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Defective chaperone-mediated autophagy is a hallmark of joint disease in patients with knee osteoarthritis

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Creative Commons Attribution-NonCommercial-NoDerivs 4.0 International License (CC-BY-NC-ND 4.0)
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Título
Defective chaperone-mediated autophagy is a hallmark of joint disease in patients with knee osteoarthritis
Autor(es)
Lorenzo-Gómez, Irene
Nogueira Recalde, Uxía
García-Domínguez, C.
Oreiro, Natividad
Lotz, Martin
Pinto-Tasende, José A.
Blanco García, Francisco J
Caramés, Beatriz
Fecha
2023-03-08
Cita bibliográfica
Lorenzo-Gómez I, Nogueira-Recalde U, García-Domínguez C, Oreiro-Villar N, Lotz M, Pinto-Tasende JA, Blanco FJ, Caramés B. Defective chaperone-mediated autophagy is a hallmark of joint disease in patients with knee osteoarthritis. Osteoarthritis Cartilage. 2023 Jul;31(7):919-933.
Resumen
[Abstract] Objective: Defects in autophagy contribute to joint aging and Osteoarthritis (OA). Identifying specific autophagy types could be useful for developing novel treatments for OA. Design: An autophagy-related gene array was performed in blood from non-OA and knee OA subjects from the Prospective Cohort of A Coruña (PROCOAC). The differential expression of candidate genes was confirmed in blood and knee cartilage and a regression analysis was performed adjusting for age and BMI. HSP90A, a chaperone mediated autophagy (CMA) marker was validated in human knee joint tissues, as well as, in mice with aging-related and surgically-induced OA. The consequences of HSP90AA1 deficiency were evaluated on OA pathogenesis. Finally, the contribution of CMA to homeostasis was studied by assessing the capacity to restore proteostasis upon ATG5-mediated macroautophagy deficiency and genetic HSP90AA1 overexpression. Results: 16 autophagy-related genes were significantly down-regulated in blood from knee OA subjects. Validation studies showed that HSP90AA1 was down-regulated in blood and human OA cartilage and correlated with risk incidence of OA. Moreover, HSP90A was reduced in human OA joints tissues and with aging and OA in mice. HSP90AA1 knockdown was linked to defective macroautophagy, inflammation, oxidative stress, senescence and apoptosis. However, macroautophagy deficiency increased CMA, highlighting the CMA-macroautophagy crosstalk. Remarkably, CMA activation was sufficient to protect chondrocytes from damage. Conclusions: We show that HSP90A is a key chaperone for chondrocyte homeostasis, while defective CMA contributes to joint damage. We propose that CMA deficiency is a relevant disease mechanism and could represent a therapeutic target for OA.
Palabras clave
Aging
Chaperone mediated autophagy
Chondrocytes
Macroautophagy
Osteoarthritis
 
Versión del editor
https://doi.org/10.1016/j.joca.2023.02.076
Derechos
Creative Commons Attribution-NonCommercial-NoDerivs 4.0 International License (CC-BY-NC-ND 4.0)
ISSN
1063-4584

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