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Involvement of gap junctions in tumor suppression: analysis of genetically-manipulated mice
Y Omori1, M L Zaidan Dagli, K Yamakage
1Unit of Multistage Carcinogenesis, International Agency for Research on Cancer, 150, cours Albert-Thomas, 69372 Cedex 08, Lyon, France. yasu@med.akita-u.ac.jp
Abstract:
Accumulating evidence indicates that gap junctions play an important role in the maintenance of normal cell growth, so that genes for the connexin gap junction proteins form a family of tumor-suppressor genes. Although mice from which nine types of connexin gene are deleted have been established, little information from carcinogenesis experiments with these mice is available. We have previously found several mutant forms of connexin 32 (Cx32) to be able to inhibit, in a dominant-negative manner, gap junctional intercellular communication (GJIC) exerted by wild-type Cx32. By introducing a gene for such a dominant-negative Cx32 mutant expressed under the control of a liver-specific albumin gene promoter, we have generated transgenic mouse lines in which the function of Cx32 is down-regulated only in the liver. Although GJIC was diminished in the transgenic liver as expected, the reduced GJIC did not affect viability nor the number of spontaneous liver tumors. Although susceptibility to diethylnitrosamine-induced hepatocarcinogenesis was significantly elevated in the transgenic mice, liver regeneration after partial hepatectomy was delayed compared with wild-type mice, suggesting that gap junctions function not only to suppress excessive cell growth but also to promote cell proliferation when necessary for normal function of tissues. Although the phenotype of Cx32-deficient mice was similar to that of the transgenic mice, the former showed more drastically altered phenotypes, i.e. increased BrdU incorporation in the quiescent liver and development of spontaneous liver tumors. We also established 3T3 fibroblasts from embryos lacking the Cx43 gene and characterized their growth. These fibroblasts showed no difference from the wild type in growth characteristics. From these and other studies, we suggest that gap junctions do not necessarily suppress cell growth but support an optimal growth rate.
Insights
Gap junctions, crucial for cell communication, do not always suppress cell growth. Down-regulating connexin 32 (Cx32) in mice liver impaired regeneration and increased cancer risk, suggesting a role in promoting optimal cell proliferation.
Area of Science:
- Cell Biology
- Molecular Biology
- Oncology
Background:
- Gap junctions, formed by connexin proteins, are vital for intercellular communication and cell growth regulation.
- Connexin genes are often considered tumor suppressors, but their precise role in carcinogenesis is not fully understood.
- Previous studies identified dominant-negative connexin 32 (Cx32) mutants that inhibit gap junctional intercellular communication (GJIC).
Purpose of the Study:
- To investigate the role of Cx32 in liver carcinogenesis and regeneration using transgenic mice with liver-specific Cx32 down-regulation.
- To explore the broader function of gap junctions in cell growth regulation beyond tumor suppression.
Main Methods:
- Generated transgenic mice with liver-specific expression of a dominant-negative Cx32 mutant.
- Assessed GJIC, spontaneous and induced hepatocarcinogenesis, and liver regeneration after partial hepatectomy in transgenic and wild-type mice.
- Characterized growth of Cx43-deficient fibroblasts.
Main Results:
- Reduced GJIC in transgenic livers did not affect viability or spontaneous tumor formation.
- Transgenic mice showed increased susceptibility to diethylnitrosamine-induced hepatocarcinogenesis.
- Liver regeneration was delayed in transgenic mice, and Cx32-deficient mice exhibited more severe phenotypes, including spontaneous tumors.
- Cx43-deficient fibroblasts showed normal growth characteristics.
Conclusions:
- Gap junctions, specifically Cx32, do not solely act as tumor suppressors.
- Gap junctions support optimal cell proliferation and tissue function, rather than just suppressing excessive growth.
- The findings suggest a dual role for gap junctions in both preventing and promoting cell proliferation as needed.