A Perspective for Meniere's Disease: In Silico Investigations of Dexamethasone as a Direct Modulator of AQP2

被引:7
作者
Mom, Robin [1 ]
Robert-Paganin, Julien [2 ]
Mom, Thierry [1 ,3 ,4 ]
Chabbert, Christian [1 ,5 ]
Rety, Stephane [6 ]
Auguin, Daniel [2 ,7 ]
机构
[1] CNRS, Unit GDR2074, Res Grp Vestibular Pathophysiol, F-13331 Marseille, France
[2] Sorbonne Univ, Paris Univ Sci & Lettres, Inst Curie, CNRS UMR144,Struct Motil, F-75005 Paris, France
[3] Hop Gabriel Montpied, Serv ORL & Chirurg Cervicofaciale, F-63003 Clermont Ferrand, France
[4] INSERM, Unite Mixte Rech UMR 1107 Neurodol, F-63003 Clermont Ferrand, France
[5] Aix Marseille Univ, Lab Cognit Neurosci, CNRS,UMR7291, Team Pathophysiol & Therapy Vestibular Disorders, F-13331 Marseille, France
[6] Univ Claude Bernard, Lab Biol & Modelisat Cellule, INSERM U1210, ENS Lyon,CNRS UMR 5239, 46 Allee Italie Site Jacques Monod, F-69007 Lyon, France
[7] Univ Orleans, Lab Biol Ligneux & Grandes Cultures, INRA USC1328, UPRES EA 1207, F-45067 Orleans, France
关键词
human AQP2; dexamethasone; Meniere's disease; water channel; water permeability modulation; molecular dynamics; INNER-EAR; ENDOLYMPHATIC HYDROPS; MAMMALIAN COCHLEA; WATER PERMEATION; AQUAPORIN; EXPRESSION; CHANNEL; RAT; VASOPRESSIN; GLYCEROL;
D O I
10.3390/biom12040511
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
Meniere's disease is a chronic illness characterized by intermittent episodes of vertigo associated with fluctuating sensorineural hearing loss, tinnitus and aural pressure. This pathology strongly correlates with a dilatation of the fluid compartment of the endolymph, so-called hydrops. Dexamethasone is one of the therapeutic approaches recommended when conventional antivertigo treatments have failed. Several mechanisms of actions have been hypothesized for the mode of action of dexamethasone, such as the anti-inflammatory effect or as a regulator of inner ear water homeostasis. However, none of them have been experimentally confirmed so far. Aquaporins (AQPs) are transmembrane water channels and are hence central in the regulation of transcellular water fluxes. In the present study, we investigated the hypothesis that dexamethasone could impact water fluxes in the inner ear by targeting AQP2. We addressed this question through molecular dynamics simulations approaches and managed to demonstrate a direct interaction between AQP2 and dexamethasone and its significant impact on the channel water permeability. Through compartmentalization of sodium and potassium ions, a significant effect of Na+ upon AQP2 water permeability was highlighted as well. The molecular mechanisms involved in dexamethasone binding and in its regulatory action upon AQP2 function are described.
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页数:25
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