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鉴定足以在神经嵴中驱动Pax3表达的最小增强子元件,并揭示Tead2作为Pax3的调节因子的作用。

Identification of minimal enhancer elements sufficient for Pax3 expression in neural crest and implication of Tead2 as a regulator of Pax3.

作者信息

Milewski Rita C, Chi Neil C, Li Jun, Brown Christopher, Lu Min Min, Epstein Jonathan A

机构信息

Cardiovascular Division, Department of Medicine, University of Pennsylvania, Philadelphia, PA, USA.

出版信息

Development. 2004 Feb;131(4):829-37. doi: 10.1242/dev.00975. Epub 2004 Jan 21.

Abstract

Pax3 is a transcription factor that is required by pre-migratory neural crest cells, which give rise to the peripheral nervous system, melanocytes, some vascular smooth muscle, and numerous other derivatives [corrected]. Both mice and humans with Pax3 deficiency exhibit neural crest-related developmental defects [corrected]. Pax3 is also expressed in the dorsal neural tube, and by myogenic progenitors in the presomitic mesoderm and the hypaxial somites. Molecular pathways that regulate Pax3 expression in the roof plate probably represent early upstream signals in neural crest induction. We have identified an enhancer region in the Pax3 genomic locus that is sufficient to recapitulate expression in neural crest precursors in transgenic mice. We show that Tead2, a member of the Tead box family of transcription factors, binds to a neural crest enhancer and activates Pax3 expression. Tead2, and its co-activator YAP65, are co-expressed with Pax3 in the dorsal neural tube, and mutation of the Tead2 binding site in the context of Pax3 transgenic constructs abolishes neural expression. In addition, a Tead2-Engrailed fusion protein is able to repress retinoic acid-induced Pax3 expression in P19 cells and in vivo. These results suggest that Tead2 is an endogenous activator of Pax3 in neural crest.

摘要

Pax3是一种转录因子,迁移前神经嵴细胞需要它,这些细胞可分化为外周神经系统、黑素细胞、一些血管平滑肌及许多其他衍生物[已修正]。Pax3缺乏的小鼠和人类均表现出与神经嵴相关的发育缺陷[已修正]。Pax3也表达于背侧神经管以及体节形成前中胚层和轴下肌节中的成肌祖细胞。调节顶板中Pax3表达的分子途径可能代表神经嵴诱导过程中的早期上游信号。我们在Pax3基因组位点中鉴定出一个增强子区域,该区域足以在转基因小鼠的神经嵴前体细胞中重现其表达。我们发现Tead2(一种Tead盒转录因子家族成员)可结合神经嵴增强子并激活Pax3表达。Tead2及其共激活因子YAP65与Pax3在背侧神经管中共表达,并且在Pax3转基因构建体中Tead2结合位点的突变会消除神经表达。此外,Tead2 - Engrailed融合蛋白能够在P19细胞和体内抑制视黄酸诱导的Pax3表达。这些结果表明Tead2是神经嵴中Pax3的内源性激活因子。

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