Ristori Tommaso, Thuret Raphael, Hooker Erika, Quicke Peter, Lanthier Kevin, Ntumba Kalonji, Aspalter Irene M, Uroz Marina, Herbert Shane P, Chen Christopher S, Larrivée Bruno, Bentley Katie
bioRxiv. 2023 Sep 25:2023.09.25.557123. doi: 10.1101/2023.09.25.557123.
The mechanisms regulating the signaling pathways involved in angiogenesis are not fully known. Ristori et al. show that Lunatic Fringe (LFng) mediates the crosstalk between Bone Morphogenic Protein 9 (Bmp9) and Notch signaling, thereby regulating the endothelial cell behavior and temporal dynamics of their identity during sprouting angiogenesis.
Bmp9 upregulates the expression of LFng in endothelial cells.LFng regulates the temporal dynamics of tip/stalk selection and rearrangement.LFng indicated to play a role in hereditary hemorrhagic telangiectasia.Bmp9 and LFng mediate the endothelial cell-pericyte crosstalk.Bone Morphogenic Protein 9 (Bmp9), whose signaling through Activin receptor-like kinase 1 (Alk1) is involved in several diseases, has been shown to independently activate Notch target genes in an additive fashion with canonical Notch signaling. Here, by integrating predictive computational modeling validated with experiments, we uncover that Bmp9 upregulates Lunatic Fringe (LFng) in endothelial cells (ECs), and thereby also regulates Notch activity in an inter-dependent, multiplicative fashion. Specifically, the Bmp9-upregulated LFng enhances Notch receptor activity creating a much stronger effect when Dll4 ligands are also present. During sprouting, this LFng regulation alters vessel branching by modulating the timing of EC phenotype selection and rearrangement. Our results further indicate that LFng can play a role in Bmp9-related diseases and in pericyte-driven vessel stabilization, since we find LFng contributes to Jag1 upregulation in Bmp9-stimulated ECs; thus, Bmp9-upregulated LFng results in not only enhanced EC Dll4-Notch1 activation, but also Jag1-Notch3 activation in pericytes.
调节血管生成中涉及的信号通路的机制尚不完全清楚。里斯托里等人表明, Lunatic Fringe(LFng)介导骨形态发生蛋白9(Bmp9)与Notch信号之间的串扰,从而在发芽血管生成过程中调节内皮细胞行为及其身份的时间动态。
Bmp9上调内皮细胞中LFng的表达。
LFng调节尖端/茎干选择和重排的时间动态。
LFng表明在遗传性出血性毛细血管扩张中起作用。
Bmp9和LFng介导内皮细胞-周细胞串扰。
骨形态发生蛋白9(Bmp9)通过激活素受体样激酶1(Alk1)发出的信号参与多种疾病,已被证明能以与经典Notch信号相加的方式独立激活Notch靶基因。在这里,通过整合经实验验证的预测计算模型,我们发现Bmp9上调内皮细胞(ECs)中的Lunatic Fringe(LFng),从而也以相互依赖的乘法方式调节Notch活性。具体而言,Bmp9上调的LFng增强Notch受体活性,当Dll4配体也存在时会产生更强的效果。在发芽过程中,这种LFng调节通过调节EC表型选择和重排的时间来改变血管分支。我们的结果进一步表明,LFng可能在与Bmp9相关的疾病和周细胞驱动的血管稳定中起作用,因为我们发现LFng有助于Bmp9刺激的ECs中Jag1的上调;因此,Bmp9上调的LFng不仅导致EC中Dll4-Notch1激活增强,还导致周细胞中Jag1-Notch3激活。