Multi-Omics Profiling in Marfan Syndrome: Further Insights into the Molecular Mechanisms Involved in Aortic Disease

马凡综合征的多组学分析:进一步揭示主动脉疾病的分子机制

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作者:Judith M A Verhagen ,Joyce Burger ,Jos A Bekkers ,Alexander T den Dekker ,Jan H von der Thüsen ,Marina Zajec ,Hennie T Brüggenwirth ,Marianne L T van der Sterre ,Myrthe van den Born ,Theo M Luider ,Wilfred F J van IJcken ,Marja W Wessels ,Jeroen Essers ,Jolien W Roos-Hesselink ,Ingrid van der Pluijm ,Ingrid M B H van de Laar ,Erwin Brosens

Abstract

Thoracic aortic aneurysm is a potentially life-threatening disease with a strong genetic contribution. Despite identification of multiple genes involved in aneurysm formation, little is known about the specific underlying mechanisms that drive the pathological changes in the aortic wall. The aim of our study was to unravel the molecular mechanisms underlying aneurysm formation in Marfan syndrome (MFS). We collected aortic wall samples from FBN1 variant-positive MFS patients (n = 6) and healthy donor hearts (n = 5). Messenger RNA (mRNA) expression levels were measured by RNA sequencing and compared between MFS patients and controls, and between haploinsufficient (HI) and dominant negative (DN) FBN1 variants. Immunohistochemical staining, proteomics and cellular respiration experiments were used to confirm our findings. FBN1 mRNA expression levels were highly variable in MFS patients and did not significantly differ from controls. Moreover, we did not identify a distinctive TGF-β gene expression signature in MFS patients. On the contrary, differential gene and protein expression analysis, as well as vascular smooth muscle cell respiration measurements, pointed toward inflammation and mitochondrial dysfunction. Our findings confirm that inflammatory and mitochondrial pathways play important roles in the pathophysiological processes underlying MFS-related aortic disease, providing new therapeutic options. Keywords: Marfan syndrome; RNA-seq; mitochondria; proteomics; thoracic aortic aneurysms.

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