首页> 外文期刊>American Journal of Pathology >Vanin-1 Pantetheinase Drives Increased Chondrogenic Potential of Mesenchymal Precursors in ank/ank Mice
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Vanin-1 Pantetheinase Drives Increased Chondrogenic Potential of Mesenchymal Precursors in ank/ank Mice

机译:Vanin-1 Pantetheinase驱动an / ank小鼠间充质前体的软骨生成潜力增加。

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Widespread endochondral and intramembranous ectopic bone formation is mediated by extracellular PPi deficiency that develops in ank/ank mice. Herein we report on the rapid condensation into chondrogenic nodules of cultured ank/ank bone marrow stromal cells (BMSCs). We compared the roles of increased chondrogenic potential versus altered osteoblast function in the ank/ank phenotype. To do so, we crossbred ank/ank mice with mice lacking Vanin-1 pantetheinase, which inhibits synthesis of the chondrogenesis regulator glutathione, since we observed increased Vanin-1 expression and pantetheinase activity and decreased glutathione in ank/ank BMSCs. Vnn1–/– BMSCs demonstrated delayed chondrogenesis mediated by increased glutathione. Moreover, increased chondrogenesis of ank/ank BMSCs and increased chondrogenic transdifferentiation and calcification by ank/ank aortic smooth muscle cells and explants were corrected by Vanin-1 knockout. Osteoblastogenesis was accelerated in ank/ank mesenchymal stem cells. However, in cultured ank/ank osteoblasts, Vanin-1 knockout actually increased specific alkaline phosphatase activity and lowered extracellular PPi, and did not correct increased calcification. Moreover, Vanin-1 knockout failed to correct the ank/ank skeletal soft tissue phenotype. Therefore, ank/ank periskeletal soft tissue calcification appears more dependent on altered osteoblastic function than enhanced chondrogenic potential and is not dependent on Vanin-1; however, Vanin-1 regulates chondrogenesis via glutathione metabolism and is critical for accelerated chondrogenesis of ank/ank mesenchymal precursors and Pi donor-driven chondrogenic transdifferentiation and calcification of aortic smooth muscle cells.
机译:软骨内和膜内异位骨的广泛形成是由ank / ank小鼠中发生的细胞外PPi缺乏介导的。在本文中,我们报告了培养的ank / ank骨髓基质细胞(BMSC)迅速凝结成软骨结节。我们比较了软骨形成潜力和改变成骨细胞功能在ank / ank表型中的作用。为此,我们将ank / ank小鼠与缺少Vanin-1泛肽酶的小鼠杂交,后者抑制软骨生成调节剂谷胱甘肽的合成,因为我们观察到了ank / ank BMSCs中Vanin-1表达和泛肽酶活性的增加以及谷胱甘肽的减少。 Vnn1-/-BMSCs表现出由增加的谷胱甘肽介导的软骨形成延迟。此外,通过Vanin-1敲除可以纠正ank / ank BMSC的软骨形成增加,以及ank / ank主动脉平滑肌细胞和外植体的软骨生成转分化和钙化增加。在ank / ank间充质干细胞中成骨细胞的生成被加速。但是,在培养的ank / ank成骨细胞中,Vanin-1敲除实际上增加了比碱性磷酸酶的活性并降低了细胞外PPi,并且不能纠正钙化的增加。此外,Vanin-1基因敲除未能纠正ank / ank骨骼软组织表型。因此,ank / ank周围骨骼软组织钙化似乎比成骨能力增强更依赖于成骨细胞功能的改变,而不依赖于Vanin-1。然而,Vanin-1通过谷胱甘肽代谢调节软骨生成,对于加速ank / ank间充质前体的软骨生成以及Pi供体驱动的软骨生成软骨分化和主动脉平滑肌细胞钙化至关重要。

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