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Reactivity of glass-embedded met hemoglobin derivatives toward external NO: implications for nitrite-mediated production of bioactive NO.玻璃包埋的高铁血红蛋白衍生物对外部一氧化氮的反应性:对亚硝酸盐介导的生物活性一氧化氮产生的影响。
J Am Chem Soc. 2009 Sep 2;131(34):12273-9. doi: 10.1021/ja903364h.
2
Glass matrix-facilitated thermal reduction: a tool for probing reactions of met hemoglobin with nitrite and nitric oxide.玻璃基质促进的热还原:一种探测高铁血红蛋白与亚硝酸盐和一氧化氮反应的工具。
J Phys Chem B. 2010 Mar 4;114(8):2938-43. doi: 10.1021/jp909425z.
3
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Hemoglobin as a nitrite anhydrase: modeling methemoglobin-mediated N2O3 formation.血红蛋白作为亚硝酸盐脱水酶:模拟正铁血红蛋白介导的 N2O3 形成。
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Nitrite binding to metmyoglobin and methemoglobin in comparison to nitric oxide binding.与一氧化氮结合相比,亚硝酸盐与高铁肌红蛋白和高铁血红蛋白的结合。
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An electron paramagnetic resonance study of the affinity of nitrite for methemoglobin.电子顺磁共振研究亚硝酸盐与高铁血红蛋白的亲和力。
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Oxidation of iron-nitrosyl-hemoglobin by dehydroascorbic acid releases nitric oxide to form nitrite in human erythrocytes.脱氢抗坏血酸对铁-亚硝酰血红蛋白的氧化作用会在人体红细胞中释放一氧化氮以形成亚硝酸盐。
Biochemistry. 2008 Mar 4;47(9):2989-96. doi: 10.1021/bi702158d. Epub 2008 Jan 29.

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J Biol Chem. 2013 Aug 2;288(31):22408-25. doi: 10.1074/jbc.M113.482679. Epub 2013 Jun 17.
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HBOC vasoactivity: interplay between nitric oxide scavenging and capacity to generate bioactive nitric oxide species.HBOC 血管活性:一氧化氮清除与生成生物活性一氧化氮物质能力之间的相互作用。
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Low NO concentration dependence of reductive nitrosylation reaction of hemoglobin.血红蛋白还原亚硝基化反应对低浓度一氧化氮的依赖性。
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10
Hemoglobin as a nitrite anhydrase: modeling methemoglobin-mediated N2O3 formation.血红蛋白作为亚硝酸盐脱水酶:模拟正铁血红蛋白介导的 N2O3 形成。
Chemistry. 2011 May 27;17(23):6348-58. doi: 10.1002/chem.201003578. Epub 2011 May 17.

本文引用的文献

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Quantification of intermediates formed during the reduction of nitrite by deoxyhemoglobin.脱氧血红蛋白还原亚硝酸盐过程中形成的中间体的定量分析。
J Biol Chem. 2009 May 8;284(19):12710-8. doi: 10.1074/jbc.M808647200. Epub 2009 Mar 7.
2
Polyethylene glycol conjugation enhances the nitrite reductase activity of native and cross-linked hemoglobin.聚乙二醇缀合增强了天然血红蛋白和交联血红蛋白的亚硝酸还原酶活性。
Biochemistry. 2008 Oct 7;47(40):10773-80. doi: 10.1021/bi801116k. Epub 2008 Sep 17.
3
The new chemical biology of nitrite reactions with hemoglobin: R-state catalysis, oxidative denitrosylation, and nitrite reductase/anhydrase.亚硝酸盐与血红蛋白反应的新化学生物学:R 态催化、氧化去亚硝基化及亚硝酸盐还原酶/脱水酶
Acc Chem Res. 2009 Jan 20;42(1):157-67. doi: 10.1021/ar800089j.
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Catalytic generation of N2O3 by the concerted nitrite reductase and anhydrase activity of hemoglobin.血红蛋白的亚硝酸盐还原酶和脱水酶协同活性催化生成三氧化二氮。
Nat Chem Biol. 2007 Dec;3(12):785-94. doi: 10.1038/nchembio.2007.46. Epub 2007 Nov 4.
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Conformational dependence of hemoglobin reactivity under high viscosity conditions: the role of solvent slaved dynamics.高粘度条件下血红蛋白反应性的构象依赖性:溶剂从属动力学的作用
J Am Chem Soc. 2007 Oct 24;129(42):12756-64. doi: 10.1021/ja072342b. Epub 2007 Oct 2.
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Intermediates detected by visible spectroscopy during the reaction of nitrite with deoxyhemoglobin: the effect of nitrite concentration and diphosphoglycerate.亚硝酸盐与脱氧血红蛋白反应过程中通过可见光谱检测到的中间体:亚硝酸盐浓度和二磷酸甘油酸的影响
Biochemistry. 2007 Oct 16;46(41):11650-9. doi: 10.1021/bi700364e. Epub 2007 Sep 20.
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Protein dynamics and function: insights from the energy landscape and solvent slaving.蛋白质动力学与功能:来自能量景观和溶剂从属关系的见解。
IUBMB Life. 2007 Aug-Sep;59(8-9):506-12. doi: 10.1080/15216540701194113.
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Ligand recombination and a hierarchy of solvent slaved dynamics: the origin of kinetic phases in hemeproteins.配体重组与溶剂从属动力学层次:血红素蛋白中动力学相的起源
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Protein folding is slaved to solvent motions.蛋白质折叠受溶剂运动的支配。
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10
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玻璃包埋的高铁血红蛋白衍生物对外部一氧化氮的反应性:对亚硝酸盐介导的生物活性一氧化氮产生的影响。

Reactivity of glass-embedded met hemoglobin derivatives toward external NO: implications for nitrite-mediated production of bioactive NO.

作者信息

Navati Mahantesh S, Friedman Joel M

机构信息

Department of Physiology and Biophysics, Albert Einstein College of Medicine, Bronx, New York 10461, USA.

出版信息

J Am Chem Soc. 2009 Sep 2;131(34):12273-9. doi: 10.1021/ja903364h.

DOI:10.1021/ja903364h
PMID:19663497
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2743724/
Abstract

Many protein reactions are exceedingly difficult to dissect under standard conditions due to low concentrations of reactants and intermediates. A case in point are several proposed reactions of hemoglobin with both nitrite and nitric oxide. In the present work, glassy matrices are used to dynamically control the rate at which externally introduced gaseous NO accesses and reacts with several different met Hb derivatives including the nitrite, nitrate, and aquomet forms. This novel yet general approach reveals a clear difference between nitrite and other ligands including nitrate, water, and an internal imidazole. For nitrate, water, and the internal distal imidazole, the observed spectral changes indicate that NO entering the distal heme pocket is effective in displacing these ligands from the ferric heme iron. In contrast, when the ligand is nitrite, the resulting initial spectra indicate the formation of an intermediate that has distinctly ferrous-like properties. The spectrum and the response of DAF fluorescence to the presence of the intermediate are consistent with a recently proposed nitrite anhydrase reaction. This proposed intermediate is especially significant in that it represents a pathway for a nitrite-dependent catalytic process whereby Hb generates relatively long-lived bioactive forms of NO such as S-nitrosoglutathione. The failure to form this intermediate either at low pH or when the glass is extensively dried is consistent with the requirement for a specific conformation of reactants and residue side chains within the distal heme pocket.

摘要

由于反应物和中间体的浓度较低,许多蛋白质反应在标准条件下极难剖析。血红蛋白与亚硝酸盐和一氧化氮的几个反应就是一个典型例子。在本研究中,玻璃态基质被用于动态控制外部引入的气态一氧化氮与几种不同的高铁血红蛋白衍生物(包括亚硝酸盐、硝酸盐和水合高铁血红蛋白形式)接触并反应的速率。这种新颖且通用的方法揭示了亚硝酸盐与其他配体(包括硝酸盐、水和内部咪唑)之间的明显差异。对于硝酸盐、水和内部远端咪唑,观察到的光谱变化表明进入远端血红素口袋的一氧化氮能够有效地将这些配体从三价铁血红素铁上置换下来。相比之下,当配体是亚硝酸盐时,产生的初始光谱表明形成了一种具有明显亚铁样性质的中间体。该中间体的光谱以及DAF荧光对其存在的响应与最近提出的亚硝酸酐酶反应一致。这种提出的中间体特别重要,因为它代表了一种依赖亚硝酸盐的催化过程途径,通过该途径血红蛋白产生相对长寿命的生物活性一氧化氮形式,如S - 亚硝基谷胱甘肽。在低pH值下或玻璃被大量干燥时未能形成这种中间体,这与远端血红素口袋内反应物和残基侧链的特定构象要求一致。