Literature DB >> 32580633

Role of PAR1-Egr1 in the Initiation of Thoracic Aortic Aneurysm in Fbln4-Deficient Mice.

Seung Jae Shin1,2, Huynh Thuy Hang1,3, Bui Quoc Thang4, Tomonari Shimoda1,5, Hiroaki Sakamoto4, Motoo Osaka4, Yuji Hiramatsu4, Yoshito Yamashiro1, Hiromi Yanagisawa1,6.   

Abstract

OBJECTIVE: Remodeling of the extracellular matrix plays a vital role in cardiovascular diseases. Using a mouse model of postnatal ascending aortic aneurysms (termed Fbln4SMKO), we have reported that abnormal mechanosensing led to aneurysm formation in Fbln4SMKO with an upregulation of the mechanosensitive transcription factor, Egr1 (Early growth response 1). However, the role of Egr1 and its upstream regulator(s) in the initiation of aneurysm development and their relationship to an aneurysmal microenvironment are unknown. Approach and
Results: To investigate the contribution of Egr1 in the aneurysm development, we deleted Egr1 in Fbln4SMKO mice and generated double knockout mice (DKO, Fbln4SMKO; Egr1-/-). Aneurysms were prevented in DKO mice (42.8%) and Fbln4SMKO; Egr1+/- mice (26%). Ingenuity Pathway Analysis identified PAR1 (protease-activated receptor 1) as a potential Egr1 upstream gene. Protein and transcript levels of PAR1 were highly increased in Fbln4SMKO aortas at postnatal day 1 before aneurysm formed, together with active thrombin and MMP (matrix metalloproteinase)-9, both of which serve as a PAR1 activator. Concordantly, protein levels of PAR1, Egr1, and thrombin were significantly increased in human thoracic aortic aneurysms. In vitro cyclic stretch assays (1.0 Hz, 20% strain, 8 hours) using mouse primary vascular smooth muscle cells induced marked expression of PAR1 and secretion of prothrombin in response to mechanical stretch. Thrombin was sufficient to induce Egr1 expression in a PAR1-dependent manner.
CONCLUSIONS: We propose that thrombin, MMP-9, and mechanical stimuli in the Fbln4SMKO aorta activate PAR1, leading to the upregulation of Egr1 and initiation of ascending aortic aneurysms.

Entities:  

Keywords:  aneurysm; aorta; extracellular matrix; mechanotransduction; mice; thrombin

Mesh:

Substances:

Year:  2020        PMID: 32580633     DOI: 10.1161/ATVBAHA.120.314560

Source DB:  PubMed          Journal:  Arterioscler Thromb Vasc Biol        ISSN: 1079-5642            Impact factor:   8.311


  4 in total

1.  CD248+CD8+ T lymphocytes suppress pathological vascular remodeling in human thoracic aortic aneurysms.

Authors:  Xiaojuan Hu; Ting Wu; Chenxi Wang; Jun Li; Chunmei Ying
Journal:  Exp Biol Med (Maywood)       Date:  2020-08-31

Review 2.  Imaging Techniques for Aortic Aneurysms and Dissections in Mice: Comparisons of Ex Vivo, In Situ, and Ultrasound Approaches.

Authors:  Sohei Ito; Hong S Lu; Alan Daugherty; Hisashi Sawada
Journal:  Biomolecules       Date:  2022-02-21

3.  Single-cell RNA sequencing identifies an Il1rn+/Trem1+ macrophage subpopulation as a cellular target for mitigating the progression of thoracic aortic aneurysm and dissection.

Authors:  Xuanyu Liu; Wen Chen; Guoyan Zhu; Hang Yang; Wenke Li; Mingyao Luo; Chang Shu; Zhou Zhou
Journal:  Cell Discov       Date:  2022-02-08       Impact factor: 38.079

4.  Comprehensive Analysis of Endoplasmic Reticulum Stress in Intracranial Aneurysm.

Authors:  Bo Chen; Hongshu Zhou; Xiaoxi Zhou; Liting Yang; Yuanyuan Xiong; Liyang Zhang
Journal:  Front Cell Neurosci       Date:  2022-04-06       Impact factor: 5.505

  4 in total

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