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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Calcium receptor-induced serotonin secretion by parafollicular cells: role of phosphatidylinositol 3-kinase-dependent signal transduction pathways.
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Calcium receptor-induced serotonin secretion by parafollicular cells: role of phosphatidylinositol 3-kinase-dependent signal transduction pathways.

机译:滤泡旁细胞钙受体诱导的血清素分泌:磷脂酰肌醇3-激酶依赖性信号转导途径的作用。

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摘要

Elevation of extracellular Ca2+ (increase[Ca2+]e) stimulates the Ca2+ receptor (CaR) to induce secretion of 5-hydroxytryptamine (5-HT) from the calcium-sensing parafollicular (PF) cells. The CaR has been reported to couple to Galpha(q) with subsequent activation of protein kinase C-gamma (PKCgamma). We have identified a parallel transduction pathway in primary cultures of sheep PF cells by using a combinatorial approach in which we expressed adenoviral-encoded dominant-negative signaling proteins and performed in vitro kinase assays. The role of the CaR was established by expression of a dominant-negative CaR that eliminated calcium-induced 5-HT secretion but not secretion in response to KCl or phorbol esters. The calcium-induced secretion was inhibited by a dominant-negative p85 regulatory subunit of phosphatidylinositol 3-kinase (PI3-K). PI3-K activity was also assayed using isoform-specific antibodies. The activity of p85/p110beta (PI3-Kbeta) immunocomplexes was elevated by increase[Ca2+]e and activated by Gbetagamma subunits. In addition, secretion of 5-HT was antagonized by the expression of a minigene encoding a peptide scavenger of Gbetagamma subunits (C-terminal fragment peptide of bovine beta-adrenergic receptor kinase). One target of PI3-K activity is phosphoinositide-dependent kinase-1 (PDK1), which in turn activated PKCzeta. Expression of a dominant-negative PKCzeta in PF cells reduced 5-HT secretion. Together, these observations establish that increase[Ca2+]e evokes 5-HT secretion from PF cells by stimulating both Galpha(q)- and Gbetagamma-signaling pathways downstream of the CaR. The betagamma cascade subsequently activates PI3-Kbeta-dependent signaling that is coupled to PDK1 and the downstream effector PKCzeta, and results in an increase in 5-HT release.
机译:细胞外Ca2 +的升高(增加[Ca2 +] e)刺激Ca2 +受体(CaR)诱导钙敏感的滤泡旁(PF)细胞分泌5-羟色胺(5-HT)。据报道,CaR与Galpha(q)偶联,随后激活蛋白激酶C-γ(PKCgamma)。我们已经通过使用组合方法在绵羊PF细胞的原代培养物中鉴定了平行的转导途径,其中我们表达了腺病毒编码的显性-负性信号蛋白并进行了体外激酶测定。 CaR的作用是通过表达显性阴性CaR来确立的,该显性阴性的CaR消除了钙诱导的5-HT分泌,但不响应于KCl或佛波醇酯而分泌。钙诱导的分泌被磷脂酰肌醇3-激酶(PI3-K)的显性负p85调节亚单位抑制。还使用同工型特异性抗体测定了PI3-K活性。通过增加[Ca2 +] e可以提高p85 / p110beta(PI3-Kbeta)免疫复合物的活性,并由Gbetagamma亚基激活。另外,通过编码Gbetagamma亚基的肽清除剂(牛β-肾上腺素受体激酶的C端片段肽)的小基因的表达来拮抗5-HT的分泌。 PI3-K活性的一个目标是磷酸肌醇依赖性激酶1(PDK1),它进而激活PKCzeta。 PF细胞中显性阴性PKCzeta的表达减少了5-HT的分泌。在一起,这些观察结果表明,通过刺激CaR下游的Galpha(q)-和Gbetagamma信号通路,增加[Ca2 +] e引起PF细胞的5-HT分泌。 betagamma级联随后激活PI3-Kbeta依赖性信号传导,该信号传导与PDK1和下游效应子PKCzeta偶联,并导致5-HT释放增加。

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