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首页> 外文期刊>Cell death & disease. >Chaperonin 60 sustains osteoblast autophagy and counteracts glucocorticoid aggravation of osteoporosis by chaperoning RPTOR
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Chaperonin 60 sustains osteoblast autophagy and counteracts glucocorticoid aggravation of osteoporosis by chaperoning RPTOR

机译:伴侣素60维持骨盆自噬并抵消伴侣骨荚膜骨质疏松症的糖皮质激素

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Glucocorticoid excess medication interrupts osteoblast homeostasis and exacerbates bone mass and microstructure loss ramping up the pathogenesis of osteoporotic disorders. Heat shock protein 60 (HSP60) is found to maintain protein function within cellular microenvironment upon encountering detrimental stress. In this study, we revealed that supraphysiological dexamethasone decreased HSP60 expression along with deregulated autophagy in osteoblasts cultures. This chaperonin is required to sustain autophagic markers Atg4, and Atg12 expression, LC3-II conversion, and autophagic puncta formation, and alleviated the glucocorticoid-induced loss of osteogenic gene expression and mineralized matrix accumulation. Regulator-associated protein of mTOR complex 1 (RPTOR) existed in HSP60 immunoprecipitate contributing to the HSP60-promoted autophagy and osteogenesis because knocking down RPTOR impaired autophagic influx and osteogenic activity. HSP60 shielded from RPTOR dysfunction by reducing the glucocorticoid-induced RPTOR de-phosphorylation, aggregation, and ubiquitination. In vivo, forced RPTOR expression attenuated the methylprednisolone-induced loss of osteoblast autophagy, bone mass, and trabecular microstructure in mice. HSP60 transgenic mice displayed increased cortical bone, mineral acquisition, and osteoblast proliferation along with higher osteogenesis of bone marrow mesenchymal cells than those of wild-type mice. HSP60 overexpression retained RPTOR signaling, sustained osteoblast autophagy, and compromised the severity of glucocorticoid-induced bone loss and sparse trabecular histopathology. Taken together, HSP60 is essential to maintain osteoblast autophagy, which facilitates mineralized matrix production. It fends off glucocorticoid-induced osteoblast apoptosis and bone loss by stabilizing RPTOR action to autophagy. This study offers a new insight into the mechanistic by which chaperonin protects against the glucocorticoid-induced osteoblast dysfunction and bone loss.
机译:糖皮质激素过量的药物中断骨质细胞稳态,加剧骨质和微观结构损失升高骨质疏松障碍的发病机制。发现热休克蛋白60(HSP60)在遇到有害压力时,在细胞微环境中维持蛋白质功能。在这项研究中,我们揭示了求甲基塞酮的求甲基溶解在成骨细胞培养物中减少了HSP60表达。该伴侣素需要维持自噬标志物ATG4,以及ATG12表达,LC3-II转化和自噬斑块形成,并减轻了糖皮质激素诱导的成骨基因表达和矿化基质积累的丧失。 MTOR复合物1(Rptor)的调节剂相关蛋白质存在于HSP60免疫沉淀曲线中,这有助于HSP60促进的自噬和骨肉发生,因为敲击rptor受损的自噬稀释和成骨活性。 HSP60通过减少糖皮质激素诱导的Rptor脱磷酸化,聚集和泛素化来屏蔽Rptor功能障碍。在体内,强制性的rptor表达抑制了小鼠中甲基妥甲酮诱导的成骨细胞自噬,骨质量和小梁微观结构的丧失。 HSP60转基因小鼠展示皮质骨,矿物质采集和成骨细胞增殖以及骨髓间充质细胞的骨髓间充质细胞较高的骨髓细胞增殖。 HSP60过表达保留RPTOR信号传导,持续的成骨细胞自噬,并损害了糖皮质激素诱导的骨质损失和稀疏小梁组织病理学的严重程度。一起服用,HSP60对于维持骨质细胞自噬是必不可少的,这有利于矿化基质生产。通过稳定Rptor作用对自噬稳定,促使糖皮质激素诱导的成骨细胞凋亡和骨质损失。本研究提供了进入机械的新洞察力,伴侣素保护针对糖皮质激素诱导的成骨细胞功能障碍和骨损失。

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