维斯坎
细胞生物学
斑马鱼
内皮
细胞外基质
基因敲除
阿达姆斯
蛋白多糖
硫酸软骨素
化学
表型
解剖
生物
佩莱肯
机械生物学
病理生理学
KLF2
心脏发育
免疫学
下调和上调
内皮干细胞
心脏纤维化
内分泌学
内科学
纤维化
基因表达调控
病变
内皮细胞活化
基因表达
作者
Xi Yang,Jieying Zhang,Zifeng Dai,Tianzi Yang,Liya Xie,Fei Gao,Xiangjian Zheng,Zhiming Han
摘要
ADAMTS5 cleaves chondroitin sulfate proteoglycans such as versican and aggrecan. Adamts5-/- mouse model exhibited aortic anomalies, and increased expression of Adamts4/5 led to excessive versican degradation and reduced cardiac jelly. In zebrafish, knockdown of adamts5 rescued the cardiac phenotype conferred by ccm1-deficiency in zebrafish embryos. Here, we generated an ADAMTS5 knockin mouse model (ADAMTS5KI) to characterize the effect of induced expression of human ADAMTS5 on the cardiovascular system in mice. Sustained expression of ADAMTS5 in the endothelium diminished cardiac jelly formation and proteoglycan deposition in the atrioventricular (AV) cushion and led to cardiac development arrest. Induced expression of ADAMTS5 in the endothelium of postnatal mice impaired cardiac valve patterning. Expression of ADAMTS5 in brain endothelial cells did not confer an obvious vascular defect. However, expression of ADAMTS5 in brain endothelial cells of Ccm2-deficient mice aggravated CCM lesion burden and shortened the life span of Ccm2-deficient mice. These findings suggest that tight regulation of ADAMTS5 in the endothelium is essential for cardiovascular development and structural integrity, and ADAMTS5 interacts with CCM signaling, contributing to CCM disease progression.
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