PI3K/AKT/mTOR通路
自噬
RPTOR公司
医学
细胞生物学
软骨细胞
mTORC2型
FOXO3公司
安普克
软骨
癌症研究
激酶
蛋白激酶B
雷帕霉素的作用靶点
mTORC1型
蛋白激酶A
信号转导
生物
细胞凋亡
解剖
生物化学
作者
Yue Zhang,Faezeh Vasheghani,Yinghua Li,Meryem Blati,Kayla Simeone,Hassan Fahmi,Bertrand Lussier,Peter J. Roughley,David Lagares,Jean‐Pierre Pelletier,Johanne Martel‐Pelletier,Mohit Kapoor
标识
DOI:10.1136/annrheumdis-2013-204599
摘要
Objectives Mammalian target of rapamycin (mTOR) (a serine/threonine protein kinase) is a major repressor of autophagy, a cell survival mechanism. The specific in vivo mechanism of mTOR signalling in OA pathophysiology is not fully characterised. We determined the expression of mTOR and known autophagy genes in human OA cartilage as well as mouse and dog models of experimental OA. We created cartilage-specific mTOR knockout (KO) mice to determine the specific role of mTOR in OA pathophysiology and autophagy signalling in vivo. Methods Inducible cartilage-specific mTOR KO mice were generated and subjected to mouse model of OA. Human OA chondrocytes were treated with rapamycin and transfected with Unc-51–like kinase 1 (ULK1) siRNA to determine mTOR signalling. Results mTOR is overexpressed in human OA cartilage as well as mouse and dog experimental OA. Upregulation of mTOR expression co-relates with increased chondrocyte apoptosis and reduced expression of key autophagy genes during OA. Subsequently, we show for the first time that cartilage-specific ablation of mTOR results in increased autophagy signalling and a significant protection from destabilisation of medial meniscus (DMM)-induced OA associated with a significant reduction in the articular cartilage degradation, apoptosis and synovial fibrosis. Furthermore, we show that regulation of ULK1/adenosine monophosphate-activated protein kinase (AMPK) signalling pathway by mTOR may in part be responsible for regulating autophagy signalling and the balance between catabolic and anabolic factors in the articular cartilage. Conclusions This study provides a direct evidence of the role of mTOR and its downstream modulation of autophagy in articular cartilage homeostasis.
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