Removal of the MDCK cell primary cilium abolishes flow sensing

H A Praetorius1, K R Spring

  • 1Water and Salt Research Center, IEKF, University of Aarhus, Brendstrupgaardsvej, DK8200 Aarhus N, Denmark. helle.praetorius@iekf.au.dk

Insights

The primary cilium acts as the sole sensor for fluid flow-induced calcium (Ca2+) responses in MDCK cells. Removing cilia abolishes this response, which is restored only after cilia regrowth.

Area of Science:

  • Cell Biology
  • Biophysics

Background:

  • The primary cilium is an organelle involved in cellular signaling.
  • Its role in mechanosensation, particularly fluid flow-induced calcium (Ca2+) responses, is under investigation.

Purpose of the Study:

  • To test the hypothesis that the primary cilium is solely responsible for the flow-induced Ca2+ response in Madin-Darby canine kidney (MDCK) cells.

Main Methods:

  • MDCK cells were treated with chloral hydrate to induce deciliation.
  • Immunofluorescence was used to visualize primary cilia and microtubules.
  • Intracellular Ca2+ concentration was measured using Fluo-4 under varying fluid flow conditions.

Main Results:

  • Chloral hydrate treatment led to complete loss of primary cilia and microtubule disorganization.
  • The flow-induced Ca2+ elevation was abolished in deciliated cells.
  • The Ca2+ response to mechanical contact remained unaffected, indicating the mobilization machinery was intact.
  • Restoration of the flow-induced Ca2+ response correlated with primary cilia regrowth.

Conclusions:

  • The primary cilium is the exclusive sensor for flow-induced Ca2+ responses in MDCK cells.
  • A single mechanosensitive channel in the primary cilium may mediate the Ca2+ influx.

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