Smad1/5 is acetylated in the dorsal aortae of the mouse embryo before the onset of blood flow, driving early arterial gene expression.

IF 10.2 1区 医学 Q1 CARDIAC & CARDIOVASCULAR SYSTEMS Cardiovascular Research Pub Date : 2024-09-10 DOI:10.1093/cvr/cvae201
Margo Daems,Ljuba C Ponomarev,Rita Simoes-Faria,Max Nobis,Colinda L G J Scheele,Aernout Luttun,Bart Ghesquière,An Zwijsen,Elizabeth A V Jones
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Abstract

AIMS During embryonic development, arteriovenous (AV) differentiation ensures proper blood vessel formation and maturation. Defects in arterial or venous identity cause inappropriate fusion of vessels, resulting in atypical shunts, so-called arteriovenous malformations (AVM). Currently, the mechanism behind AVM formation remains unclear and treatment options are fairly limited. Mammalian AV differentiation is initiated before the onset of blood flow in the embryo; however, this pre-flow mechanism is poorly understood. Here, we aimed to unravel the role of Smad1/5 signalling in pre-flow arterial identity, and in the process uncovered an unexpected control mechanism of Smad1/5 signalling. METHODS AND RESULTS We establish that despite Notch1 being expressed in the pre-flow mouse embryo, it is not activated, nor is it necessary for the expression of the earliest arterial genes in the dorsal aortae (i.e., Hey1 and Gja4). Furthermore, interrupting blood flow by using the Ncx1 KO model completely prevents the activation of Notch1 signalling, suggesting a strong role of shear stress in maintaining arterial identity. We demonstrate that early expression of Hey1 and Gja4 requires SMAD1/5 signalling. Using embryo cultures, we show that Smad1/5 signalling is activated through the Alk1/Alk5/TGFβR2 receptor complex, with TGFβ1 as a necessary ligand. Furthermore, our findings demonstrate that early arterial gene expression requires the acetylation of Smad1/5 proteins, rendering them more sensitive to TGFβ1 stimulation. Blocking acetyl-CoA production prevents pre-flow arterial expression of Hey1 and Gja4, while stabilizing acetylation rescues their expression. CONCLUSIONS Our findings highlight the importance of the acetyl-CoA production in the cell and provide a novel control mechanism of Smad1/5 signalling involving protein acetylation. As disturbed canonical Smad1/5 signalling is involved in several vascular conditions, our results offer new insights in treatment options for circumventing canonical Smad1/5 signalling.
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在血流开始之前,小鼠胚胎背侧主动脉中的 Smad1/5 就已经乙酰化,从而推动了早期动脉基因的表达。
目的在胚胎发育过程中,动静脉(AV)分化可确保血管的正常形成和成熟。动脉或静脉特性的缺陷会导致血管的不适当融合,造成不典型的分流,即所谓的动静脉畸形(AVM)。目前,动静脉畸形的形成机制仍不清楚,治疗方案也相当有限。哺乳动物的动静脉分化是在胚胎血流开始之前启动的;然而,人们对这种血流前机制知之甚少。在此,我们旨在揭示 Smad1/5 信号在血流前动脉特征中的作用,并在此过程中发现了 Smad1/5 信号的一种意想不到的控制机制。方法和结果 我们发现,尽管 Notch1 在血流前小鼠胚胎中表达,但它并没有被激活,也不是背侧主动脉中最早的动脉基因(即 Hey1 和 Gja4)表达所必需的。此外,使用 Ncx1 KO 模型中断血流可完全阻止 Notch1 信号的激活,这表明剪切应力在维持动脉特性方面发挥着重要作用。我们证明 Hey1 和 Gja4 的早期表达需要 SMAD1/5 信号。通过胚胎培养,我们发现 Smad1/5 信号是通过 Alk1/Alk5/TGFβR2 受体复合物激活的,而 TGFβ1 是必要的配体。此外,我们的研究结果表明,早期动脉基因表达需要 Smad1/5 蛋白的乙酰化,从而使它们对 TGFβ1 的刺激更敏感。阻断乙酰-CoA 的产生可阻止 Hey1 和 Gja4 的前动脉表达,而稳定乙酰化则可挽救它们的表达。由于多种血管疾病都与典型 Smad1/5 信号的紊乱有关,我们的研究结果为规避典型 Smad1/5 信号的治疗方案提供了新的思路。
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来源期刊
Cardiovascular Research
Cardiovascular Research 医学-心血管系统
CiteScore
21.50
自引率
3.70%
发文量
547
审稿时长
1 months
期刊介绍: Cardiovascular Research Journal Overview: International journal of the European Society of Cardiology Focuses on basic and translational research in cardiology and cardiovascular biology Aims to enhance insight into cardiovascular disease mechanisms and innovation prospects Submission Criteria: Welcomes papers covering molecular, sub-cellular, cellular, organ, and organism levels Accepts clinical proof-of-concept and translational studies Manuscripts expected to provide significant contribution to cardiovascular biology and diseases
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