Nuclear protein‐1 is the common link for pathways activated by aging and obesity in chondrocytes: A potential therapeutic target for osteoarthritis

Author:

Tan Li1,Armstrong Alexandra R.2,Rosas Samuel3,Patel Chirayu M.4,Vander Wiele Sabrina S.5,Willey Jeffrey S.4,Carlson Cathy S.2,Yammani Raghunatha R.1ORCID

Affiliation:

1. Section of Molecular Medicine, Department of Internal Medicine Wake Forest University School of Medicine Winston‐Salem North Carolina USA

2. Department of Veterinary Clinical Sciences, College of Veterinary Medicine University of Minnesota St. Paul Minnesota USA

3. Department of Orthopaedic Surgery Wake Forest University School of Medicine Winston‐Salem North Carolina USA

4. Department of Radiation Oncology Wake Forest University School of Medicine Winston‐Salem North Carolina USA

5. Department of Biomedical Engineering The College of New Jersey Ewing Township New Jersey USA

Abstract

AbstractPathways leading to osteoarthritis (OA) are diverse depending on the risk factors involved; thus, developing OA therapeutics has been challenging. Here we report that nuclear protein‐1 (Nupr1), a stress‐inducible protein/transcription factor, is activated by pathways associated with obesity and aging in chondrocytes. Treatment of human chondrocytes with free fatty acids (palmitate and oleate; a model for high‐fat diet/obesity) induced PERK signaling and increased expression of caspase‐3, TRB3, and Nupr1. On the other hand, treatment of chondrocytes with menadione (oxidative stress inducer) induced oxidation of IRE1, activated antioxidant response (higher Nrf2 expression), and increased expression of Nupr1 and matrix metalloproteinases. Experimental OA was induced by destabilization of the medial meniscus (DMM) in the knee joints of Nupr1+/+ and Nupr1/− mice. Loss of Nupr1 expression reduced the severity of cartilage lesions in this model. Together, our findings suggest that Nupr1 is a common factor activated by signaling pathways activated by obesity (ER stress) and age (oxidative stress) and a potential drug target for OA resulting from various risk factors.

Funder

National Institute of Arthritis and Musculoskeletal and Skin Diseases

Publisher

Wiley

Subject

Genetics,Molecular Biology,Biochemistry,Biotechnology

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