Aquaporins (AQPs) facilitate transmembrane water and solute transport, and in addition to contributing to transepithelial water transport, they safeguard cell volume homeostasis. This study examined the expression and localization of AQP1 and AQP3 in the gills of Japanese medaka (Oryzias latipes) in response to osmotic challenges and osmoregulatory hormones, cortisol, and prolactin (PRL). AQP3 mRNA was inversely regulated in response to salinity with high levels in ion-poor water (IPW), intermediate levels in freshwater (FW), and low levels in seawater (SW). AQP3 protein levels decreased upon SW acclimation. By comparison, AQP1 expression was unaffected by salinity. In ex vivo gill incubation experiments, AQP3 mRNA was stimulated by PRL in ...
The present study aimed to evaluate the osmoregulatory mechanism of Daisy's medaka, O. woworae,as we...
FXYD proteins are novel regulators of Na(+)-K(+)-ATPase (NKA). In fish subjected to salinity challen...
FXYD proteins are novel regulators of Na+-K+-ATPase (NKA). In fish subjected to salinity challenges,...
Euryhaline fish possess the ability to compensate for environmental salinity changes through hydro-m...
The aquaporin isoform, AQP3 has now been identified in a number of different teleost fish species, w...
Previous studies in eel (Anguilla anguilla) gill have shown that the expression of the aquaporin 3 (...
The aquaporin isoform, AQP3 has now been identified in a number of different teleost fish species, w...
This study aimed to investigate the effects of chronic salinity acclimation, abrupt salinity transfe...
Japanese medaka (Oryzais latipes) are euryhaline fish, meaning they are capable of surviving in a va...
Aquaporins (AQPs) play crucial roles in osmoregulation, but the knowledge about the functions of AQP...
Previous studies in eel (Anguilla anguilla) gill have shown that the expression of the aquaporin 3 (...
<div><p>FXYD proteins are novel regulators of Na<sup>+</sup>-K<sup>+</sup>-ATPase (NKA). In fish sub...
Background information. The European eel (Anguilla anguilla) is able to osmoregulate over a wide ran...
The successful establishment of a species in a given habitat depends on the ability of each of its d...
<div><p>FXYD proteins are the regulators of sodium-potassium ATPase (Na<sup>+</sup>/K<sup>+</sup>-AT...
The present study aimed to evaluate the osmoregulatory mechanism of Daisy's medaka, O. woworae,as we...
FXYD proteins are novel regulators of Na(+)-K(+)-ATPase (NKA). In fish subjected to salinity challen...
FXYD proteins are novel regulators of Na+-K+-ATPase (NKA). In fish subjected to salinity challenges,...
Euryhaline fish possess the ability to compensate for environmental salinity changes through hydro-m...
The aquaporin isoform, AQP3 has now been identified in a number of different teleost fish species, w...
Previous studies in eel (Anguilla anguilla) gill have shown that the expression of the aquaporin 3 (...
The aquaporin isoform, AQP3 has now been identified in a number of different teleost fish species, w...
This study aimed to investigate the effects of chronic salinity acclimation, abrupt salinity transfe...
Japanese medaka (Oryzais latipes) are euryhaline fish, meaning they are capable of surviving in a va...
Aquaporins (AQPs) play crucial roles in osmoregulation, but the knowledge about the functions of AQP...
Previous studies in eel (Anguilla anguilla) gill have shown that the expression of the aquaporin 3 (...
<div><p>FXYD proteins are novel regulators of Na<sup>+</sup>-K<sup>+</sup>-ATPase (NKA). In fish sub...
Background information. The European eel (Anguilla anguilla) is able to osmoregulate over a wide ran...
The successful establishment of a species in a given habitat depends on the ability of each of its d...
<div><p>FXYD proteins are the regulators of sodium-potassium ATPase (Na<sup>+</sup>/K<sup>+</sup>-AT...
The present study aimed to evaluate the osmoregulatory mechanism of Daisy's medaka, O. woworae,as we...
FXYD proteins are novel regulators of Na(+)-K(+)-ATPase (NKA). In fish subjected to salinity challen...
FXYD proteins are novel regulators of Na+-K+-ATPase (NKA). In fish subjected to salinity challenges,...