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探讨神经解剖学在葡萄糖感应和营养信号调节中的作用:糖尿病基因 Tcf7l2 在发育中鼠脑的免疫表型定位。

Review of the neuroanatomic landscape implicated in glucose sensing and regulation of nutrient signaling: immunophenotypic localization of diabetes gene Tcf7l2 in the developing murine brain.

机构信息

Department of Medicine, University of Minnesota, Minneapolis, MN 55455, USA.

出版信息

J Chem Neuroanat. 2012 Oct;45(1-2):1-17. doi: 10.1016/j.jchemneu.2012.06.002. Epub 2012 Jul 13.

Abstract

Genetic variants in the transcription factor 7-like 2(Tcf7l2) gene have been found to confer a significant risk of type 2 diabetes and attenuated insulin secretion. Based on its genomic wide association Tcf7l2 is considered the single most important predictor of diabetes to date. Previous studies of Tcf7l2 mRNA localization in the adult brain suggest a putative role of Tcf7l2 in the CNS regulation of energy homeostasis. The present study further characterizes the immunophenotypic distribution of peptide expression in the brains of Tcf7l2 progeny during developmental time periods between E12.5 and P1. Tcf7l2(-/-) is lethal beyond P1. Results show that while negligible TCF7L2 expression is found in the developing brains of Tcf7l2(-/-)mice, TCF7L2 protein is relatively widespread and robustly expressed in the brain by E18.5 and exhibits specific expression within neuronal populations and regions of the brain in Tcf7l2(+/-) and Tcf7l2(+/+) progeny. Strong immunophenotypic labeling was found in the diencephalic structure of the thalamus that suggests a role of Tcf7l2 in the development and maintenance of thalamic activity. Strongly expressed TCF7L2 was localized in select hypothalamic and preoptic nuclei indicative of Tcf7l2 function within neurons controlling energy balance. Definitive neuronal staining for TCF7L2 within nuclei of the brain stem and circumventricular organs extends TCF7L2 localization within autonomic neurons and its potential integration with autonomic function. In addition robust TCF7L2 expression was found in the tectal and tegmental structures of the superior and inferior colliculi as well as transient expression in neuroepithelium of the cerebral and hippocampal cortices of E16 and E18.5. Patterns of TCF7L2 peptide localization when compared to the adult protein synthetic chemical/anatomical landscape of glucose sensing exhibit a good correlational fit between its expression and regions, nuclei, and pathways regulating energy homeostasis via integration and response to peripheral endocrine, metabolic and neuronal signaling. TCF was also found co-localized with peptides that regulate energy homeostasis including AgRP, POMC and NPY. TCF7l2, some variants of which have been shown to impair GLP-1-induced insulin secretion, was also found co-localize with GLP-1 in adult TCF wild type progeny. Impaired Tcf7l2-mediated neural regulation may contribute to the risk and/or underlying pathophysiology of type 2 diabetes that has found high expression in genomic studies of Tcf7l2 variants.

摘要

转录因子 7 样 2(Tcf7l2)基因中的遗传变异被发现与 2 型糖尿病的显著风险和胰岛素分泌减弱有关。基于其全基因组关联,Tcf7l2 被认为是迄今为止糖尿病最重要的单一预测因子。先前关于 Tcf7l2 mRNA 在成年大脑中的定位的研究表明,Tcf7l2 可能在 CNS 对能量平衡的调节中发挥作用。本研究进一步描述了 Tcf7l2 后代在 E12.5 至 P1 之间的发育时间段内脑肽表达的免疫表型分布。Tcf7l2(-/-)在 P1 后是致命的。结果表明,虽然在 Tcf7l2(-/-)小鼠的发育大脑中几乎检测不到 TCF7L2 表达,但 TCF7L2 蛋白在 E18.5 时在大脑中广泛且强烈表达,并在 Tcf7l2(+/-)和 Tcf7l2(+/+)后代的神经元群体和脑区中具有特定表达。在丘脑的神经结构中发现了强烈的免疫表型标记,这表明 Tcf7l2 在丘脑活动的发育和维持中发挥作用。强烈表达的 TCF7L2 定位于下丘脑和视前核等特定核内,表明 Tcf7l2 在前馈神经元中控制能量平衡的功能。脑干和室周器官的脑干细胞核内明确的 TCF7L2 神经元染色将 TCF7L2 定位扩展到自主神经元中,并使其与自主功能整合。此外,在 E16 和 E18.5 的大脑皮质和海马皮质的神经上皮中还发现了 TCF7L2 的强表达。当与葡萄糖感应的成年蛋白合成化学/解剖景观进行比较时,TCF7L2 肽的定位模式与其表达和调节能量平衡的区域、核和通路之间存在很好的相关性,通过整合和对外周内分泌、代谢和神经元信号的反应来调节能量平衡。还发现 TCF 与调节能量平衡的肽(如 AgRP、POMC 和 NPY)共定位。一些变体已被证明会损害 GLP-1 诱导的胰岛素分泌的 Tcf7l2 也与成年 TCF 野生型后代中的 GLP-1 共定位。Tcf7l2 介导的神经调节受损可能导致 2 型糖尿病的风险和/或潜在病理生理学,在 Tcf7l2 变体的全基因组研究中发现其高表达。

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