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一种在果蝇蘑菇体中优先表达的新型章鱼胺受体。

A novel octopamine receptor with preferential expression in Drosophila mushroom bodies.

作者信息

Han K A, Millar N S, Davis R L

机构信息

Department of Cell Biology, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

J Neurosci. 1998 May 15;18(10):3650-8. doi: 10.1523/JNEUROSCI.18-10-03650.1998.

Abstract

Octopamine is a neuromodulator that mediates diverse physiological processes in invertebrates. In some insects, such as honeybees and fruit flies, octopamine has been shown to be a major stimulator of adenylyl cyclase and to function in associative learning. To identify an octopamine receptor mediating this function in Drosophila, putative biogenic amine receptors were cloned by a novel procedure using PCR and single-strand conformation polymorphism. One new receptor, octopamine receptor in mushroom bodies (OAMB), was identified as an octopamine receptor because human and Drosophila cell lines expressing OAMB showed increased cAMP and intracellular Ca2+ levels after octopamine application. Immunohistochemical analysis using an antibody made to the receptor revealed highly enriched expression in the mushroom body neuropil and the ellipsoid body of central complex, brain areas known to be crucial for olfactory learning and motor control, respectively. The preferential expression of OAMB in mushroom bodies and its capacity to produce cAMP accumulation suggest an important role in synaptic modulation underlying behavioral plasticity.

摘要

章鱼胺是一种神经调质,介导无脊椎动物的多种生理过程。在一些昆虫中,如蜜蜂和果蝇,章鱼胺已被证明是腺苷酸环化酶的主要刺激物,并在联想学习中发挥作用。为了鉴定果蝇中介导此功能的章鱼胺受体,通过使用PCR和单链构象多态性的新方法克隆了假定的生物胺受体。一种新的受体,蘑菇体中的章鱼胺受体(OAMB),被鉴定为章鱼胺受体,因为表达OAMB的人和果蝇细胞系在应用章鱼胺后显示出cAMP和细胞内Ca2+水平升高。使用针对该受体制备的抗体进行的免疫组织化学分析显示,在蘑菇体神经纤维网和中央复合体中的椭球体中高度富集表达,已知这两个脑区分别对嗅觉学习和运动控制至关重要。OAMB在蘑菇体中的优先表达及其产生cAMP积累的能力表明其在行为可塑性潜在的突触调节中起重要作用。

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