Role of the Rhamnosyl Residue of Ouabain in the Activation of the Na,K-ATPase Signaling Function

被引:1
|
作者
Rogachevskii, Ilya V. [1 ]
Samosvat, Dmitriy M. [2 ]
Penniyaynen, Valentina A. [1 ]
Plakhova, Vera B. [1 ]
Podzorova, Svetlana A. [1 ]
Ma, Ke [3 ]
Zegrya, Georgy G. [1 ,2 ]
Krylov, Boris V. [1 ]
机构
[1] Russian Acad Sci, Pavlov Inst Physiol, St Petersburg 199034, Russia
[2] Russian Acad Sci, Ioffe Inst, St Petersburg 194021, Russia
[3] Shanghai Jiao Tong Univ, Xinhua Hosp, Dept Pain Management, Sch Med, Shanghai 200240, Peoples R China
来源
LIFE-BASEL | 2023年 / 13卷 / 07期
关键词
ouabagenin; ouabain; rhamnosyl residue; Na; K-ATPase; Na(V)1; 8; channel; patch-clamp method; organotypic tissue culture method; docking; nociception; analgesics; TRANSDUCING FUNCTION; SODIUM-CHANNELS; SURFACE-CHARGE; MEMBRANE; BINDING; CONDUCTANCE; CURRENTS; ATPASE; LEADS;
D O I
10.3390/life13071500
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Simple Summary Medicinal treatment of chronic pain prompts finding novel approaches to the creation of safe and effective analgesics. Ouabain, a cardiotonic steroid detected in the human organism at extremely low concentrations, has been previously shown by us to switch off the pain signal produced by peripheral neurons. The current manuscript elucidates the mechanism of ouabain binding to its molecular target, the Na,K-ATPase enzyme. Application of very sensitive physiological techniques demonstrated a complete loss of the ouabain effect upon removal of the rhamnosyl residue, a structural element of the ouabain molecule. Theoretical modeling made it possible to determine the contribution of the rhamnosyl residue to the process of ouabain binding with Na,K-ATPase. It was concluded that intermolecular bonds between the rhamnosyl residue of ouabain and Na,K-ATPase amino acid residues identified through modeling are required for the analgesic effect of ouabain to manifest itself. To facilitate creation of fundamentally new safe and effective analgesics, the mechanisms of their binding to the corresponding molecular receptors should be clarified at the atomic level. The signaling or non-pumping Na,K-ATPase function was first observed by us in the nociceptive neuron; Na,K-ATPase transduced the signals from the opioid-like receptors to Na(V)1.8 channels. This study elucidates the role of the rhamnosyl residue of ouabain in the activation of the Na,K-ATPase signaling function. The effects resulting from activation of Na,K-ATPase signaling by the Ca2+ chelate complex of ouabain (EO) are not manifested upon removal of the rhamnosyl residue, as demonstrated in viable cells by the highly sensitive patch-clamp and organotypic cell culture methods. Docking calculations show that the rhamnosyl residue is involved in five intermolecular hydrogen bonds with the Na,K-ATPase & alpha;1-subunit, which are fundamentally important for activation of the Na,K-ATPase signaling function upon EO binding. The main contribution to the energy of EO binding is provided by its steroid core, which forms a number of hydrogen bonds and hydrophobic interactions with Na,K-ATPase that stabilize the ligand-receptor complex. Another critically important role in EO binding is expected to be played by the chelated Ca2+ cation, which should switch on strong intermolecular ionic interactions between the EO molecule and two & alpha;1-Na,K-ATPase amino acid residues, Glu116 and Glu117.
引用
收藏
页数:18
相关论文
共 50 条
  • [1] Signaling function of Na,K-ATPase induced by ouabain against LPS as an inflammation model in hippocampus
    Kinoshita, Paula Fernanda
    Yshii, Lidia Mitiko
    Vasconcelos, Andrea Rodrigues
    Marques Orellana, Ana Maria
    Lima, Larissa de Sa
    Couto Davel, Ana Paula
    Rossoni, Luciana Venturini
    Kawamoto, Elisa Mitiko
    Scavone, Cristoforo
    JOURNAL OF NEUROINFLAMMATION, 2014, 11
  • [2] Stabilisation of Na,K-ATPase structure by the cardiotonic steroid ouabain
    Miles, Andrew J.
    Fedosova, Natalya U.
    Hoffmann, Soren V.
    Wallace, B. A.
    Esmann, Mikael
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2013, 435 (02) : 300 - 305
  • [3] The non-gastric H,K-ATPase as a tool to study the ouabain-binding site in Na,K-ATPase
    De Pont, Jan Joep H. H. M.
    Swarts, Herman G. P.
    Karawajczyk, Anna
    Schaftenaar, Gijs
    Willems, Peter H. G. M.
    Koenderink, Jan B.
    PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY, 2009, 457 (03): : 623 - 634
  • [4] A protein whose binding to Na,K-ATPase is regulated by ouabain
    Dolgova, N. V.
    Kamanina, Yu. V.
    Akimova, O. A.
    Orlov, S. N.
    Rubtsov, A. M.
    Lopina, O. D.
    BIOCHEMISTRY-MOSCOW, 2007, 72 (08) : 863 - 871
  • [5] Ouabain Modulates the Functional Interaction Between Na,K-ATPase and NMDA Receptor
    Akkuratov, Evgeny E.
    Westin, Linda
    Vazquez-Juarez, Erika
    de Marothy, Minttu
    Melnikova, Aleksandra K.
    Blom, Hans
    Lindskog, Maria
    Brismar, Hjalmar
    Aperia, Anita
    MOLECULAR NEUROBIOLOGY, 2020, 57 (10) : 4018 - 4030
  • [6] EFFECT OF PALMITYLCARNITINE ON OUABAIN BINDING TO NA, K-ATPASE
    ADAMS, RJ
    PITTS, BJR
    WOOD, JM
    GENDE, OA
    WALLICK, ET
    SCHWARTZ, A
    JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 1979, 11 (10) : 941 - 959
  • [7] Regulation of Renal Function and Structure by the Signaling Na/K-ATPase
    Xie, Jeffrey X.
    Li, Xin
    Xie, Zijian
    IUBMB LIFE, 2013, 65 (12) : 991 - 998
  • [8] Signaling function of Na,K-ATPase induced by ouabain against LPS as an inflammation model in hippocampus
    Paula Fernanda Kinoshita
    Lidia Mitiko Yshii
    Andrea Rodrigues Vasconcelos
    Ana Maria Marques Orellana
    Larissa de Sá Lima
    Ana Paula Couto Davel
    Luciana Venturini Rossoni
    Elisa Mitiko Kawamoto
    Cristoforo Scavone
    Journal of Neuroinflammation, 11
  • [9] THE NA,K-ATPASE
    SKOU, JC
    ESMANN, M
    JOURNAL OF BIOENERGETICS AND BIOMEMBRANES, 1992, 24 (03) : 249 - 261
  • [10] Cytochrome c and Ouabain Binding Site of Na,K-ATPase
    Chkadua, Gvantsa
    Nozadze, Eka
    Tsakadze, Leila
    Shioshvili, Lia
    Leladze, Marine
    Arutinova, Nana
    Dzneladze, Sopio
    Javakhishvili, Maia
    Jariashvili, Tamar
    CELL BIOCHEMISTRY AND BIOPHYSICS, 2025,