Primary human chondrocytes respond to compression with plasma membrane receptors and by microtubule activation: a phosphoproteomic study
Zignego, D. L.; Hilmer, J. K.; Bothner, B.; Schell, W. J.; June, R.
Show abstract
Chondrocytes are responsible for maintaining the cartilage that helps joints like the knee and hip bear load and move smoothly. These cells typically respond to physiological compression with pathways consistent with matrix synthesis, and chondrocyte mechanotransduction is essential for tissue and joint homeostasis. In osteoarthritis (OA), chondrocyte mechanotransduction appears to be dysregulated, yet many pathways and mechanisms of osteoarthritic chondrocyte mechanotransduction remain poorly understood. The objective of this study is to document the phosphoproteomic responses of primary osteoarthritic chondrocytes to physiological sinusoidal compression. Here we show that OA chondrocytes respond to physiological compression by first activating proteins consistent with cytoskeletal remodeling and decreased transcription, and then later activating proteins for transcription. These results show that several microtubule-related proteins respond to compression, as well as proteins related to calcium signaling, which has previously been extensively shown in chondrocytes. Our results demonstrate that compression is a relevant physiological stimulus for osteoarthritic chondrocytes. We anticipate these data to be a starting point for more sophisticated analysis of both normal and osteoarthritic chondrocyte mechanotransduction. For example, finding differences in compression-induced phosphoproteins between normal and OA cells may lead to druggable targets to restore homeostasis to diseased joints.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Endogenous production of hyaluronan, PRG4, and cytokines is sensitive to cyclic loading in synoviocytes 95%
- Potential mechanisms of action of celastrol against rheumatoid arthritis: transcriptomic and proteomic analysis 94%
- Generation and characterization of two immortalized dermal fibroblast cell lines from the spiny mouse (Acomys) 94%
Similar papers in this journal
- Mast cells differentiated in synovial fluid and resident in osteophytes exalt the inflammatory pathology of osteoarthritis 95%
- A naturally occurring urinary collagen type I alpha 1-derived peptide inhibits collagen type I-induced endothelial cell migration at physiological concentrations 94%
- Joint degeneration in a mouse model of pseudoachondroplasia: ER stress, inflammation and autophagy blockage 94%
Similar papers in this journal
Similar papers in this journal
- Correlations between metabolites in the synovial fluid and serum: a mouse injury study 95%
- Estrogen and progesterone exhibit distinct yet coordinated roles in the regulation of tendon extracellular matrix remodeling 93%
- Female Anterior Cruciate Ligaments Exhibit a Muted Mechanobiological Response to Mechanical Loading 92%
Similar papers in this journal
- Mesenchymal Stromal Cells Donate Mitochondria to Articular Chondrocytes Exposed to Mitochondrial, Environmental, and Mechanical Stress 93%
- Rcn3 is Involved in Postnatal Tendon Development by Regulating Collagen Modification and Fibrillogenesis 93%
- Combined stimuli of elasticity and microgrooves form aligned myotubes that characterize slow-twitch muscles 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.