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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Characterization of the adaptor protein ARH expression in the brain and ARH molecular interactions.
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Characterization of the adaptor protein ARH expression in the brain and ARH molecular interactions.

机译:表征衔接蛋白ARH在大脑中的表达以及ARH分子之间的相互作用。

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Previously, pA134 was identified as one of the mRNAs present in the squid giant axon. Comparative sequence analyses revealed that the pA134 gene product manifested significant similarity to the mammalian lipoprotein receptor adaptor protein also known as ARH (autosomal recessive hypercholesterolemia). ARH mRNA and protein displayed very similar pattern of expression throughout the mouse brain. Significant levels of expression were observed in cells with a predominantly neuronal profile in the cerebellum, brainstem, olfactory bulb, hippocampus, and cortex. A yeast two hybrid screen for ARH protein interactions in mouse brain identified the following binders: amyloid precursor-like protein 1, low density lipoprotein receptor-related protein (LRP) 1, LRP8, and GABA receptor-associated protein-like 1. The interactions of ARH with LRP1 and GABA receptor-associated protein-like 1 were subsequently verified by co-immunoprecipitation of the protein complexes from transfected human embryonic kidney cells. The presence of ARH mRNA in axon of primary sympathetic neurons was established by RT-PCR analyses and confirmed by in situ hybridization. Taken together, our data suggest that ARH is a multifunctional protein whose spectrum of function in the brain goes beyond the traditionally known metabolism of lipoproteins, and that ARH may be locally synthesized in the axon.
机译:以前,pA134被鉴定为鱿鱼巨轴突中存在的mRNA之一。比较序列分析显示,pA134基因产物与哺乳动物脂蛋白受体衔接子蛋白(也称为ARH(常染色体隐性高胆固醇血症))表现出显着相似性。 ARH mRNA和蛋白质在整个小鼠脑中显示出非常相似的表达模式。在小脑,脑干,嗅球,海马和皮层中主要具有神经元特征的细胞中观察到显着的表达水平。一项针对小鼠大脑中ARH蛋白相互作用的酵母两个杂种筛选确定了以下结合物:淀粉样前体样蛋白1,低密度脂蛋白受体相关蛋白(LRP)1,LRP8和GABA受体相关蛋白样1。随后通过共免疫沉淀从转染的人胚肾细胞中提取的蛋白质复合物来验证ARH与LRP1和GABA受体相关蛋白样1的结合。通过RT-PCR分析确定原代交感神经元轴突中ARH mRNA的存在,并通过原位杂交证实。综上所述,我们的数据表明ARH是一种多功能蛋白,其在大脑中的功能范围超出了脂蛋白的传统已知代谢,并且ARH可能在轴突中局部合成。

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