4.6 Article

Differential effects of calcium on PI3K-Akt and HIF-1α survival pathways

期刊

CELL BIOLOGY AND TOXICOLOGY
卷 32, 期 5, 页码 437-449

出版社

SPRINGER
DOI: 10.1007/s10565-016-9345-x

关键词

Calcium; Akt kinase; Hypoxia-inducible factor 1; Cancer; Epithelial; Thapsigargin

资金

  1. National Scholarships Foundation of Greece
  2. Special Account for Research Grants of the National and Kapodistrian University of Athens

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Calcium signaling participates in the regulation of numberless cellular functions including cell cycle progression and cellular migration, important processes for cancer expansion. Cancer cell growth, migration, and invasion are typically supported by PI3K/Akt activation, while a hypoxic environment is critical in cancer development. Accordingly, in the present study, we aimed at investigating whether perturbations in calcium homeostasis induce alterations of HIF-1 alpha and activate Akt levels in epithelial A549 and A431 cells. Survival was drastically reduced in the presence of calcium chelator BAPTA-AM and thapsigargin, a SERCA inhibitor inducing store-operated calcium entry, to a lesser extent. Calcium chelation provoked a transient but strong upregulation of HIF-1 alpha protein levels and accumulation in the nucleus, whereas in the presence of thapsigargin, HIF-1 alpha levels were rapidly abolished before reaching and exceeding control levels. Despite cell death, calcium chelation merely inhibited Akt, which was significantly activated in the presence of thapsigargin. Moreover, when store-operated calcium entry was simulated by reintroducing calcium ions in cell suspensions, Akt was rapidly activated in the absence of any growth factor. These data further underscore the growing importance of calcium entry and directly link this elementary event of calcium homeostasis to the Akt pathway, which is commonly deregulated in cancer.

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