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Nitric oxide inhibition of NaCl secretion in the opercular epithelium of seawater-acclimated killifish, Fundulus heteroclitus
Author(s) -
Lucie Gerber,
Frank B. Jensen,
Steffen S. Madsen,
William S. Marshall
Publication year - 2016
Publication title -
journal of experimental biology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.367
H-Index - 185
eISSN - 1477-9145
pISSN - 0022-0949
DOI - 10.1242/jeb.145045
Subject(s) - killifish , nitric oxide , endogeny , nitric oxide synthase , snap , biochemistry , biology , chemistry , epithelium , arginine , microbiology and biotechnology , biophysics , endocrinology , amino acid , genetics , computer graphics (images) , fishery , fish <actinopterygii> , computer science
Nitric oxide (NO) modulates epithelial ion transport pathways in mammals, but this remains largely unexamined in fish. We explored the involvement of NO in controlling NaCl secretion by the opercular epithelium of seawater killifish using an Ussing chamber approach. Pharmacological agents were used to explore the mechanism(s) triggering NO action. A modified Biotin-switch technique was used to investigate S-nitrosation of proteins. Stimulation of endogenous NO production via the nitric oxide synthase (NOS) substrate l-arginine (2.0 mmol l -1 ), and addition of exogenous NO via the NO donor SNAP (10 -6 o 10 -4  mol l -1 ), decreased the epithelial short-circuit current (I sc ). Inhibition of endogenous NO production by the NOS inhibitor l-NAME (10 -4  mol l -1 ) increased I sc and revealed a tonic control of ion transport by NO in unstimulated opercular epithelia. The NO scavenger PTIO (10 -5  mol l -1 ) supressed the NO-mediated decrease in I sc , and confirmed that the effect observed was elicited by release of NO. The effect of SNAP on I sc was abolished by inhibitors of the soluble guanylyl cyclase (sGC), ODQ (10 -6  mol l -1 ) and Methylene Blue (10 -4  mol l -1 ), revealing NO signalling via the sGC/cGMP pathway. Incubation of opercular epithelium and gill tissues with SNAP (10 -4  mol l -1 ) led to S-nitrosation of proteins, including Na + /K + -ATPase. Blocking of NOS with l-NAME (10 -6  mol l -1 ) or scavenging of NO with PTIO during hypotonic shock suggested an involvement of NO in the hypotonic-mediated decrease in I sc Yohimbine (10 -4  mol l -1 ), an inhibitor of α 2 -adrenoceptors, did not block NO effects, suggesting that NO is not involved in the α-adrenergic control of NaCl secretion.

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