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BMP/SMAD1 signaling sets a threshold for the left/right pathway in lateral plate mesoderm and limits availability of SMAD4

机译:BMP / SMAD1信号设置了外侧板中胚层左右通道的阈值并限制了SMAD4的可用性

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摘要

Bistability in developmental pathways refers to the generation of binary outputs from graded or noisy inputs. Signaling thresholds are critical for bistability. Specification of the left/right (LR) axis in vertebrate embryos involves bistable expression of transforming growth factor β (TGFβ) member NODAL in the left lateral plate mesoderm (LPM) controlled by feed-forward and feedback loops. Here we provide evidence that bone morphogenetic protein (BMP)/SMAD1 signaling sets a repressive threshold in the LPM essential for the integrity of LR signaling. Conditional deletion of Smad1 in the LPM led to precocious and bilateral pathway activation. NODAL expression from both the left and right sides of the node contributed to bilateral activation, indicating sensitivity of mutant LPM to noisy input from the LR system. In vitro, BMP signaling inhibited NODAL pathway activation and formation of its downstream SMAD2/4–FOXH1 transcriptional complex. Activity was restored by overexpression of SMAD4 and in embryos, elevated SMAD4 in the right LPM robustly activated LR gene expression, an effect reversed by superactivated BMP signaling. We conclude that BMP/SMAD1 signaling sets a bilateral, repressive threshold for NODAL-dependent Nodal activation in LPM, limiting availability of SMAD4. This repressive threshold is essential for bistable output of the LR system.
机译:发展途径中的双稳态是指从分级或嘈杂的输入生成二进制输出。信令阈值对于双稳态至关重要。在脊椎动物胚胎中,左/右(LR)轴的规格涉及前馈和反馈回路控制的左外侧中胚层(LPM)中转化生长因子β(TGFβ)成员NODAL的双稳态表达。在这里,我们提供的证据表明,骨形态发生蛋白(BMP)/ SMAD1信号在LPM中设置了一个阻性阈值,这对于LR信号的完整性至关重要。 LPM中Smad1的有条件删除导致性早熟和双边途径激活。节点左侧和右侧的NODAL表达有助于双边激活,表明突变LPM对来自LR系统的噪声输入敏感。在体外,BMP信号传导抑制NODAL途径的激活及其下游SMAD2 / 4–FOXH1转录复合物的形成。通过过度表达SMAD4和在胚胎中恢复活性,在右侧LPM中SMAD4的升高强烈激活了LR基因表达,这种作用被超激活的BMP信号所逆转。我们得出的结论是,BMP / SMAD1信号传导为LPM中的NODAL依赖性节点激活设置了一个双向的抑制性阈值,从而限制了SMAD4的可用性。该抑制阈值对于LR系统的双稳态输出至关重要。

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