation. In contrast, tyrosine 151, a conserved residue which is buried inside the heme pocket, reduces the protein reactivity. Indeed, the variant Tyr151Ala exhibits a higher peroxidase activity than the wild type. Interestingly, this residue affects the heme coordination and the replacement of the tyrosine by an alanine leads to the loss of the distal ligand. Therefore, even if the amino acid at position 151 does not participate to the formation of the dimer, this residue modulates the peroxidase activity and plays a role in the hexacoordinated state of the heme.

摘要

已在水稻(Oryza sativa)中鉴定出 5 种非共生血红蛋白(nsHb)。先前的研究表明,胁迫条件可以诱导其过表达,但这些球蛋白的作用仍不清楚。为了更好地理解 nsHb 的功能,已在体外研究了水稻 Hb1 对过氧化氢(HO)的反应性。我们的结果表明,重组水稻 Hb1 在 HO 的存在下通过二酪氨酸交联二聚化。通过定点突变,我们提出位于 FG 环中的酪氨酸 112 参与了这种二聚化。有趣的是,该残基在 5 种水稻非共生血红蛋白的序列中没有保守。已进行了停流分光光度法实验,以使用愈创木酚的氧化来测量水稻 Hb 及其变体的催化常数。我们已经表明,酪氨酸 112 是增强水稻 Hb1 过氧化物酶活性的残基,因为其被丙氨酸取代会导致愈创木酚氧化的减少。相反,酪氨酸 151 是一个保守残基,埋藏在血红素口袋内,降低了蛋白质的反应性。实际上,突变体 Tyr151Ala 表现出比野生型更高的过氧化物酶活性。有趣的是,该残基影响血红素配位,并且将酪氨酸替换为丙氨酸会导致失去远端配体。因此,即使位置 151 的氨基酸不参与二聚体的形成,该残基也会调节过氧化物酶活性,并在血红素的六配位状态中发挥作用。

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Cells. 2021 Nov 17;10(11):3200. doi: 10.3390/cells10113200.
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Oxidative radicals (HO or N) induce several di-tyrosine bridge isomers at the protein scale.氧化自由基(HO 或 N)在蛋白质尺度上诱导几种二酪氨酸桥异构体。
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Extracellular Neuroglobin as a Stress-Induced Factor Activating Pre-Adaptation Mechanisms against Oxidative Stress and Chemotherapy-Induced Cell Death in Breast Cancer.
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Unique Tyr-heme double cross-links in F43Y/T67R myoglobin: an artificial enzyme with a peroxidase activity comparable to that of native peroxidases.F43Y/T67R 肌红蛋白中独特的 Tyr-血红素双重交联:一种具有过氧化物酶活性的人工酶,其活性可与天然过氧化物酶相媲美。
Chem Commun (Camb). 2019 Jun 11;55(46):6610-6613. doi: 10.1039/c9cc02714a. Epub 2019 May 23.
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