Activation of choline kinase by extracellular Ca is Ca-sensing receptor, Gα12 and Rho-dependent in breast cancer cells |
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Authors: | Chunfa Huang Lindsey M. Hydo Shiguo Liu R. Tyler Miller |
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Affiliation: | aLouis Stokes Cleveland Veteran Affairs Medical Center, Cleveland, Ohio 44106, United States;bDepartment of Medicine, Case Western Reserve University, Cleveland, Ohio 44106, United States;cRammelkamp Center for Research and Education, MetroHealth System Campus, Cleveland, Ohio 44106, United States |
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Abstract: | Breast cancer cell metastases to bone result in osteolysis and release of large quantities of Ca2+ into the bone microenviroment. Extracellular Ca2+ (Cao2+) acting through the Ca2+-sensing receptor (CaR), a member of G protein-coupled receptor superfamily, plays an important role in the regulation of multiple signaling pathways. Here, we find that expression of the CaR and Gα12 is significantly up-regulated in breast cancer cells (MDA-MB-231 and MCF-7) compared with nonmalignant breast cells (Hs 578Bst and MCF-10A). Cao2+ induces a significant increase in extracellular [3H]phosphocholine (P-cho) production in breast cancer cells. Using an anti-CaR antibody to block Cao2+ binding to the CaR and small interfering RNA (siRNA) to silence CaR gene expression, our data demonstrate that [3H]P-cho production in response to Cao2+-stimulation is CaR-dependent. By analyzing cellular lipid profiles and using siRNA to silence choline kinase (ChoK) expression, we determine that the production of [3H]P-cho is primarily related to CaR-induced ChoK activation, and not degradation of choline phospholipids. Finally, by pretreatment of the cells with either pertussis toxin or C3 exoenzyme, co-immunoprecipiation of Gαi, Gαq or Gα12 with the CaR, and RhoA translocation, we found that the enhancement of ChoK activation and P-cho production in breast cancer cells occurs via a CaR-Gα12-Rho signaling pathway. |
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Keywords: | Ca2+-sensing receptor Breast cancer cells Phosphocholine Choline kinase Gα 12 |
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