A role for tight junction-associated MARVEL proteins in larval sea lamprey ( Petromyzon marinus ) osmoregulation

This study reports on tight junction-associated MARVEL proteins of larval sea lamprey ( ) and their potential role in ammocoete osmoregulation. Two occludin isoforms (designated Ocln and Ocln-a) and a tricellulin (Tric) were identified. Transcripts encoding , and were broadly expressed in larval lam...

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Veröffentlicht in:Journal of experimental biology 2017-10, Vol.220 (Pt 20), p.3657-3670
Hauptverfasser: Kolosov, Dennis, Bui, Phuong, Donini, Andrew, Wilkie, Mike P, Kelly, Scott P
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Sprache:eng
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Zusammenfassung:This study reports on tight junction-associated MARVEL proteins of larval sea lamprey ( ) and their potential role in ammocoete osmoregulation. Two occludin isoforms (designated Ocln and Ocln-a) and a tricellulin (Tric) were identified. Transcripts encoding , and were broadly expressed in larval lamprey, with the greatest abundance of in the gut, liver and kidney, in the gill and skin, and in the kidney. Ocln and Ocln-a resolved as ∼63 kDa and ∼35 kDa MW proteins, respectively, while Tric resolved as a ∼50 kDa protein. Ocln immunolocalized to the gill vasculature and in gill mucous cells while Ocln-a localized to the gill pouch and gill epithelium. Both Ocln and Ocln-a localized in the nephron, the epidermis and the luminal side of the gut. In branchial tissue, Tric exhibited punctate localization, consistent with its presence at regions of tricellular contact. Following ion-poor water (IPW) acclimation of ammocoetes, serum [Na ] and [Cl ] decreased, but not [Ca ], and carcass moisture content increased. In association, Ocln abundance increased in the skin and kidney, but reduced in the gill of IPW-acclimated ammocoetes while Ocln-a abundance reduced in the kidney only. Tric abundance increased in the gill. Region-specific alterations in , and mRNA abundance were also observed in the gut. Data support a role for Ocln, Ocln-a and Tric in the osmoregulatory strategies of a basal vertebrate.
ISSN:0022-0949
1477-9145
DOI:10.1242/jeb.161562