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T-type Ca2+ channel expression in human esophageal carcinomas: a functional role in proliferation
Fengmin Lu1, Hairu Chen, Chun Zhou
1Department of Microbiology, Peking University Health Science Center, Beijing 100083, China.
Abstract:
In the present study the role of T-type Ca(2+) channels in cancer cell proliferation was examined. Seventeen human esophageal cancer cell lines were screened for T-type channels using RT-PCR and voltage-clamp recordings. mRNAs for all three T-type channel alpha(1)-subunits (alpha(1G), alpha(1H), and alpha(1I)) were detected in all 17 cell lines: either alpha(1H) alone, alpha(1H) and alpha(1G), or all three T-type alpha(1)-subunits. Eleven cell lines were further subjected to voltage-clamp recordings: one, i.e. the TE8 cell line, was found to exhibit a typical T-type current while others exhibited a minimal or no T-type current. Cell proliferation assays were performed in the presence or absence of T-type channel blocker mibefradil in KYSE150, KYSE180 and TE1 cells expressing mRNA for T-type channel alpha(1)-subunits but lacking T-type current, and TE8 cells exhibiting T-type current. Only TE8 cell proliferation was reduced by mibefradil. Silencing the alpha(1G)-gene that encodes functional T-type Ca(2+) channels in TE8 cells with type-specific shRNA transduction also significantly decreased TE8 cell proliferation. The reduction of cell proliferation in TE8 cells was found to be associated with an up-regulation of p21(CIP1). Moreover, p53 silencing nearly abolished the up-regulation of p21(CIP1) resulting from mibefradil T-type channel blockade. Together, these findings suggest a functional role of T-type channels in certain esophageal carcinomas, and that inhibition of T-type channels reduces cell proliferation via a p53-dependent p21(CIP1) pathway.
Insights
T-type calcium channels play a role in esophageal cancer cell proliferation. Inhibiting these channels, particularly alpha(1G)-subunits, reduced cancer cell growth through a p53-dependent pathway involving p21(CIP1).
Area of Science:
- Oncology
- Molecular Biology
- Channel Physiology
Background:
- T-type Ca(2+) channels are implicated in various cellular processes.
- Their specific role in esophageal cancer proliferation requires further elucidation.
Purpose of the Study:
- To investigate the functional role of T-type Ca(2+) channels in human esophageal cancer cell proliferation.
- To identify the molecular pathways involved in T-type channel-mediated proliferation.
Main Methods:
- Screening of 17 human esophageal cancer cell lines for T-type channel expression using RT-PCR and voltage-clamp recordings.
- Cell proliferation assays were conducted with and without the T-type channel blocker mibefradil.
- Gene silencing of alpha(1G)-subunits and p53 was performed using shRNA transduction.
Main Results:
- All 17 cell lines expressed mRNA for T-type channel alpha(1)-subunits, but only TE8 cells exhibited significant T-type current.
- Mibefradil treatment and alpha(1G)-gene silencing reduced proliferation specifically in TE8 cells.
- Reduced proliferation was linked to p21(CIP1) up-regulation, which was dependent on p53.
Conclusions:
- T-type Ca(2+) channels, particularly the alpha(1G)-subunit, play a functional role in the proliferation of certain esophageal cancer cells (e.g., TE8).
- Inhibition of T-type channels reduces esophageal cancer cell proliferation via a p53-dependent up-regulation of p21(CIP1).
- These findings suggest T-type channels as potential therapeutic targets in esophageal carcinoma.
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