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骨形态发生蛋白(BMP)信号传导通过依赖Smad4和不依赖Smad4的途径调节交感神经系统的发育。

BMP signaling regulates sympathetic nervous system development through Smad4-dependent and -independent pathways.

作者信息

Morikawa Yuka, Zehir Ahmet, Maska Emily, Deng Chuxia, Schneider Michael D, Mishina Yuji, Cserjesi Peter

机构信息

Department of Cell and Molecular Biology, Tulane University, New Orleans, LA 70118, USA.

出版信息

Development. 2009 Nov;136(21):3575-84. doi: 10.1242/dev.038133. Epub 2009 Sep 30.

Abstract

Induction of the sympathetic nervous system (SNS) from its neural crest (NC) precursors is dependent on BMP signaling from the dorsal aorta. To determine the roles of BMP signaling and the pathways involved in SNS development, we conditionally knocked out components of the BMP pathways. To determine if BMP signaling is a cell-autonomous requirement of SNS development, the Alk3 (BMP receptor IA) was deleted in the NC lineage. The loss of Alk3 does not prevent NC cell migration, but the cells die immediately after reaching the dorsal aorta. The paired homeodomain factor Phox2b, known to be essential for survival of SNS precursors, is downregulated, suggesting that Phox2b is a target of BMP signaling. To determine if Alk3 signals through the canonical BMP pathway, Smad4 was deleted in the NC lineage. Loss of Smad4 does not affect neurogenesis and ganglia formation; however, proliferation and noradrenergic differentiation are reduced. Analysis of transcription factors regulating SNS development shows that the basic helix-loop-helix factor Ascl1 is downregulated by loss of Smad4 and that Ascl1 regulates SNS proliferation but not noradrenergic differentiation. To determine if the BMP-activated Tak1 (Map3k7) pathway plays a role in SNS development, Tak1 was deleted in the NC lineage. We show that Tak1 is not involved in SNS development. Taken together, our results suggest multiple roles for BMP signaling during SNS development. The Smad4-independent pathway acts through the activation of Phox2b to regulate survival of SNS precursors, whereas the Smad4-dependent pathway controls noradrenergic differentiation and regulates proliferation by maintaining Ascl1 expression.

摘要

交感神经系统(SNS)从其神经嵴(NC)前体诱导形成依赖于背主动脉的骨形态发生蛋白(BMP)信号传导。为了确定BMP信号传导及其所涉及的通路在SNS发育中的作用,我们有条件地敲除了BMP通路的组成部分。为了确定BMP信号传导是否是SNS发育的细胞自主需求,在NC谱系中删除了Alk3(BMP受体IA)。Alk3的缺失并不阻止NC细胞迁移,但细胞在到达背主动脉后立即死亡。已知对SNS前体存活至关重要的配对同源域因子Phox2b表达下调,这表明Phox2b是BMP信号传导的一个靶点。为了确定Alk3是否通过经典的BMP通路发出信号,在NC谱系中删除了Smad4。Smad4的缺失不影响神经发生和神经节形成;然而,增殖和去甲肾上腺素能分化减少。对调节SNS发育的转录因子的分析表明,Smad4的缺失下调了基本螺旋-环-螺旋因子Ascl1,并且Ascl1调节SNS增殖但不调节去甲肾上腺素能分化。为了确定BMP激活的Tak1(Map3k7)通路是否在SNS发育中起作用,在NC谱系中删除了Tak1。我们发现Tak1不参与SNS发育。综上所述,我们的结果表明BMP信号传导在SNS发育过程中具有多种作用。不依赖Smad4的通路通过激活Phox2b来调节SNS前体的存活,而依赖Smad4的通路控制去甲肾上腺素能分化并通过维持Ascl1表达来调节增殖。

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