Basic helix–loop–helix factors recruit nuclear factor I to enhance expression of the NaV 1.4 Na+ channel gene

Sadie L. Hebert , Christine Simmons , Amy L. Thompson , Catherine S. Zorc , Eric M. Blalock , Susan D. Kraner
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引用次数: 9

Abstract

We have previously shown that the basic helix–loop–helix (bHLH) transcription factors coordinate NaV 1.4 Na+ channel gene expression in skeletal muscle, but the identity of the co-factors they direct is unknown. Using C2C12 muscle cells as a model system, we test the hypothesis that the bHLH factors counteract negative regulation exerted through a repressor E box (− 90/− 85) by recruiting positive-acting transcription factors to the nucleotides (− 135/− 57) surrounding the repressor E box. We used electrophoretic mobility shift assays to identify candidate factors that bound the repressor E box or these adjacent regions. Repressor E box-binding factors included the known transcription factor, ZEB/AREB6, and a novel repressor E box-binding factor designated REB. Mutations of the repressor E box that interfere with the binding of these factors prevented repression. The transcription factor, nuclear factor I (NFI), bound immediately upstream and downstream of the repressor E box. Mutation of the NFI-binding sites diminished the ability of myogenin and MRF4 to counteract repression. Based on these observations we suggest that bHLH factors recruit NFI to enhance skeletal muscle Na+ channel expression.

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碱性螺旋-环-螺旋因子招募核因子I,增强NaV 1.4 Na+通道基因的表达
我们之前已经表明,基本螺旋-环-螺旋(bHLH)转录因子在骨骼肌中协调NaV 1.4 Na+通道基因的表达,但它们所指导的辅助因子的身份尚不清楚。以C2C12肌肉细胞为模型系统,我们验证了bHLH因子通过向阻遏因子E盒周围的核苷酸(- 135/ - 57)募集正作用转录因子来抵消阻遏因子E盒(- 90/ - 85)施加的负调控的假设。我们使用电泳迁移率转移测定来确定结合抑制因子E盒或这些邻近区域的候选因子。阻遏因子E盒结合因子包括已知的转录因子ZEB/AREB6和一种新的阻遏因子E盒结合因子REB。抑制因子E盒的突变干扰了这些因子的结合,阻止了抑制。转录因子核因子I (NFI)立即结合在阻遏因子E盒的上游和下游。nfi结合位点的突变降低了肌生成素和MRF4对抗抑制的能力。基于这些观察结果,我们认为bHLH因子招募NFI来增强骨骼肌Na+通道的表达。
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