The TRPC1 Channel Forms a PI3K/CaM Complex and Regulates Pancreatic Ductal Adenocarcinoma Cell Proliferation in a Ca2+-Independent Manner

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  • Julie Schnipper
  • Sana Kouba
  • Frederic Hague
  • Alban Girault
  • Pierre Rybarczyk
  • Marie-Sophie Telliez
  • Stephanie Guenin
  • Riad Tebbakha
  • Henri Sevestre
  • Ahmed Ahidouch
  • Pedersen, Stine Helene Falsig
  • Halima Ouadid-Ahidouch

Dysregulation of the transient receptor canonical ion channel (TRPC1) has been found in several cancer types, yet the underlying molecular mechanisms through which TRPC1 impacts pancreatic ductal adenocarcinoma (PDAC) cell proliferation are incompletely understood. Here, we found that TRPC1 is upregulated in human PDAC tissue compared to adjacent pancreatic tissue and this higher expression correlates with low overall survival. TRPC1 is, as well, upregulated in the aggressive PDAC cell line PANC-1, compared to a duct-like cell line, and its knockdown (KD) reduced cell proliferation along with PANC-1 3D spheroid growth by arresting cells in the G1/S phase whilst decreasing cyclin A, CDK2, CDK6, and increasing p21(CIP1) expression. In addition, the KD of TRPC1 neither affected Ca2+ influx nor store-operated Ca2+ entry (SOCE) and reduced cell proliferation independently of extracellular calcium. Interestingly, TRPC1 interacted with the PI3K-p85 alpha subunit and calmodulin (CaM); both the CaM protein level and AKT phosphorylation were reduced upon TRPC1 KD. In conclusion, our results show that TRPC1 regulates PDAC cell proliferation and cell cycle progression by interacting with PI3K-p85 alpha and CaM through a Ca2+-independent pathway.

OriginalsprogEngelsk
Artikelnummer7923
TidsskriftInternational Journal of Molecular Sciences
Vol/bind23
Udgave nummer14
Antal sider20
ISSN1661-6596
DOI
StatusUdgivet - 2022

ID: 316069920