首页> 外文期刊>Neuropeptides: An International Journal >Corticotropin-releasing factor binding protein enters the regulated secretory pathway in neuroendocrine cells and cortical neurons.
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Corticotropin-releasing factor binding protein enters the regulated secretory pathway in neuroendocrine cells and cortical neurons.

机译:促肾上腺皮质激素释放因子结合蛋白进入神经内分泌细胞和皮质神经元的调节分泌途径。

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Corticotropin releasing factor binding protein (CRF-BP) is a 37kDa glycoprotein that binds CRF with high affinity. CRF-BP controls CRF levels within plasma during human pregnancy. It has also been shown that CRF-BP is expressed in various brain nuclei. Main actions that have been proposed for brain CRF-BP are either decreasing available CRF or facilitating CRF ligand-induced activation of CRF-R2 receptors. For both actions, it is necessary the release of CRF-BP from CRF-BP expressing neurons. However, the secretion mode of CRF-BP is currently unknown. We used heterologous expression of CRF-BP-Flag in PC12 cells and in primary culture of rat cortical neurons to study CRF-BP secretion mode. We observed that CRF-BP-Flag immunoreactivity presents the typical cytoplasmatic punctuate pattern that has been described for neuropeptides and proteins that enter the regulated secretory pathway in PC12 cells. Quantitative analysis of double immunofluorescence confocal images showed that CRF-BP-Flag colocalizes with secretogranin II, marker of secretory granules, both in PC12 and in primary-cultured rat neurons. Furthermore, CRF-BP-Flag is released from PC12 cells upon high K(+)-depolarization. Thus, our results show that CRF-BP is efficiently sorted to the regulated secretory pathway in two cellular contexts, suggesting that the extracellular levels of CRF-BP in the central nervous system depends on neuronal activity.
机译:促肾上腺皮质激素释放因子结合蛋白(CRF-BP)是一种37kDa糖蛋白,可以高亲和力结合CRF。 CRF-BP控制人类妊娠期间血浆内的CRF水平。还已经证明CRF-BP在各种脑核中表达。已提出的针对脑CRF-BP的主要作用是降低可用CRF或促进CRF配体诱导的CRF-R2受体激活。对于这两种作用,必须从表达CRF-BP的神经元释放CRF-BP。但是,目前尚不知道CRF-BP的分泌模式。我们使用CRF-BP-Flag在PC12细胞和大鼠皮质神经元的原代培养物中的异源表达来研究CRF-BP的分泌模式。我们观察到,CRF-BP-Flag免疫反应性代表了典型的细胞质点样模式,该模式已被描述为进入PC12细胞中调节分泌途径的神经肽和蛋白质。双重免疫荧光共聚焦图像的定量分析表明,CRF-BP-Flag与PC12和原代培养的大鼠神经元中分泌颗粒标记物促分泌素II共定位。此外,CRF-BP-Flag在高K(+)去极化后从PC12细胞释放。因此,我们的研究结果表明,CRF-BP在两种细胞环境中均能有效地归类到调节的分泌途径,这表明中枢神经系统中CRF-BP的细胞外水平取决于神经元的活动。

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