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首页> 外文期刊>Nature >Spontaneous calcification of arteries and cartilage in mice lacking matrix GLA protein
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Spontaneous calcification of arteries and cartilage in mice lacking matrix GLA protein

机译:缺乏基质GLA蛋白的小鼠的动脉和软骨自发钙化

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Calcification of the extracellular matrix (ECM) can be physiological or pathological. Physiological calcification occurs in bone when the soft ECM is converted into a rigid material capable of sustaining mechanical force; pathological calcification can occur in arteries and cartilage and other soft tissues. No molecular determinant regulating ECM calcification has yet been identified. A candidate molecule is matrix GLA protein (Mgp), a mineral-binding ECM protein synthesized by vascular smooth-muscle cells and chondrocytes, two cell types that produce an uncalcified ECM. Mice that lack Mgp develop to term but die within two months as a result of arterial calcification which leads to blood-vessel rupture. Chondrocytes that elaborate a typical cartilage matrix can be seen in the affected arteries. Mgp-deficient mice additionally exhibit inappropriate calcification of various cartilages, including the growth plate, which eventually leads to short stature, osteopenia and fractures. These results indicate that ECM calcification must be actively inhibited in soft tissues. To our knowledge, Mgp is the first inhibitor of calcification of arteries and cartilage to be characterized in vivo.
机译:细胞外基质(ECM)的钙化可以是生理性的或病理性的。当软性ECM转变成能够承受机械力的刚性材料时,骨骼就会发生生理钙化。病理性钙化可发生在动脉,软骨和其他软组织中。尚未确定调节ECM钙化的分子决定因素。候选分子是基质GLA蛋白(Mgp),这是一种与矿物质结合的ECM蛋白,由血管平滑肌细胞和软骨细胞合成,这两种细胞类型会产生未钙化的ECM。缺乏Mgp的小鼠发育至足月,但由于动脉钙化导致血管破裂而在两个月内死亡。在受影响的动脉中可以看到形成典型软骨基质的软骨细胞。缺乏Mgp的小鼠还会表现出包括生长板在内的各种软骨的不适当钙化,最终导致身材矮小,骨质减少和骨折。这些结果表明在软组织中必须积极抑制ECM钙化。据我们所知,Mgp是第一种在体内被表征的动脉和软骨钙化抑制剂。

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