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The beta 2-adrenergic receptor as a surrogate odorant receptor in mouse olfactory sensory neurons

机译:β2肾上腺素能受体作为小鼠嗅觉感觉神经元中的替代气味受体

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摘要

In the mouse, mature olfactory sensory neurons (OSNs) express one allele of one of the similar to 1200 odorant receptor (OR) genes, which encode G-protein coupled receptors (GPCRs). Axons of OSNs that express the same OR coalesce into homogeneous glomeruli at conserved positions in the olfactory bulb. ORs are involved in OR gene choice and OSN axonal wiring, but the mechanisms remain poorly understood. One approach is to substitute an OR genetically with another GPCR, and to determine in which aspects this GPCR can serve as a surrogate OR under experimental conditions. Here, we characterize a novel gene-targeted mouse strain in which the mouse beta 2-adrenergic receptor (beta 2AR) is coexpressed with tauGFP in OSNs that choose the OR locus M71 for expression (beta 2AR -> M71-GFP). By crossing these mice with beta 2AR -> M71-lacZ gene-targeted mice, we find that differentially tagged beta 2AR -> M71 alleles are expressed monoallelically. The OR coding sequence is thus not required for monoallelic expression - the expression of one of the two alleles of a given OR gene in an OSN. We detect strong (beta 2AR immunoreactivity in dendritic cilia of (beta 2AR -> M71-GFP OSNs. These OSNs respond to the beta 2AR agonist isoproterenol in a dose-dependent manner. Axons of beta 2AR -> M71-GFP OSNs coalesce into homogeneous glomeruli, and beta 2AR immunoreactivity is detectable within these glomeruli. We do not find evidence for expression of endogenous beta 2AR in OSNs of wild-type mice, also not in M71-expressing OSNs, and we do not observe overt differences in the olfactory system of beta 2AR and beta 1AR knockout mice. Our findings corroborate the experimental value of the beta 2AR as a surrogate OR, including for the study of the mechanisms of monoallelic expression. (C) 2013 Elsevier Inc All rights reserved.
机译:在小鼠中,成熟的嗅觉感觉神经元(OSN)表达与1200气味受体(OR)基因相似的一个等位基因,该基因编码G蛋白偶联受体(GPCR)。表达相同OR的OSN轴突在嗅球中的保守位置合并为均匀的肾小球。 ORs参与OR基因选择和OSN轴突连接,但其机理仍知之甚少。一种方法是用另一种GPCR遗传取代OR,并确定该GPCR在实验条件下可在哪些方面用作替代OR。在这里,我们表征了一种新型的基因靶向小鼠品系,其中小鼠β2-肾上腺素受体(β2AR)与tauGFP在OSN中共表达,后者选择OR基因座M71进行表达(β2AR-> M71-GFP)。通过将这些小鼠与beta 2AR-> M71-lacZ基因靶向小鼠杂交,我们发现差异标记的beta 2AR-> M71等位基因是单等位表达的。因此,单等位基因表达不需要OS编码序列-OSN中给定OR基因的两个等位基因之一的表达。我们在(β2AR-> M71-GFP OSNs的树突状纤毛中检测到较强的(β2AR免疫反应性。这些OSNs以剂量依赖的方式对β2AR激动剂异丙肾上腺素作出反应。肾小球,并且在这些肾小球中都可以检测到β2AR的免疫反应性,我们没有找到证据证明野生型小鼠的OSNs,也没有表达M71的OSNs中内源性β2AR的表达,也没有观察到嗅觉系统的明显差异β2AR和β1AR基因敲除小鼠的研究结果证实了β2AR作为替代OR的实验价值,包括对单等位基因表达机制的研究(C)2013 Elsevier Inc保留所有权利。

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