Isotocin controls ion regulation through regulating ionocyte progenitor differentiation and proliferation
The present study using zebrafish as a model explores the role of isotocin, a homolog of oxytocin, in controlling ion regulatory mechanisms. Double-deionized water treatment for 24 h significantly stimulated isotocin mRNA expression in zebrafish embryos. Whole-body Cl − , Ca 2+ , and Na + contents,...
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Veröffentlicht in: | Cellular and molecular life sciences : CMLS 2011-08, Vol.68 (16), p.2797-2809 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The present study using zebrafish as a model explores the role of isotocin, a homolog of oxytocin, in controlling ion regulatory mechanisms. Double-deionized water treatment for 24 h significantly stimulated isotocin mRNA expression in zebrafish embryos. Whole-body Cl
−
, Ca
2+
, and Na
+
contents, mRNA expressions of ion transporters and ionocyte-differentiation related transcription factors, and the number of skin ionocytes decreased in isotocin morphants. In contrast, overexpression of isotocin caused an increase in ionocyte numbers. Isotocin morpholino caused significant suppression of
foxi3a
mRNA expression, while isotocin cRNA stimulated
foxi3a
mRNA expressions at the tail-bud stage of zebrafish embryos. The density of P63 (an epidermal stem cell marker)-positive cells was downregulated by isotocin morpholinos and was upregulated by isotocin cRNA. Taken together, isotocin stimulates the proliferation of epidermal stem cells and differentiation of ionocyte progenitors by regulating the P63 and Foxi3a transcription factors, consequently enhancing the functional activities of ionocytes. |
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ISSN: | 1420-682X 1420-9071 |
DOI: | 10.1007/s00018-010-0593-2 |