ADAMTS-7 Inhibits Re-endothelialization of Injured Arteries and Promotes Vascular Remodeling Through Cleavage of Thrombospondin-1

阿达姆斯 新生内膜 血栓反应素 医学 基质细胞蛋白 软骨寡聚基质蛋白 血栓反应蛋白1 内皮 基质金属蛋白酶 细胞外基质 细胞生物学 金属蛋白酶 癌症研究 病理 血管生成 内科学 生物 骨关节炎 再狭窄 支架 替代医学
作者
Thorsten Kessler,Qian Zhang,Ziyi Liu,Xiaoke Yin,Yaqian Huang,Yingbao Wang,Yi Fu,Manuel Mayr,Qing Ge,Qingbo Xu,Yi Zhu,Xian Wang,Kjestine Schmidt,Martin Hrabě de Angelis,Jeanette Erdmann,Heribert Schunkert,Zouhair Aherrahrou,Wei Kong
出处
期刊:Circulation [Lippincott Williams & Wilkins]
卷期号:131 (13): 1191-1201 被引量:126
标识
DOI:10.1161/circulationaha.114.014072
摘要

ADAMTS-7, a member of the disintegrin and metalloproteinase with thrombospondin motifs (ADAMTS) family, was recently identified to be significantly associated genomewide with coronary artery disease. However, the mechanisms that link ADAMTS-7 and coronary artery disease risk remain elusive. We have previously demonstrated that ADAMTS-7 promotes vascular smooth muscle cell migration and postinjury neointima formation via degradation of a matrix protein cartilage oligomeric matrix protein. Because delayed endothelium repair renders neointima and atherosclerosis plaque formation after vessel injury, we examined whether ADAMTS-7 also inhibits re-endothelialization.Wire injury of the carotid artery and Evans blue staining were performed in Adamts7(-/-) and wild-type mice. Adamts-7 deficiency greatly promoted re-endothelialization at 3, 5, and 7 days after injury. Consequently, Adamts-7 deficiency substantially ameliorated neointima formation in mice at days 14 and 28 after injury in comparison with the wild type. In vitro studies further indicated that ADAMTS-7 inhibited both endothelial cell proliferation and migration. Surprisingly, cartilage oligomeric matrix protein deficiency did not affect endothelial cell proliferation/migration and re-endothelialization in mice. In a further examination of other potential vascular substrates of ADAMTS-7, a label-free liquid chromatography-tandem mass spectrometry secretome analysis revealed thrombospondin-1 as a potential ADAMTS-7 target. The subsequent studies showed that ADAMTS-7 was directly associated with thrombospondin-1 by its C terminus and degraded thrombospondin-1 in vivo and in vitro. The inhibitory effect of ADAMTS-7 on postinjury endothelium recovery was circumvented in Tsp1(-/-) mice.Our study revealed a novel mechanism by which ADAMTS-7 affects neointima formation. Thus, ADAMTS-7 is a promising treatment target for postinjury vascular intima hyperplasia.

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