Zhao Wei-Jiang
Center for Neuroscience, Shantou University Medical College, Shantou, People's Republic of China.
Int J Endocrinol Metab. 2013 Summer;11(3):162-6. doi: 10.5812/ijem.9871. Epub 2013 Jul 1.
Although Neuregulin-1 (Nrg1)and its receptors have been indicated at the mRNA level in partial human endocrine organs and its functional roles have been evaluated in vitro, their morphological distribution in higher animals are not fully studied. The present research focused on expression of Nrg1 and its main receptors ErbB2 and ErbB4 in main endocrine organs of the rhesus monkey.
The morphological expression of Nrg1 and its receptors ErbB2 and ErbB4 as well as their potential co-localization were determined by double immunofluorescence in the pituitary, thyroid, parathyroid, pancreas and adrenal gland sample tissues. The expression level of Nrg1 on each sample was indexed by the fold of integrative fluorescence intensity (IFI) relative to that of one cortical tissue.
Differential expression of Nrg1 and their cognate receptors ErbB2 and ErbB4 were found selectively expressed in endocrine organs we tested, with higher expression levels detected in the adrenal gland (AG) and pancreas. Co-localization of Nrg1 with either ErbB2 or ErbB4 was detected in AG, thyroid and parathyroid gland, and Nrg1 was only co-localized with ErbB4 in the islet cells of the pancreas. In the pituitary, adjacent localization of Nrg1 positive cells with ErbB4 positive cells were observed.
This investigation morphologically profiles the differential expression of Nrg1 and its receptors ErbB2 and ErbB4 in the main endocrine organ structures, suggesting an autocrine or paracrine-directed Nrg1-ErbB signaling pathway in some of these structures.
尽管在部分人类内分泌器官的mRNA水平上已表明神经调节蛋白1(Nrg1)及其受体,并且已在体外评估了它们的功能作用,但它们在高等动物中的形态分布尚未得到充分研究。本研究聚焦于Nrg1及其主要受体ErbB2和ErbB4在恒河猴主要内分泌器官中的表达。
通过双重免疫荧光法测定垂体、甲状腺、甲状旁腺、胰腺和肾上腺样本组织中Nrg1及其受体ErbB2和ErbB4的形态学表达以及它们潜在的共定位情况。每个样本上Nrg1的表达水平通过整合荧光强度(IFI)相对于一个皮质组织的倍数来进行指数化。
在我们检测的内分泌器官中发现Nrg1及其同源受体ErbB2和ErbB4存在差异表达,在肾上腺(AG)和胰腺中检测到较高的表达水平。在肾上腺、甲状腺和甲状旁腺中检测到Nrg1与ErbB2或ErbB4的共定位,并且在胰腺的胰岛细胞中Nrg1仅与ErbB4共定位。在垂体中,观察到Nrg1阳性细胞与ErbB4阳性细胞相邻定位。
本研究从形态学上描绘了Nrg1及其受体ErbB2和ErbB4在主要内分泌器官结构中的差异表达,提示在其中一些结构中存在自分泌或旁分泌导向的Nrg1-ErbB信号通路。