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Connexins in tumour suppression and cancer therapy
H Yamasaki1, Y Omori, V Krutovskikh
1Multistage Carcinogenesis Unit, International Agency for Research on Cancer, Lyon, France.
Abstract:
Malignant cells usually show altered gap junctional intercellular communication and are often associated with aberrant expression or localization of connexins. Transfection of connexin genes into tumorigenic cells restores normal cell growth, suggesting that connexins form a family of tumour suppressor genes. Some studies have also shown that specific connexins may be necessary to control growth of specific cell types. Although we have found that genes encoding connexin32 (Cx32; beta 1), Cx37 (alpha 4) and Cx43 (alpha 1) are rarely mutated in tumours, our recent studies suggest that methylation of the connexin gene promoter may be a mechanism by which connexin gene expression is down-regulated in certain tumors. We have produced various dominant negative mutants of the genes encoding Cx26 (beta 2), Cx32 and Cx43, some of which prevent the growth control exerted by the corresponding wild-type genes. A decade ago, we proposed a method to enhance killing of cancer cells by diffusion of therapeutic agents through gap junctions. Recently, we and others have shown that gap junctional intercellular communication is responsible for the bystander effect seen in herpes simplex virus thymidine kinase/ganciclovir gene therapy. Thus, connexin genes can exert dual effects in tumour control: tumour suppression and a bystander effect for cancer therapy.
Insights
Connexin genes, crucial for cell communication, act as tumor suppressors. They also enhance cancer therapy by enabling drug diffusion and bystander effects, offering dual roles in tumor control.
Area of Science:
- Cell Biology
- Molecular Oncology
- Cancer Genetics
Background:
- Malignant cells exhibit altered gap junctional intercellular communication (GJIC) and connexin expression.
- Connexins are implicated in regulating cell growth, with some acting as tumor suppressors.
- Aberrant connexin expression in tumors can result from gene mutation or promoter methylation.
Purpose of the Study:
- To investigate the role of connexin genes in tumor suppression and cancer therapy.
- To explore mechanisms of connexin gene down-regulation in tumors.
- To evaluate the therapeutic potential of connexins in cancer treatment.
Main Methods:
- Analysis of connexin gene mutations and promoter methylation in tumors.
- Generation of dominant-negative connexin mutants to study growth control.
- Investigation of GJIC-mediated drug diffusion and bystander effects in gene therapy.
Main Results:
- Connexin genes (Cx32, Cx37, Cx43) are rarely mutated but can be epigenetically silenced via promoter methylation.
- Dominant-negative mutants of Cx26, Cx32, and Cx43 can inhibit growth control.
- GJIC facilitates therapeutic agent diffusion and mediates the bystander effect in gene therapy.
Conclusions:
- Connexin genes play a dual role in cancer: tumor suppression and enhancing cancer therapy.
- Targeting connexin-mediated GJIC offers novel therapeutic strategies for cancer treatment.