Vascular Ageing Features Caused by Selective DNA Damage in Smooth Muscle Cell

Author:

Ataei Ataabadi Ehsan1ORCID,Golshiri Keivan1ORCID,van der Linden Janette123,de Boer Martine2,Duncker Dirk J.2ORCID,Jüttner Annika1ORCID,de Vries René1,Van Veghel Richard1ORCID,van der Pluijm Ingrid34ORCID,Dutheil Sophie5,Chalgeri Suman5,Zhang Lei5,Lin Amy5,Davis Robert E.5ORCID,Snyder Gretchen L.5ORCID,Danser A. H. Jan1ORCID,Roks Anton J. M.1ORCID

Affiliation:

1. Division of Pharmacology and Vascular Medicine, Department of Internal Medicine, Erasmus MC, Rotterdam, Netherlands

2. Division of Experimental Cardiology, Department of Cardiology, Thorax Center, Erasmus MC, Rotterdam, Netherlands

3. Department of Molecular Genetics, Erasmus MC, Rotterdam, Netherlands

4. Department of Vascular Surgery, Erasmus MC, Rotterdam, Netherlands

5. Intra-Cellular Therapies Inc, 430 R 29th Street, Suite 900, New York, NY 10016, USA

Abstract

Persistently unrepaired DNA damage has been identified as a causative factor for vascular ageing. We have previously shown that a defect in the function or expression of the DNA repair endonuclease ERCC1 (excision repair cross complement 1) in mice leads to accelerated, nonatherosclerotic ageing of the vascular system from as early as 8 weeks after birth. Removal of ERCC1 from endothelial alone partly explains this ageing, as shown in endothelial-specific Ercc1 knockout mice. In this study, we determined vascular ageing due to DNA damage in vascular smooth muscle cells, as achieved by smooth muscle-selective genetic removal of ERCC1 DNA repair in mice (SMC-KO: SM22αCre+ Ercc1fl/-). Vascular ageing features in SMC-KO and their wild-type littermates (WT: SM22αCre+ Ercc1fl/+) were examined at the age of 14 weeks and 25 weeks. Both SMC-KO and WT mice were normotensive. Compared to WT, SMC-KO showed a reduced heart rate, fractional shortening, and cardiac output. SMC-KO showed progressive features of nonatherosclerotic vascular ageing as they aged from 14 to 25 weeks. Decreased subcutaneous microvascular dilatation and increased carotid artery stiffness were observed. Vasodilator responses measured in aortic rings in organ baths showed decreased endothelium-dependent and endothelium-independent responses, mostly due to decreased NO-cGMP signaling. NADPH oxidase 2 and phosphodiesterase 1 inhibition improved dilations. SMC-KO mice showed elevated levels of various cytokines that indicate a balance shift in pro- and anti-inflammatory pathways. In conclusion, SMC-KO mice showed a progressive vascular ageing phenotype in resistant and conduit arteries that is associated with cardiac remodeling and contractile dysfunction. The changes induced by DNA damage might be limited to VSMC but eventually affect EC-mediated responses. The fact that NADPH oxidase 2 as wells as phosphodiesterase 1 inhibition restores vasodilation suggests that both decreased NO bioavailability and cGMP degradation play a role in local vascular smooth muscle cell ageing induced by DNA damage.

Funder

Intracellular Therapies Inc. New York

Publisher

Hindawi Limited

Subject

Cell Biology,Aging,General Medicine,Biochemistry

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