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Updated: Apr 6, 2026

A Functional Assay for Gap Junctional Examination; Electroporation of Adherent Cells on Indium-Tin Oxide
Published on: October 18, 2014
Differential effects of polyoma virus middle tumor antigen mutants upon gap junctional, intercellular communication
Mulu Geletu1, Stephanie Guy1, Samantha Greer1
1Department of Biomedical and Molecular Sciences and Department of Pathology and Molecular Medicine, Queen's University, Kingston, Ontario, Canada K7L 3N6.
Abstract:
Gap junctions are channels that connect the cytoplasm of adjacent cells. Oncogenes such as the middle Tumor antigen of polyoma virus (mT) are known to suppress gap junctional, intercellular communication (GJIC). mT associates with and is tyrosine-phosphorylated by cSrc family members. Specific mT phosphotyrosines provide docking sites for the phosphotyrosine binding domain of Shc (mT-tyr250) or the SH2 domain of the regulatory subunit of the phosphatidylinositol-3 kinase (PI3k, mT-tyr315). Binding results in the activation of their downstream signaling cascades, Ras/Raf/Erk and PI3 kinase/Akt, respectively, both of which are needed for full neoplastic transformation. To examine the effect of mT-initiated pathways upon gap junctional communication, GJIC was quantitated in rat liver epithelial T51B cells expressing mT-mutants, using a novel technique of in situ electroporation. The results demonstrate for the first time that, although even low levels of wild-type mT are sufficient to interrupt gap junctional communication, GJIC suppression still requires an intact tyr-250 site, that is activation of the Ras pathway. In sharp contrast, activation of the PI3k pathway is not required for GJIC suppression, indicating that GJIC suppression is independent of full neoplastic conversion and the concomitant morphological changes. Interestingly, expression of a constitutively active, myristylated form of the catalytic subunit of PI3k, p110, or the constitutively active mutants E545K and H1047R increased GJIC, while pharmacological inhibition of PI3k eliminated communication. Therefore, although PI3k is growth promoting and in an activated form it can act as an oncogene, it actually plays a positive role upon gap junctional, intercellular communication.
Insights
Polyoma virus middle Tumor antigen (mT) suppresses gap junctional communication by activating the Ras pathway, not the PI3k pathway. Activated PI3k actually enhances communication, revealing a complex role in cell signaling.
Area of Science:
- Cell Biology
- Molecular Oncology
- Virology
Background:
- Gap junctions are crucial for intercellular communication, connecting adjacent cell cytoplasms.
- Oncogenic proteins, like polyoma virus middle Tumor antigen (mT), can disrupt this communication.
- mT interacts with cellular kinases, leading to downstream signaling pathways implicated in cancer development.
Purpose of the Study:
- To investigate how mT-initiated signaling pathways affect gap junctional intercellular communication (GJIC).
- To determine the specific roles of the Ras/Raf/Erk and PI3 kinase/Akt pathways in mT-mediated GJIC suppression.
Main Methods:
- Utilized rat liver epithelial T51B cells expressing mT mutants.
- Employed in situ electroporation to quantify GJIC.
- Analyzed the impact of specific mT phosphotyrosine mutations on signaling pathways and GJIC.
Main Results:
- Wild-type mT suppresses GJIC even at low levels.
- GJIC suppression by mT requires an intact tyr-250 site, indicating Ras pathway activation is essential.
- Activation of the PI3k pathway is not necessary for GJIC suppression and appears independent of neoplastic transformation.
- Activated PI3k signaling paradoxically increases GJIC, while PI3k inhibition reduces it.
Conclusions:
- mT-induced GJIC suppression is primarily mediated by the Ras pathway, not the PI3k pathway.
- GJIC suppression by mT is separable from full neoplastic transformation and morphological changes.
- Phosphatidylinositol-3 kinase (PI3k) plays a positive role in maintaining gap junctional communication, despite its oncogenic potential.
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