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弹性蛋白单倍不足可阻碍 MGP 缺陷小鼠的动脉钙化进展。

Elastin haploinsufficiency impedes the progression of arterial calcification in MGP-deficient mice.

机构信息

Faculty of Dentistry, McGill University, Montreal, Quebec, Canada.

出版信息

J Bone Miner Res. 2014 Feb;29(2):327-37. doi: 10.1002/jbmr.2039.

Abstract

Matrix gla protein (MGP) is a potent inhibitor of extracellular matrix (ECM) mineralization. MGP-deficiency in humans leads to Keutel syndrome, a rare genetic disease hallmarked by abnormal soft tissue calcification. MGP-deficient (Mgp(-/-)) mice show progressive deposition of hydroxyapatite minerals in the arterial walls and die within 2 months of age. The mechanism of antimineralization function of MGP is not fully understood. We examined the progression of vascular calcification and expression of several chondrogenic/osteogenic markers in the thoracic aortas of Mgp(-/-) mice at various ages. Although cells with chondrocyte-like morphology have been reported in the calcified aorta, our gene expression data indicate that chondrogenic/osteogenic markers are not upregulated in the arteries prior to the initiation of calcification. Interestingly, arterial calcification in Mgp(-/-) mice appears first in the elastic laminae. Considering the known mineral scaffolding function of elastin (ELN), a major elastic lamina protein, we hypothesize that elastin content in the laminae is a critical determinant for arterial calcification in Mgp(-/-) mice. To investigate this, we performed micro-computed tomography (µCT) and histological analyses of the aortas of Mgp(-/-);Eln(+/-) mice and show that elastin haploinsufficiency significantly reduces arterial calcification in this strain. Our data suggest that MGP deficiency leads to alterations of vascular ECM that may in turn initiate arterial calcification.

摘要

基质 Gla 蛋白 (MGP) 是细胞外基质 (ECM) 矿化的有效抑制剂。人类的 MGP 缺乏会导致 Keutel 综合征,这是一种罕见的遗传性疾病,其特征是软组织异常钙化。MGP 缺乏 (Mgp(-/-)) 小鼠表现出动脉壁中羟磷灰石矿物质的进行性沉积,并在 2 个月龄内死亡。MGP 抗矿化功能的机制尚未完全阐明。我们在不同年龄的 Mgp(-/-) 小鼠的胸主动脉中检查了血管钙化的进展和几种软骨形成/成骨标志物的表达。尽管在钙化的主动脉中已经报道了具有软骨细胞样形态的细胞,但我们的基因表达数据表明,在钙化开始之前,动脉中软骨形成/成骨标志物没有上调。有趣的是,Mgp(-/-) 小鼠的动脉钙化首先出现在弹性层中。考虑到弹性蛋白 (ELN)——主要的弹性层蛋白的已知矿物质支架功能,我们假设层中的弹性蛋白含量是 Mgp(-/-) 小鼠动脉钙化的关键决定因素。为了研究这一点,我们对 Mgp(-/-);Eln(+/-) 小鼠的主动脉进行了微计算机断层扫描 (µCT) 和组织学分析,结果表明弹性蛋白单倍不足显著减少了该品系的动脉钙化。我们的数据表明,MGP 缺乏会导致血管细胞外基质的改变,这可能反过来引发动脉钙化。

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