Functional gene screening system identified TRPV4 as a regulator of chondrogenic differentiation

Shuji Muramatsu1, Makoto Wakabayashi, Takeshi Ohno

  • 1Laboratory for Drug Discovery, Research Center, Asahi Kasei Pharma Corp., 2-1 Samejima, Fuji, Shizuoka 416-8501, Japan. muramatsu.sb@om.asahi-kasei.co.jp

Insights

Transient receptor potential vanilloid 4 (TRPV4) activates the Sox9 pathway, crucial for chondrogenesis. This cation channel

Area of Science:

  • Molecular Biology
  • Cell Biology
  • Developmental Biology

Background:

  • Sox9 is a key transcription factor for chondrocyte differentiation and gene expression.
  • The precise mechanisms regulating Sox9 activation during chondrogenesis remain incompletely understood.

Purpose of the Study:

  • To identify genes that activate SOX9-dependent transcription during chondrogenesis.
  • To elucidate the role of TRPV4 in regulating Sox9 and chondrogenesis.

Main Methods:

  • Functional gene screening using ATDC5 chondrogenic cell line cDNA libraries.
  • Microarray and quantitative real-time PCR to analyze gene expression.
  • Pharmacological activation and inhibition of TRPV4, alongside siRNA knockdown.
  • Calcium signaling pathway analysis using EGTA and calmodulin inhibitors.

Main Results:

  • TRPV4 significantly enhances SOX9-dependent reporter activity.
  • TRPV4 expression patterns correlate with chondrogenic markers during chondrogenesis.
  • TRPV4 activation requires Ca2+/calmodulin signaling.
  • TRPV4 activation, combined with insulin or BMP-2, promotes glycosaminoglycan synthesis.
  • TRPV4 activation increases SOX9 and SOX6 mRNA and protein levels.

Conclusions:

  • TRPV4 acts as a regulator of the SOX9 pathway.
  • TRPV4 signaling contributes to chondrogenesis, particularly in conjunction with other growth factors.