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Postnatal isoform switch and protein localization of LEF1 and TCF7L2 transcription factors in cortical thalamic and mesencephalic regions of the adult mouse brain

机译:成年小鼠大脑皮层丘脑和中脑区域的LEF1和TCF7L2转录因子的产后亚型转换和蛋白质定位

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摘要

β-Catenin signaling, leading to the activation of lymphoid enhancer-binding factor 1/T cell factor (LEF1/TCF) transcription factors, plays a well-established role in transcription regulation during development and tissue homeostasis. In the adult organism, the activity of this pathway has been found in stem cell niches and postmitotic thalamic neurons. Recently, studies show that mutations in components of β-catenin signaling networks have been associated with several psychiatric disorders, indicating the involvement of β-catenin and LEF1/TCF proteins in the proper functioning of the brain. Here, we report a comprehensive analysis of LEF1/TCF protein localization and the expression profile of their isoforms in cortical, thalamic, and midbrain regions in mice. We detected LEF1 and TCF7L2 proteins in neurons of the thalamus and dorsal midbrain, i.e., subcortical regions specialized in the integration of diverse sources of sensory information. These neurons also exhibited nuclear localization of β-catenin, suggesting the involvement of β-catenin/LEF1/TCF7L2 in the regulation of gene expression in these regions. Analysis of alternative splicing and promoter usage identified brain-specific TCF7L2 isoforms and revealed a developmentally coordinated transition in the composition of LEF1 and TCF7L2 isoforms. In the case of TCF7L2, the typical brain isoforms lack the so-called C clamp; in addition, the dominant-negative isoforms are predominant in the embryonic thalamus but disappear postnatally. The present study provides a necessary framework to understand the role of LEF1/TCF factors in thalamic and midbrain development until adulthood and predicts that the regulatory role of these proteins in the adult brain is significantly different from their role in the embryonic brain or other non-neural tissues.
机译:β-Catenin信号传导导致淋巴增强剂结合因子1 / T细胞因子(LEF1 / TCF)转录因子的激活,在发育和组织稳态过程中的转录调控中起着公认的作用。在成年生物中,已经在干细胞壁and和有丝分裂后丘脑神经元中发现了该途径的活性。最近,研究表明,β-catenin信号网络的组成部分的突变与多种精神疾病有关,这表明β-catenin和LEF1 / TCF蛋白与大脑的正常功能有关。在这里,我们报告LEF1 / TCF蛋白的定位及其在小鼠的皮质,丘脑和中脑区域中的同工型的表达谱的全面分析。我们在丘脑和背中脑的神经元(即专门整合各种感觉信息源的皮层下区域)中检测到LEF1和TCF7L2蛋白。这些神经元还表现出β-catenin的核定位,表明β-catenin/ LEF1 / TCF7L2参与了这些区域基因表达的调节。分析选择性剪接和启动子使用鉴定出脑特异性TCF7L2亚型,并揭示了LEF1和TCF7L2亚型组成的发育协调过渡。对于TCF7L2,典型的脑亚型缺乏所谓的C钳位。此外,显性阴性同工型在胚胎丘脑中占优势,但在出生后消失。本研究提供了一个必要的框架,以了解LEF1 / TCF因子在成年之前丘脑和中脑发育中的作用,并预测这些蛋白质在成年大脑中的调节作用与它们在胚胎脑或其他非大脑中的作用显着不同。神经组织。

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