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Sec61β controls sensitivity to platinum-containing chemotherapeutic agents through modulation of the
Paolo B Abada1, Christopher A Larson, Gerald Manorek
1Moores UCSD Cancer Center, La Jolla, CA 92093-0819, USA. pabada@ucsd.edu
Abstract:
The Sec61 protein translocon is a multimeric complex that transports proteins across lipid bilayers. We discovered that the Sec61β subunit modulates cellular sensitivity to chemotherapeutic agents, particularly the platinum drugs. To investigate the mechanism, expression of Sec61β was constitutively knocked down in 2008 ovarian cancer cells. Sec61β knockdown (KD) resulted in 8-, 16.8-, and 9-fold resistance to cisplatin (cDDP), carboplatin, and oxaliplatin, respectively. Sec61β KD reduced the cellular accumulation of cDDP to 67% of that in parental cells. Baseline copper levels, copper uptake, and copper cytotoxicity were also reduced. Because copper transporters and chaperones regulate platinum drug accumulation and efflux, their expression in 2008 Sec61β-KD cells was analyzed; ATP7A was found to be 2- to 3-fold overexpressed, whereas there was no change in ATP7B, ATOX1, CTR1, or CTR2 levels. Cells lacking ATP7A did not exhibit increased cDDP resistance upon knockdown of Sec61β. Sec61β-KD cells also exhibited altered ATP7A cellular distribution. We conclude that Sec61β modulates the cytotoxicity of many chemotherapeutic agents, with the largest effect being on the platinum drugs. This modulation occurs through effects of Sec61β on the expression and distribution of ATP7A, which was shown previously to control platinum drug sequestration and cytotoxicity.
Insights
The Sec61β subunit significantly impacts ovarian cancer cell sensitivity to platinum-based chemotherapy drugs. Its knockdown confers resistance by altering copper transporter ATP7A expression and distribution.
Area of Science:
- Cell Biology
- Molecular Oncology
- Drug Discovery
Background:
- The Sec61 protein translocon facilitates protein transport across lipid bilayers.
- Cellular sensitivity to chemotherapeutic agents is crucial for treatment efficacy.
- Platinum-based drugs are widely used in cancer therapy.
Purpose of the Study:
- To investigate the role of the Sec61β subunit in modulating cellular sensitivity to platinum-based chemotherapeutic agents.
- To elucidate the underlying molecular mechanisms by which Sec61β influences drug response.
Main Methods:
- Constitutive knockdown of Sec61β expression in 2008 ovarian cancer cells.
- Assessment of cellular resistance and accumulation of cisplatin (cDDP), carboplatin, and oxaliplatin.
- Analysis of copper levels, uptake, and cytotoxicity.
- Evaluation of copper transporter and chaperone gene expression (ATP7A, ATP7B, ATOX1, CTR1, CTR2).
- Investigation of ATP7A's role in cDDP resistance and its cellular distribution.
Main Results:
- Sec61β knockdown (KD) conferred significant resistance to cisplatin (8-fold), carboplatin (16.8-fold), and oxaliplatin (9-fold).
- Sec61β KD reduced cellular cisplatin accumulation to 67% of parental cells.
- ATP7A was overexpressed (2-3 fold) in Sec61β KD cells, while other copper-related genes remained unchanged.
- Cells lacking ATP7A did not show increased cDDP resistance upon Sec61β KD.
- Altered ATP7A cellular distribution was observed in Sec61β KD cells.
Conclusions:
- Sec61β plays a critical role in modulating cellular sensitivity to platinum-based chemotherapeutic agents.
- The mechanism involves Sec61β's influence on the expression and cellular distribution of the copper transporter ATP7A.
- ATP7A appears to mediate platinum drug sequestration and cytotoxicity, thus impacting treatment outcomes.
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