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Deficiency in ClC-3 chloride channels prevents rat aortic smooth muscle cell proliferation
Guan-Lei Wang1, Xue-Rong Wang, Mo-Jun Lin
1Department of Pharmacology, Zhongshan Medical College, Sun Yat-Sen University, Guangzhou, People's Republic of China.
Abstract:
Recent growing evidence suggests that chloride (Cl-) channels are critical to the cell cycle. In cultured rat aortic vascular smooth muscle cells (VSMCs), we have previously found that Cl- channel blockers inhibit endothelin-1 (ET-1)-induced cell proliferation. The present study was designed to further identify the specific Cl- channels responsible for VSMC proliferation. Due to the lack of a specific blocker or opener of any known Cl- channels, we used the antisense strategy to investigate the potential role of ClC-3, a member of the voltage-gated Cl- channel gene family, in cell proliferation of cultured rat aortic VSMCs. With [3H]-thymidine incorporation and immunoblots, we found that ET-1-induced cell proliferation was parallel to a significant increase in the endogenous expression of ClC-3 protein. Transient transfection of rat aortic VSMCs with antisense oligonucleotide specific to ClC-3 caused an inhibition in ET-1-induced expression of ClC-3 protein and cell proliferation of VSMCs in the same concentration- and time-dependent pattern, whereas sense and missense oligonucleotides resulted in no effects on ClC-3 protein expression and cell proliferation. These results strongly suggest that ClC-3 may be the Cl- channel involved in VSMC proliferation and thus provide compelling molecular evidence linking a specific Cl- channel to cell proliferation. The full text of this article is available at http://www.circresaha.org.
Insights
Chloride channel ClC-3 is crucial for vascular smooth muscle cell proliferation. Inhibiting ClC-3 with antisense oligonucleotides blocks endothelin-1-induced cell growth, linking this channel to the cell cycle.
Area of Science:
- Molecular Biology
- Cell Biology
- Physiology
Background:
- Chloride (Cl-) channels play a role in the cell cycle.
- Cl- channel blockers inhibit endothelin-1 (ET-1)-induced vascular smooth muscle cell (VSMC) proliferation.
Purpose of the Study:
- Identify specific Cl- channels involved in VSMC proliferation.
- Investigate the role of ClC-3 in ET-1-induced VSMC proliferation using an antisense strategy.
Main Methods:
- Cultured rat aortic VSMCs were used.
- Antisense oligonucleotide strategy targeting ClC-3.
- [3H]-thymidine incorporation and immunoblots were employed to assess proliferation and protein expression.
Main Results:
- ET-1 induced VSMC proliferation and increased endogenous ClC-3 protein expression.
- Antisense oligonucleotides against ClC-3 inhibited ET-1-induced ClC-3 protein expression and VSMC proliferation.
- Sense and missense oligonucleotides had no significant effect.
Conclusions:
- ClC-3 is strongly suggested to be the Cl- channel involved in VSMC proliferation.
- Provides molecular evidence linking ClC-3 to cell proliferation.
- Highlights ClC-3 as a potential therapeutic target for conditions involving VSMC proliferation.