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Immunohistochemical demonstration of dopamine receptor D2R in the primary cilia of the mouse pituitary gland

机译:小鼠垂体原发纤毛中多巴胺受体D2R的免疫组织化学证明

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摘要

Dopamine regulates the synthesis and secretion of prolactin and α-MSH/β-endorphin in lactotrophs and melanotrophs, respectively. While a predominant dopamine receptor, D2R, is known to be expressed in both the anterior and intermediate lobes of the pituitary gland, no previous immunohistochemical studies have shown the existence of D2R in the plasma membrane of pituitary endocrine cells. The present study clearly demonstrated a selective localization of the D2R immuno reactivity in primary cilia of lactotrophs and melanotrophs in the mouse adenohypophysis. Another immuno reactivity of D2R was found along the plasma membrane of melanotrophs. The intensity of immunoreactivity for D2R in the primary cilia of lactrotrophs changed during the es-trous cycle and with genital conditions in contrast to a consistent immunolabeling in the melanotrophs. Since there is accumulating evidence that the primary cilium functions as a sensory device at a cellular level, the D2R-expressing primary cilia in the pituitary gland may be involved in the sensation of dopamine and dopaminergic compounds-though their involvement differs between the anterior and intermediate lobes.
机译:多巴胺分别调节催乳素和黑素营养素中催乳素和α-MSH/β-内啡肽的合成和分泌。尽管已知主要的多巴胺受体D2R在垂体的前叶和中间叶中都有表达,但以前的免疫组织化学研究均未显示垂体内分泌细胞质膜中存在D2R。本研究清楚地证明了小鼠腺垂体中乳营养体和黑营养体的原发纤毛中D2R免疫反应的选择性定位。沿黑素细胞的质膜发现了D2R的另一种免疫反应性。与黑变种中一致的免疫标记相反,在雌性变种中,嗜乳菌的初级纤毛中D2R的免疫反应强度发生了变化。由于有越来越多的证据表明初级纤毛在细胞水平上起着感觉装置的作用,因此垂体中表达D2R的初级纤毛可能参与了多巴胺和多巴胺能化合物的感觉,尽管它们的参与在前,中间之间有所不同裂片。

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