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A nonclassical bHLH–Rbpj transcription factor complex is required for specification of GABAergic neurons independent of Notch signaling

机译:非经典的bHLH–Rbpj转录因子复合体是独立于Notch信号的GABA能神经元规格所必需的

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摘要

Neural networks are balanced by inhibitory and excitatory neuronal activity. The formation of these networks is initially generated through neuronal subtype specification controlled by transcription factors. The basic helix–loop–helix (bHLH) transcription factor Ptf1a is essential for the generation of GABAergic inhibitory neurons in the dorsal spinal cord, cerebellum, and retina. The transcription factor Rbpj is a transducer of the Notch signaling pathway that functions to maintain neural progenitor cells. Here we demonstrate Ptf1a and Rbpj interact in a complex that is required in vivo for specification of the GABAergic neurons, a function that cannot be substituted by the classical form of the bHLH heterodimer with E-protein or Notch signaling through Rbpj. We show that a mutant form of Ptf1a without the ability to bind Rbpj, while retaining its ability to interact with E-protein, is incapable of inducing GABAergic (Pax2)- and suppressing glutamatergic (Tlx3)-expressing cells in the chick and mouse neural tube. Moreover, we use an Rbpj conditional mutation to demonstrate that Rbpj function is essential for GABAergic specification, and that this function is independent of the Notch signaling pathway. Together, these findings demonstrate the requirement for a Ptf1a–Rbpj complex in controlling the balanced formation of inhibitory and excitatory neurons in the developing spinal cord, and point to a novel Notch-independent function for Rbpj in nervous system development.
机译:神经网络通过抑制性和兴奋性神经元活动来平衡。这些网络的形成最初是通过受转录因子控制的神经元亚型形成的。基本的螺旋-环-螺旋(bHLH)转录因子Ptf1a对于在背脊髓,小脑和视网膜中产生GABA能抑制神经元至关重要。转录因子Rbpj是Notch信号传导途径的转导者,其功能是维持神经祖细胞。在这里,我们证明了Ptf1a和Rbpj在体内需要相互作用的GABA能神经元的规格,该功能不能被bHLH异源二聚体的经典形式所取代,而具有E蛋白或通过Rbpj传递的Notch信号。我们显示突变形式的Ptf1a没有能力结合Rbpj,同时保留其与E蛋白相互作用的能力,不能诱导小鸡和小鼠神经中的GABA能(Pax2)和抑制谷氨酸能(Tlx3)表达的细胞。管。此外,我们使用Rbpj条件突变来证明Rbpj功能对于GABA能规范至关重要,并且该功能独立于Notch信号通路。总之,这些发现表明,在控制发育中的脊髓中抑制性和兴奋性神经元的平衡形成中,需要Ptf1a-Rbpj复合物,并指出神经系统发育中Rbpj的新型Notch独立功能。

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