Please use this identifier to cite or link to this item: https://doi.org/10.14814/phy2.13209
Title: Light-dependent expression of a Na+/H+ exchanger 3-like transporter in the ctenidium of the giant clam, Tridacna squamosa, can be related to increased H+ excretion during light-enhanced calcification
Authors: Jia, Q
Ng, Q
Chin, W
Technology and Research (A STAR), Singapore
Meng, T
Chow, V.T.K 
Wang, C.-I
Technology and Research (A STAR), Singapore
Kwang, J 
He, F
Hiong, K.C 
Cao-Pham, A.H 
Choo, C.Y.L 
Boo, M.V 
Wong, W.P 
Chew, S.F
Ip, Y.K 
Keywords: sodium proton exchange protein 3
hydrogen
messenger RNA
sodium proton exchange protein 3
acid base balance
adult
amino acid sequence
animal experiment
animal tissue
apical membrane
Article
calcification
cell pH
clam
competitive binding assay
controlled study
DNA sequence
epifluorescence microscopy
epithelium cell
gene expression
giant clam
immunoblotting
immunofluorescence microscopy
immunofluorescence test
mRNA expression assay
nonhuman
nucleotide sequence
phylogeny
protein determination
protein expression
real time polymerase chain reaction
RNA extraction
sodium transport
Tridacna squamosa
animal
animal shell
bivalve
bone mineralization
genetics
metabolism
radiation response
sunlight
Animal Shells
Animals
Bivalvia
Calcification, Physiologic
Epithelial Cells
Hydrogen
RNA, Messenger
Sodium-Hydrogen Exchanger 3
Sunlight
Issue Date: 2017
Citation: Jia, Q, Ng, Q, Chin, W, Technology and Research (A STAR), Singapore, Meng, T, Chow, V.T.K, Wang, C.-I, Technology and Research (A STAR), Singapore, Kwang, J, He, F, Hiong, K.C, Cao-Pham, A.H, Choo, C.Y.L, Boo, M.V, Wong, W.P, Chew, S.F, Ip, Y.K (2017). Light-dependent expression of a Na+/H+ exchanger 3-like transporter in the ctenidium of the giant clam, Tridacna squamosa, can be related to increased H+ excretion during light-enhanced calcification. Physiological Reports 5 (8) : e13209. ScholarBank@NUS Repository. https://doi.org/10.14814/phy2.13209
Abstract: Na+/H+ exchangers (NHEs) regulate intracellular pH and ionic balance by mediating H+ efflux in exchange for Na+ uptake in a 1:1 stoichiometry. This study aimed to obtain from the ctenidium of the giant clam Tridacna squamosa (TS) the complete cDNA sequence of a NHE3-like transporter (TSNHE3), and to determine the effect of light exposure on its mRNA expression level and protein abundance therein. The coding sequence of TSNHE3 comprised 2886 bp, encoding 961 amino acids with an estimated molecular mass of 105.7 kDa. Immunofluorescence microscopy revealed that TSNHE3 was localized to the apical membrane of epithelial cells of the ctenidial filaments and the tertiary water channels. Particularly, the apical immunofluorescence of the ctenidial filaments was consistently stronger in the ctenidium of clams exposed to 12 h of light than those of the control kept in darkness. Indeed, light induced significant increases in the transcript level and protein abundance of TSNHE3/TSNHE3 in the ctenidium, indicating that the transcription and translation of TSNHE3/TSNHE3 were light-dependent. As light-enhanced calcification generates H+, the increased expression of TSNHE3/TSNHE3 in the ctenidium could be a response to augment H+ excretion in pursuance of whole-body acid-base balance during light exposure. These results signify that shell formation in giant clams requires the collaboration between the ctenidium, which is a respiratory and iono-regulatory organ, and the inner mantle, which is directly involved in the calcification process, and provide new insights into the mechanisms of light-enhanced calcification in giant clams. © 2017 The Authors. Physiological Reports published by Wiley Periodicals, Inc. on behalf of The Physiological Society and the American Physiological Society.
Source Title: Physiological Reports
URI: https://scholarbank.nus.edu.sg/handle/10635/175216
ISSN: 2051817X
DOI: 10.14814/phy2.13209
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