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Physical and Functional Interactions between Homeodomain NKX2.1 and Winged Helix/Forkhead FOXA1 in Lung Epithelial Cells

机译:同源结构域NKX2.1和翅螺旋/叉头FOXA1在肺上皮细胞之间的物理和功能相互作用。

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摘要

NKX2.1 is a homeodomain transcription factor that controls development of the brain, lung, and thyroid. In the lung, Nkx2.1 is expressed in a proximo-distal gradient and activates specific genes in phenotypically distinct epithelial cells located along this axis. The mechanisms by which NKX2.1 controls its target genes may involve interactions with other transcription factors. We examined whether NKX2.1 interacts with members of the winged-helix/forkhead family of FOXA transcription factors to regulate two spatially and cell type-specific genes, SpC and Ccsp. The results show that NKX2.1 interacts physically and functionally with FOXA1. The nature of the interaction is inhibitory and occurs through the NKX2.1 homeodomain in a DNA-independent manner. On SpC, which lacks a FOXA1 binding site, FOXA1 attenuates NKX2.1-dependent transcription. Inhibition of FOXA1 by small interfering RNA increased SpC mRNA, demonstrating the in vivo relevance of this finding. In contrast, FOXA1 and NKX2.1 additively activate transcription from Ccsp, which includes both NKX2.1 and FOXA1 binding sites. In electrophoretic mobility shift assays, the GST-FOXA1 fusion protein interferes with the formation of NKX2.1 transcriptional complexes by potentially masking the latter's homeodomain DNA binding function. These findings suggest a novel mode of selective gene regulation by proximo-distal gradient distribution of and functional interactions between forkhead and homeodomain transcription factors.
机译:NKX2.1是控制脑,肺和甲状腺发育的同源结构域转录因子。在肺中,Nkx2.1在近端-远端梯度中表达,并激活沿该轴位于表型不同的上皮细胞中的特定基因。 NKX2.1控制其靶基因的机制可能涉及与其他转录因子的相互作用。我们检查了NKX2.1是否与FOXA转录因子的有翼螺旋/叉头家族成员相互作用,以调节两个空间和细胞类型特异性基因SpC和Ccsp。结果表明,NKX2.1与FOXA1在物理和功能上相互作用。相互作用的性质是抑制性的,并且以不依赖DNA的方式通过NKX2.1同源结构域发生。在缺少FOXA1结合位点的SpC上,FOXA1减弱了NKX2.1依赖性转录。小分子干扰RNA对FOXA1的抑制作用会增加SpC mRNA的表达,这证明了这一发现的体内意义。相反,FOXA1和NKX2.1可附加激活Ccsp的转录,而Ccsp包括NKX2.1和FOXA1结合位点。在电泳迁移率迁移分析中,GST-FOXA1融合蛋白可能会掩盖NKX2.1的同源域DNA结合功能,从而干扰NKX2.1转录复合物的形成。这些发现表明通过叉头和同源域转录因子的近端-远侧梯度分布和功能相互作用的选择性基因调控的新模式。

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