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Neuronal excitation upregulates Tbr1 a high-confidence risk gene of autism mediating Grin2b expression in the adult brain

机译:神经元兴奋上调自闭症的高可信度风险基因Tbr1介导成年大脑中Grin2b的表达

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摘要

The activity-regulated gene expression of transcription factors is required for neural plasticity and function in response to neuronal stimulation. T-brain-1 (TBR1), a critical neuron-specific transcription factor for forebrain development, has been recognized as a high-confidence risk gene for autism spectrum disorders. Here, we show that in addition to its role in brain development, Tbr1 responds to neuronal activation and further modulates the Grin2b expression in adult brains and mature neurons. The expression levels of Tbr1 were investigated using both immunostaining and quantitative reverse transcription polymerase chain reaction (RT-PCR) analyses. We found that the mRNA and protein expression levels of Tbr1 are induced by excitatory synaptic transmission driven by bicuculline or glutamate treatment in cultured mature neurons. The upregulation of Tbr1 expression requires the activation of both α-amino-3-hydroxy-5-methyl-4-isoxazole-propionic acid (AMPA) and N-methyl-D-aspartate (NMDA) receptors. Furthermore, behavioral training triggers Tbr1 induction in the adult mouse brain. The elevation of Tbr1 expression is associated with Grin2b upregulation in both mature neurons and adult brains. Using Tbr1-deficient neurons, we further demonstrated that TBR1 is required for the induction of Grin2b upon neuronal activation. Taken together with the previous studies showing that TBR1 binds the Grin2b promoter and controls expression of luciferase reporter driven by Grin2b promoter, the evidence suggests that TBR1 directly controls Grin2b expression in mature neurons. We also found that the addition of the calcium/calmodulin-dependent protein kinase II (CaMKII) antagonist KN-93, but not the calcium-dependent phosphatase calcineurin antagonist cyclosporin A, to cultured mature neurons noticeably inhibited Tbr1 induction, indicating that neuronal activation upregulates Tbr1 expression in a CaMKII-dependent manner. In conclusion, our study suggests that Tbr1 plays an important role in adult mouse brains in response to neuronal activation to modulate the activity-regulated gene transcription required for neural plasticity.
机译:转录因子的活性调节基因表达是神经可塑性和响应神经元刺激的功能所必需的。 T-brain-1(TBR1)是前脑发育的关键神经元特异性转录因子,已被认为是自闭症谱系障碍的高可信度风险基因。在这里,我们显示,除了其在大脑发育中的作用外,Tbr1还响应神经元激活并进一步调节成年大脑和成熟神经元中Grin2b的表达。使用免疫染色和定量逆转录聚合酶链反应(RT-PCR)分析研究Tbr1的表达水平。我们发现,在培养的成熟神经元中,由小分子或谷氨酸处理驱动的兴奋性突触传递诱导了Tbr1的mRNA和蛋白表达水平。 Tbr1表达的上调需要激活α-氨基-3-羟基-5-羟基-5-甲基-4-异恶唑-丙酸(AMPA)和N-甲基-D-天冬氨酸(NMDA)受体。此外,行为训练会在成年小鼠大脑中触发Tbr1诱导。 Tbr1表达的升高与成熟神经元和成年大脑中的Grin2b上调相关。使用缺乏Tbr1的神经元,我们进一步证明了在神经元激活后诱导Grin2b需要TBR1。与先前的研究一起显示,TBR1结合Grin2b启动子并控制由Grin2b启动子驱动的萤光素酶报道基因的表达,证据表明TBR1直接控制成熟神经元中Grin2b的表达。我们还发现,向培养的成熟神经元添加钙/钙调蛋白依赖性蛋白激酶II(CaMKII)拮抗剂KN-93,而不是钙依赖性磷酸酶钙调磷酸酶拮抗剂环孢菌素A,可明显抑制Tbr1诱导,表明神经元激活上调。 Tbr1以CaMKII依赖性方式表达。总之,我们的研究表明, Tbr1 在成年小鼠大脑中起重要作用,以响应神经元激活来调节神经可塑性所需的活性调节基因转录。

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