Reactions between nitric oxide and haemoglobin under physiological conditions

被引:0
|
作者
Andrew J. Gow
Jonathan S. Stamler
机构
[1] Howard Hughes Medical Institute,Departments of Medicine and Cell Biology
[2] Duke University Medical Center,undefined
[3] Institute for Environmental Medicine,undefined
[4] University of Pennsylvania,undefined
来源
Nature | 1998年 / 391卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
The tenet of high-affinity nitric oxide (NO) binding to a haemoglobin (Hb) has shaped our view of haem proteins and of small diffusible signaling molecules. Specifically, NO binds rapidly to haem iron in Hb (k ≈ 107 M−1 s−1) (refs 1, 2) and once bound, the NO activity is largely irretrievable (Kd ≈ 10−5 s−1) (3–10); the binding is purportedly so tight as to be unaffected by O2 or CO. However, these general principles do not consider the allosteric state of Hb or the nature of the allosteric effector, and they mostly derive from the functional behaviour of fully nitrosylated Hb, whereas Hb is only partially nitrosylated in vivo11,12,13,14,15,16. Here we show that oxygen drives the conversion of nitrosylhaemoglobin in the ‘tense’ T (or partially nitrosylated, deoxy) structure to S -nitrosohaemoglobin in the ‘relaxed’ R (or ligand-bound, oxy) structure. In the absence of oxygen, nitroxyl anion (NO−) is liberated in a reaction producing methaemoglobin. The yields of both S -nitrosohaemoglobin and methaemoglobin are dependent on the NO/Hb ratio. These newly discovered reactions elucidate mechanisms underlying NO function in the respiratory cycle, and provide insight into the aetiology of S -nitrosothiols, methaemoglobin and its related valency hybrids. Mechanistic re-examination of NO interactions with other haem proteins containing allosteric-site thiols may be warranted.
引用
收藏
页码:169 / 173
页数:4
相关论文
共 50 条
  • [21] Control of the nitric oxide-cytochrome c oxidase signaling pathway under pathological and physiological conditions
    Shiva, S
    Darley-Usmar, VM
    IUBMB LIFE, 2003, 55 (10-11) : 585 - 590
  • [22] Nitric oxide-fixation by non-symbiotic haemoglobin proteins in Arabidopsis thaliana under N-limited conditions
    Kuruthukulangarakoola, Gitto Thomas
    Zhang, Jiangli
    Albert, Andreas
    Winkler, Barbro
    Lang, Hans
    Buegger, Franz
    Gaupels, Frank
    Heller, Wemer
    Michalke, Bemhard
    Sarioglu, Hakan
    Schnitzler, Jorg-Peter
    Hebelstrup, Kim Henrik
    Durner, Joerg
    Lindermayr, Christian
    PLANT CELL AND ENVIRONMENT, 2017, 40 (01): : 36 - 50
  • [25] NITRIC OXIDE HAEMOGLOBIN IN URINE DUE TO CONTAMINATION
    BARON, DN
    ROSE, CFM
    BRITISH MEDICAL JOURNAL, 1955, 1 (FEB12): : 398 - 398
  • [26] Model reactions for the release of nitric oxide from NO-donors under reductive and oxidative conditions - An overview
    Erbach, C
    Riederer, S
    Runge, I
    Duchstein, HJ
    BIOLOGY OF NITRIC OXIDE, PT 7, 2000, 16 : 111 - 111
  • [27] An orthoformate-bridged bis-diazeniumdiolates: Enhanced nitric oxide loading and released NO under physiological conditions
    Chen, En
    Zhu, Qi
    Zhan, Luyi
    Chen, Jun
    Lv, Huajing
    Chen, Wenteng
    Yu, Yongping
    TETRAHEDRON, 2025, 169
  • [28] In vivo and ex vivo EPR spectroscopy and imaging of endogenously produced nitric oxide under physiological and pathophysiological conditions
    Yoshimura, T
    Kato, N
    EPR IN THE 21ST CENTURY: BASICS AND APPLICATIONS TO MATERIAL, LIFE AND EARTH SCIENCES, 2002, : 403 - 411
  • [29] ROLE OF ENDOTHELIUM-DERIVED NITRIC-OXIDE IN THE CONTROL OF LOCAL BLOODFLOW UNDER PHYSIOLOGICAL AND PATHOPHYSIOLOGICAL CONDITIONS
    POHL, U
    DEWIT, C
    CANADIAN JOURNAL OF CARDIOLOGY, 1993, 9 : C6 - C11
  • [30] Relation between nitric oxide metabolites and haemoglobin concentrations in patients with ischaemic heart disease
    Andreotti, Felicita
    Coluzzi, Giulio
    Lavorgna, Alberto
    Marzo, Francesca
    Di Stasio, Enrico
    Carrozza, Cinzia
    Zuppi, Cecilia
    Crea, Filippo
    HEART, 2007, 93 (02) : 255 - 257