首页> 外文期刊>Regulatory peptides. >Calcium mobilization from fish scales is mediated by parathyroid hormone related protein via the parathyroid hormone type 1 receptor.
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Calcium mobilization from fish scales is mediated by parathyroid hormone related protein via the parathyroid hormone type 1 receptor.

机译:鱼鳞中的钙动员由甲状旁腺激素相关蛋白通过甲状旁腺激素1型受体介导。

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摘要

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.
机译:骨鳞鱼代表钙的重要储量,但对钙以及钙对钙平衡的贡献以及钙化组织中钙沉积和动员的调控方式知之甚少。在本研究中,我们在体外生物测定中报告了甲状旁腺激素相关蛋白(PTHrP)对海鲷(Sparus auratus)鳞片中钙动员的作用。鱼类125I-(1-35(tyr))PTHrP与分离的鲷鱼鳞片的膜部分的配体结合研究表明存在单个PTH受体(PTHR)类型。鱼鳞cDNA的RT-PCR使用在硬骨鱼中发现的两种受体类型PTH1R和PTH3R的特异性引物显示,仅表达PTH1R。研究了介导PTHrP N末端氨基酸区域结合的信号传导机制。一种基于河豚鱼PTHrP N-末端1-34个氨基酸残基的合成肽(10(-8)M)在海鲷鳞片中强烈刺激了cAMP的合成和[3H]-肌醇的掺入。但是,具有N末端缺失的肽(10(-8)M),例如(2-34),(3-34)和(7-34)PTHrP,在刺激cAMP产生方面存在缺陷,但会刺激[3H] myo -肌醇掺入。 (1-34)PTHrP刺激了酒石酸盐抗性酸性磷酸酶,提示其在鳞片组织中具有明显的破骨活性。相反,(7-34)PTHrP未能刺激该酶的活性。该活性也可以被腺苷酸环化酶抑制剂SQ-22536消除,但不能被磷脂酶C抑制剂U-73122消除。研究结果表明,N末端(1-34)PTHrP刺激鲷鱼鳞屑的破骨细胞活性的一种机制是通过PTH1R和通过cAMP / AC细胞内信号传导途径。因此,鱼鳞似乎可以充当钙的贮藏物,(1-34)PTHrP可以调节鱼的钙动员。这种机制是否有助于体内钙稳态,还有待确定。

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