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The Dopamine D2 Receptor Gene in Lamprey, Its Expression in the Striatum and Cellular Effects of D2 Receptor Activation

机译:七Lamp鳗中的多巴胺D2受体基因,其在纹状体中的表达和D2受体激活的细胞作用

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摘要

All basal ganglia subnuclei have recently been identified in lampreys, the phylogenetically oldest group of vertebrates. Furthermore, the interconnectivity of these nuclei is similar to mammals and tyrosine hydroxylase-positive (dopaminergic) fibers have been detected within the input layer, the striatum. Striatal processing is critically dependent on the interplay with the dopamine system, and we explore here whether D2 receptors are expressed in the lamprey striatum and their potential role. We have identified a cDNA encoding the dopamine D2 receptor from the lamprey brain and the deduced protein sequence showed close phylogenetic relationship with other vertebrate D2 receptors, and an almost 100% identity within the transmembrane domains containing the amino acids essential for dopamine binding. There was a strong and distinct expression of D2 receptor mRNA in a subpopulation of striatal neurons, and in the same region tyrosine hydroxylase-immunoreactive synaptic terminals were identified at the ultrastructural level. The synaptic incidence of tyrosine hydroxylase-immunoreactive boutons was highest in a region ventrolateral to the compact layer of striatal neurons, a region where most striatal dendrites arborise. Application of a D2 receptor agonist modulates striatal neurons by causing a reduced spike discharge and a diminished post-inhibitory rebound. We conclude that the D2 receptor gene had already evolved in the earliest group of vertebrates, cyclostomes, when they diverged from the main vertebrate line of evolution (560 mya), and that it is expressed in striatum where it exerts similar cellular effects to that in other vertebrates. These results together with our previous published data (Stephenson-Jones et al. 2011, 2012) further emphasize the high degree of conservation of the basal ganglia, also with regard to the indirect loop, and its role as a basic mechanism for action selection in all vertebrates.
机译:最近,在系统发育最古老的脊椎动物七lamp鳗中发现了所有的基底神经节亚核。此外,这些核的互连性类似于哺乳动物,并且在输入层纹状体中检测到酪氨酸羟化酶阳性(多巴胺能)纤维。纹状体加工关键取决于与多巴胺系统的相互作用,我们在这里探讨在七the鳗纹状体中是否表达D2受体及其潜在作用。我们已经确定了从七rey鳗大脑中编码多巴胺D2受体的cDNA,并且推导的蛋白质序列与其他脊椎动物D2受体显示出密切的系统发育关系,并且在跨膜域内几乎具有100%的同一性,其中包含多巴胺结合所必需的氨基酸。在纹状体神经元的亚群中,D2受体mRNA强烈而独特地表达,并且在同一区域,在超微结构水平上鉴定了酪氨酸羟化酶免疫反应性突触末端。酪氨酸羟化酶免疫反应性钮扣的突触发生率在纹状体神经元致密层的腹侧区域最高,该区域多数纹状体树突呈树状。 D2受体激动剂的应用通过引起减少的尖峰放电和抑制后的反弹减少来调节纹状体神经元。我们得出的结论是,当D2受体基因从脊椎动物的主要进化系中分离出来时(560 mya),它已经在最早的脊椎动物环类中进化了,并且它在纹状体中表达,并在细胞纹状体中发挥类似的作用。其他脊椎动物。这些结果与我们先前发表的数据(Stephenson-Jones等人,2011年,2012年)一起进一步强调了基底节的高度保守性,也涉及间接循环及其作为动作选择的基本机制的作用。所有的脊椎动物。

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