Functional TRPV2 and TRPV4 channels in human cardiac c-kit(+) progenitor cells

Hui Che1, Guo-Sheng Xiao2, Hai-Ying Sun1

  • 1Department of Medicine, Li Ka Shing Faculty of Medicine, University of Hong Kong, Hong Kong, China.

Insights

Human cardiac progenitor cells express functional TRPV2 and TRPV4 ion channels. These channels regulate cell proliferation and migration, with TRPV2 specifically impacting cell cycle progression.

Area of Science:

  • Cardiovascular Biology
  • Cellular Physiology
  • Ion Channel Function

Background:

  • Human cardiac c-kit(+) progenitor cells are crucial for cardiac repair but their cellular physiology is not fully understood.
  • Transient Receptor Potential Vanilloid (TRPV) channels are implicated in various cellular functions, but their role in cardiac progenitor cells is largely unexplored.

Purpose of the Study:

  • To investigate the expression and function of TRPV channels in human cardiac c-kit(+) progenitor cells.
  • To determine the role of TRPV2 and TRPV4 in regulating the proliferation and migration of these cells.

Main Methods:

  • Gene and protein expression analysis of TRPV2 and TRPV4.
  • Pharmacological activation and blockade of TRPV channels.
  • Short hairpin RNA (shRNA) mediated gene silencing.
  • Cell proliferation assays (cell cycle analysis) and migration assays.
  • Western blot analysis for cell cycle and signaling proteins.

Main Results:

  • TRPV2 and TRPV4 genes and proteins are significantly expressed in human cardiac c-kit(+) progenitor cells.
  • TRPV2 and TRPV4 activators modulate intracellular calcium levels, effects inhibited by specific blockers and shRNA.
  • Silencing TRPV2, but not TRPV4, reduced cell proliferation by arresting the cell cycle.
  • Silencing of both TRPV2 and TRPV4 reduced cell migration.
  • TRPV2 silencing decreased cyclin D1, cyclin E, pERK1/2, and pAkt; TRPV4 silencing reduced pAkt.

Conclusions:

  • Functional TRPV2 and TRPV4 channels are expressed in human cardiac c-kit(+) progenitor cells.
  • TRPV2 plays a role in cell cycle progression, while both TRPV2 and TRPV4 are involved in cell migration.
  • These findings highlight TRPV channels as potential targets for modulating cardiac progenitor cell function.

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