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伴侣蛋白介导的自噬缺陷是膝骨关节炎患者关节疾病的一个标志。

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

机构信息

Unidad de Biología del Cartílago, Grupo de Investigación en Reumatología (GIR), Instituto de Investigación Biomédica de A Coruña (INIBIC), Complejo Hospitalario Universitario de A Coruña (CHUAC), Sergas, Universidade da Coruña (UDC), A Coruña, Spain.

Unidad de Reumatología Clínica, GIR, CHUAC, Sergas, A Coruña, Spain.

出版信息

Osteoarthritis Cartilage. 2023 Jul;31(7):919-933. doi: 10.1016/j.joca.2023.02.076. Epub 2023 Mar 8.


DOI:10.1016/j.joca.2023.02.076
PMID:36893980
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.

摘要

目的:自噬缺陷导致关节老化和骨关节炎(OA)。确定特定的自噬类型可能有助于开发 OA 的新疗法。

设计:对来自非 OA 和膝骨关节炎(OA)患者的血液进行了自噬相关基因芯片分析,这些患者来自拉科鲁尼亚前瞻性队列研究(PROCOAC)。在血液和膝关节软骨中验证了候选基因的差异表达,并进行了回归分析,以调整年龄和 BMI。HSP90A,一种伴侣介导的自噬(CMA)标志物,在人类膝关节组织中得到了验证,在与衰老相关和手术诱导的 OA 小鼠中也得到了验证。评估 HSP90AA1 缺陷对 OA 发病机制的影响。最后,通过评估 ATG5 介导的巨自噬缺陷和遗传 HSP90AA1 过表达恢复蛋白质平衡的能力,研究 CMA 对体内平衡的贡献。

结果:在膝骨关节炎患者的血液中,有 16 种自噬相关基因显著下调。验证研究表明,HSP90AA1 在血液和人类 OA 软骨中下调,并与 OA 的发病风险相关。此外,HSP90A 在人类 OA 关节组织中减少,与衰老和 OA 小鼠中减少。HSP90AA1 敲低与缺陷的巨自噬、炎症、氧化应激、衰老和凋亡有关。然而,巨自噬缺陷增加了 CMA,突出了 CMA-巨自噬的串扰。值得注意的是,CMA 的激活足以保护软骨细胞免受损伤。

结论:我们表明 HSP90A 是软骨细胞体内平衡的关键伴侣,而缺陷的 CMA 导致关节损伤。我们提出 CMA 缺陷是一种相关的疾病机制,可能是 OA 的治疗靶点。

相似文献

[1]
Defective chaperone-mediated autophagy is a hallmark of joint disease in patients with knee osteoarthritis.

Osteoarthritis Cartilage. 2023-7

[2]
Chaperonin 60 regulation of SOX9 ubiquitination mitigates the development of knee osteoarthritis.

J Mol Med (Berl). 2016-7

[3]
Loss of Vhl in cartilage accelerated the progression of age-associated and surgically induced murine osteoarthritis.

Osteoarthritis Cartilage. 2014-8

[4]
1,25-Dihydroxyvitamin D Deficiency Accelerates Aging-related Osteoarthritis via Downregulation of Sirt1 in Mice.

Int J Biol Sci. 2023

[5]
MicroRNA-128a represses chondrocyte autophagy and exacerbates knee osteoarthritis by disrupting Atg12.

Cell Death Dis. 2018-9-11

[6]
Regulated in Development and DNA Damage Response 1 Deficiency Impairs Autophagy and Mitochondrial Biogenesis in Articular Cartilage and Increases the Severity of Experimental Osteoarthritis.

Arthritis Rheumatol. 2017-6-2

[7]
Fibrates as drugs with senolytic and autophagic activity for osteoarthritis therapy.

EBioMedicine. 2019-7-5

[8]
HOTAIR-induced apoptosis is mediated by sponging miR-130a-3p to repress chondrocyte autophagy in knee osteoarthritis.

Cell Biol Int. 2019-11-12

[9]
Potential involvement of oxidative stress in cartilage senescence and development of osteoarthritis: oxidative stress induces chondrocyte telomere instability and downregulation of chondrocyte function.

Arthritis Res Ther. 2005

[10]
Effectiveness of Radiofrequency Hyperthermia for Treating Cartilage in Guinea Pigs with Primary Osteoarthritis.

Cartilage. 2018-1

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Autophagy Rep. 2025-8-25

[2]
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Sci Rep. 2025-7-22

[3]
Platelet-rich plasma combined with isometric quadriceps contraction regulates autophagy in chondrocytes via the PI3K/AKT/mTOR pathway to promote cartilage repair in knee osteoarthritis.

Regen Ther. 2024-12-4

[4]
Traditional Chinese Manual Therapy (Tuina) Improves Knee Osteoarthritis by Regulating Chondrocyte Autophagy and Apoptosis via the PI3K/AKT/mTOR Pathway: An in vivo Rat Experiment and Machine Learning Study.

J Inflamm Res. 2024-9-17

[5]
LL37-mtDNA regulates viability, apoptosis, inflammation, and autophagy in lipopolysaccharide-treated RLE-6TN cells by targeting Hsp90aa1.

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[6]
Proteome and phospholipidome interrelationship of synovial fluid-derived extracellular vesicles in equine osteoarthritis: An exploratory 'multi-omics' study to identify composite biomarkers.

Biochem Biophys Rep. 2024-1-18

[7]
Aging and the emerging role of cellular senescence in osteoarthritis.

Osteoarthritis Cartilage. 2024-4

[8]
Research and publication trends on knee osteoarthritis and cellular senescence: a bibliometric analysis.

Front Physiol. 2023-11-17

[9]
Chaperone-mediated autophagy: Molecular mechanisms, biological functions, and diseases.

MedComm (2020). 2023-8-30

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