Stability of S-nitrosothiols and S-nitrosylated proteins: A struggle for cellular existence!

被引:6
|
作者
Chatterji, Ajanta [1 ]
Sengupta, Rajib [1 ]
机构
[1] Amity Univ Kolkata, Amity Inst Biotechnol Kolkata, Act Area 2, Kolkata 700135, W Bengal, India
关键词
denitrosylaze; glutathione; nitrosative stress; reductase; S-nitrosylation; thioredoxin; RYANODINE RECEPTOR; NITRIC-OXIDE; DISSOCIATION-ENERGIES; THIOREDOXIN CATALYZES; RELEASE CHANNEL; CALCIUM LEAK; IDENTIFICATION; GLUTATHIONE; SKELETAL; NITROSOGLUTATHIONE;
D O I
10.1002/jcb.30139
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Nitric oxide is a well-known gasotransmitter molecule that covalently docks to sulfhydryl groups of proteins resulting in S-nitrosylation of proteins and nonprotein thiols that serve a variety of cellular processes including cGMP signaling, vasodilatation, neurotransmission, ion-channel modulation, and cardiac signaling. S-nitrosylation is an indispensable modification like phosphorylation that directly regulates the functionality of numerous proteins. However, recently there has been a controversy over the stability of S-nitrosylated proteins (PSNOs) within the cell. It has been argued that PSNOs formed within the cell is a transient intermediate step to more stable disulfide formation and disulfides are the predominant end effector modifications in NO-mediated signaling. The present article accumulates state-of-the-art evidence from numerous research that strongly supports the very existence of PSNOs within the cell and attempts to put an end to the controversy. This review illustrates critical points including comparative bond dissociation energies of S-NO bond, the half-life of S-nitrosothiols and PSNOs, cellular concentrations of PSNOs, X ray crystallographic studies on PSNOs, and stability of PSNOs at physiological concentration of antioxidants. These logical evidence cumulatively support the endogenous stability and inevitable existence of PSNOs/RSNOs within the cell that directly regulate the functionality of proteins and provide valuable insight into understanding stable S-nitrosylation mediated cell signaling.
引用
收藏
页码:1579 / 1593
页数:15
相关论文
共 50 条
  • [31] Proteomic analysis of S-nitrosylated and S-glutathionylated proteins in wheat seedlings with different dehydration tolerances
    Gietler, Marta
    Nykiel, Malgorzata
    Orzechowski, Slawomir
    Zagdanska, Barbara
    Zagdanska, Barbara
    PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2016, 108 : 507 - 518
  • [32] Identification of S-Nitrosylated Targets of Thioredoxin Using a Quantitative Proteomic Approach
    Benhar, Moran
    Thompson, J. Will
    Moseley, M. Arthur
    Stamler, Jonathan S.
    BIOCHEMISTRY, 2010, 49 (32) : 6963 - 6969
  • [33] Assessment of S-nitrosothiols on diaminofluorescein gels
    King, M
    Gildemeister, O
    Gaston, B
    Mannick, JB
    ANALYTICAL BIOCHEMISTRY, 2005, 346 (01) : 69 - 76
  • [34] Proteomic analysis of S-nitrosylated nuclear proteins in rat cortical neurons
    Smith, Jacob G.
    Aldous, Sarah G.
    Andreassi, Catia
    Cuda, Giovanni
    Gaspari, Marco
    Riccio, Antonella
    SCIENCE SIGNALING, 2018, 11 (537)
  • [35] S-Nitrosothiols: chemistry and reactions
    Zhang, Caihong
    Biggs, Tyler D.
    Devarie-Baez, Nelmi O.
    Shuang, Shaomin
    Dong, Chuan
    Xian, Ming
    CHEMICAL COMMUNICATIONS, 2017, 53 (82) : 11266 - 11277
  • [36] A "fluorescence switch" technique increases the sensitivity of proteomic detection and identification of S-nitrosylated proteins
    Tello, Daniel
    Tarin, Carlos
    Ahicart, Patricia
    Breton-Romero, Rosa
    Lamas, Santiago
    Martinez-Ruiz, Antonio
    PROTEOMICS, 2009, 9 (23) : 5359 - 5370
  • [37] The biochemistry and physiology of S-nitrosothiols
    Hogg, N
    ANNUAL REVIEW OF PHARMACOLOGY AND TOXICOLOGY, 2002, 42 : 585 - 600
  • [38] Metalloprotein-dependent decomposition of S-nitrosothiols:: Studies on the stabilization and measurement of S-nitrosothiols in tissues
    Mani, Ali R.
    Ebrahimkhani, Mohammad R.
    Ippolito, Silvia
    Ollosson, Richard
    Moore, Kevin P.
    FREE RADICAL BIOLOGY AND MEDICINE, 2006, 40 (09) : 1654 - 1663
  • [39] Reaction of hydroxyl radicals with S-nitrosothiols: Formation of thiyl radical (RS•) as the intermediate
    Manoj, Veleeparambil M.
    Aravind, Usha K.
    Mohan, Hari
    Aravindakumar, Charuvila T.
    RESEARCH ON CHEMICAL INTERMEDIATES, 2011, 37 (08) : 1113 - 1122
  • [40] Cysteine 343 in the substrate binding domain is the primary S-Nitrosylated site in protein disulfide isomerase
    Ogura, Jiro
    Ruddock, Lloyd W.
    Mano, Nariyasu
    FREE RADICAL BIOLOGY AND MEDICINE, 2020, 160 : 103 - 110