Literature DB >> 16181689

Calcium mobilization from fish scales is mediated by parathyroid hormone related protein via the parathyroid hormone type 1 receptor.

J Rotllant1, B Redruello, P M Guerreiro, H Fernandes, A V M Canario, D M Power.   

Abstract

The scales of bony fish represent a significant reservoir of calcium but little is known about their contribution, as well as of bone, to calcium balance and how calcium deposition and mobilization are regulated in calcified tissues. In the present study we report the action of parathyroid hormone-related protein (PTHrP) on calcium mobilization from sea bream (Sparus auratus) scales in an in vitro bioassay. Ligand binding studies of piscine 125I-(1-35(tyr))PTHrP to the membrane fraction of isolated sea bream scales revealed the existence of a single PTH receptor (PTHR) type. RT-PCR of fish scale cDNA using specific primers for two receptor types found in teleosts, PTH1R, and PTH3R, showed expression only of PTH1R. The signalling mechanisms mediating binding of the N-terminal amino acid region of PTHrP were investigated. A synthetic peptide (10(-8) M) based on the N-terminal 1-34 amino acid residues of Fugu rubripes PTHrP strongly stimulated cAMP synthesis and [3H]myo-inositol incorporation in sea bream scales. However, peptides (10(-8) M) with N-terminal deletions, such as (2-34), (3-34) and (7-34)PTHrP, were defective in stimulating cAMP production but stimulated [3H]myo-inositol incorporation. (1-34)PTHrP induced significant osteoclastic activity in scale tissue as indicated by its stimulation of tartrate-resistant acid phosphatase. In contrast, (7-34)PTHrP failed to stimulate the activity of this enzyme. This activity could also be abolished by the adenylyl cyclase inhibitor SQ-22536, but not by the phospholipase C inhibitor U-73122. The results of the study indicate that one mechanism through which N-terminal (1-34)PTHrP stimulates osteoclastic activity of sea bream scales, is through PTH1R and via the cAMP/AC intracellular signalling pathway. It appears, therefore, that fish scales can act as calcium stores and that (1-34)PTHrP regulates calcium mobilization from them; it remains to be established if this mechanism contributes to calcium homeostasis in vivo.

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Year:  2005        PMID: 16181689     DOI: 10.1016/j.regpep.2005.08.004

Source DB:  PubMed          Journal:  Regul Pept        ISSN: 0167-0115


  15 in total

1.  Pth4, an ancient parathyroid hormone lost in eutherian mammals, reveals a new brain-to-bone signaling pathway.

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2.  Proteomic approach to skin regeneration in a marine teleost: modulation by oestradiol-17β.

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3.  Dynamics of scale regeneration in seawater- and brackish water-acclimated sea bass, Dicentrarchus labrax.

Authors:  Pedro M Guerreiro; Rita Costa; Deborah M Power
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4.  Functional characterization and evolution of PTH/PTHrP receptors: insights from the chicken.

Authors:  Pedro L C Pinheiro; João C R Cardoso; Deborah M Power; Adelino V M Canário
Journal:  BMC Evol Biol       Date:  2012-07-06       Impact factor: 3.260

5.  Gene structure, transcripts and calciotropic effects of the PTH family of peptides in Xenopus and chicken.

Authors:  Pedro L C Pinheiro; João C R Cardoso; Ana S Gomes; Juan Fuentes; Deborah M Power; Adelino V M Canário
Journal:  BMC Evol Biol       Date:  2010-12-01       Impact factor: 3.260

6.  Skin healing and scale regeneration in fed and unfed sea bream, Sparus auratus.

Authors:  Florbela A Vieira; Silvia F Gregório; Serena Ferraresso; Michael A S Thorne; Rita Costa; Massimo Milan; Luca Bargelloni; Melody S Clark; Adelino V M Canario; Deborah M Power
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7.  Characterization of stanniocalcin-1 receptors in the rainbow trout.

Authors:  Timothy D J Richards; Amanda L Fenton; Rahma Syed; Graham F Wagner
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8.  Phenotypic stability in scalar calcium of freshwater fish across a wide range of aqueous calcium availability in nature.

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9.  Arachidonic acid enhances turnover of the dermal skeleton: studies on zebrafish scales.

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Journal:  PLoS One       Date:  2014-02-19       Impact factor: 3.240

Review 10.  Effects of estrogens and estrogenic disrupting compounds on fish mineralized tissues.

Authors:  Patricia I S Pinto; Maria D Estêvão; Deborah M Power
Journal:  Mar Drugs       Date:  2014-08-15       Impact factor: 5.118

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