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Notch 转录靶标 tmtc1 维持血管内稳态。

Notch transcriptional target tmtc1 maintains vascular homeostasis.

机构信息

Department of Pharmacology and Regenerative Medicine, University of Illinois at Chicago College of Medicine, Chicago, IL, 60612, USA.

Department of Biochemistry, University of Illinois at Chicago College of Medicine, Chicago, IL, USA.

出版信息

Cell Mol Life Sci. 2024 Aug 27;81(1):370. doi: 10.1007/s00018-024-05407-9.

Abstract

Proper lung function requires the maintenance of a tight endothelial barrier while simultaneously permitting the exchange of macromolecules and fluids to underlying tissue. Disruption of this barrier results in an increased vascular permeability in the lungs, leading to acute lung injury. In this study, we set out to determine whether transcriptional targets of Notch signaling function to preserve vascular integrity. We tested the in vivo requirement for Notch transcriptional signaling in maintaining the pulmonary endothelial barrier by using two complementary endothelial-specific Notch loss-of-function murine transgenic models. Notch signaling was blocked using endothelial-specific activation of an inhibitor of Notch transcriptional activation, Dominant Negative Mastermindlike (DNMAML; CDH5Cre), or endothelial-specific loss of Notch1 (Notch1; CDH5Cre). Both Notch mutants increased vascular permeability with pan-Notch inhibition by DNMAML showing a more severe phenotype in the lungs and in purified endothelial cells. RNA sequencing of primary lung endothelial cells (ECs) identified novel Notch targets, one of which was transmembrane O-mannosyltransferase targeting cadherins 1 (tmtc1). We show that tmtc1 interacts with vascular endothelial cadherin (VE-cadherin) and regulates VE-cadherin egress from the endoplasmic reticulum through direct interaction. Our findings demonstrate that Notch signaling maintains endothelial adherens junctions and vascular homeostasis by a transcriptional mechanism that drives expression of critical factors important for processing and transport of VE-cadherin.

摘要

正常的肺功能需要维持紧密的内皮屏障,同时允许大分子和液体交换到下面的组织。这个屏障的破坏会导致肺部血管通透性增加,从而导致急性肺损伤。在这项研究中,我们着手确定 Notch 信号转导的转录靶标是否有助于维持血管完整性。我们使用两种互补的内皮特异性 Notch 功能丧失型小鼠转基因模型,测试了 Notch 转录信号在维持肺内皮屏障中的体内需求。通过内皮特异性激活 Notch 转录激活的抑制剂,即显性负性 Mastermind 样(DNMAML;CDH5Cre),或内皮特异性 Notch1 缺失(Notch1;CDH5Cre),阻断 Notch 信号。两种 Notch 突变体都增加了血管通透性,而 DNMAML 对全 Notch 的抑制则在肺部和纯化的内皮细胞中表现出更严重的表型。对原代肺内皮细胞(EC)的 RNA 测序确定了新的 Notch 靶标,其中一个是靶向钙粘蛋白 1 的跨膜 O-甘露糖基转移酶(tmtc1)。我们表明 tmtc1 与血管内皮钙粘蛋白(VE-cadherin)相互作用,并通过直接相互作用调节 VE-cadherin 从内质网的出芽。我们的发现表明,Notch 信号通过一种转录机制维持内皮细胞黏附连接和血管内稳态,该机制驱动与 VE-cadherin 加工和运输相关的关键因子的表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6485/11349727/eff309150994/18_2024_5407_Fig1_HTML.jpg

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