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Tumor Transplantation for Assessing the Dynamics of Tumor-Infiltrating CD8+ T Cells in Mice
Published on: June 12, 2021
Ectopic expression of X-linked lymphocyte-regulated protein pM1 renders tumor cells resistant to antitumor immunity
Tae Heung Kang1, Kyung Hee Noh, Jin Hee Kim
1Divison of Infection and Immunology, Graduate School of Medicine, Korea University, Seoul, South Korea.
Abstract:
Tumor immune escape is a major obstacle in cancer immunotherapy, but the mechanisms involved remain poorly understood. We have previously developed an immune evasion tumor model using an in vivo immune selection strategy and revealed Akt-mediated immune resistance to antitumor immunity induced by various cancer immunotherapeutic agents. In the current study, we used microarray gene analysis to identify an Akt-activating candidate molecule overexpressed in immune-resistant tumors compared with parental tumors. X-linked lymphocyte-regulated protein pM1 (XLR) gene was the most upregulated in immune-resistant tumors compared with parental tumor cells. Furthermore, the retroviral transduction of XLR in parental tumor cells led to activation of Akt, resulting in upregulation of antiapoptotic proteins and the induction of immune resistance phenotype in parental tumor cells. In addition, we found that transduction of parental tumor cells with other homologous genes from the mouse XLR family, such as synaptonemal complex protein 3 (SCP3) and XLR-related, meiosis-regulated protein (XMR) and its human counterpart of SCP3 (hSCP3), also led to activation of Akt, resulting in the upregulation of antiapoptotic proteins and induction of immune resistance phenotype. Importantly, characterization of a panel of human cervical cancers revealed relatively higher expression levels of hSCP3 in human cervical cancer tissue compared with normal cervical tissue. Thus, our data indicate that ectopic expression of XLR and its homologues in tumor cells represents a potentially important mechanism for tumor immune evasion and serves as a promising molecular target for cancer immunotherapy.
Insights
Tumor immune evasion, a hurdle in cancer immunotherapy, is linked to the XLR gene. This gene activates Akt, promoting tumor resistance and offering a new therapeutic target.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Tumor immune escape hinders cancer immunotherapy effectiveness.
- Mechanisms of immune evasion are not fully understood.
- Akt-mediated resistance is a known factor in immunotherapy failure.
Purpose of the Study:
- Identify molecules involved in Akt-mediated tumor immune resistance.
- Investigate the role of X-linked lymphocyte-regulated protein (XLR) in immune evasion.
- Explore XLR homologues and their role in human cancers.
Main Methods:
- Developed an in vivo immune evasion tumor model.
- Utilized microarray gene analysis to compare tumor types.
- Employed retroviral transduction to study gene function in tumor cells.
- Analyzed human cervical cancer tissues for gene expression.
Main Results:
- XLR gene was significantly upregulated in immune-resistant tumors.
- XLR gene activation of Akt led to antiapoptotic protein upregulation and immune resistance.
- Homologous genes (SCP3, XMR, hSCP3) also induced Akt activation and immune resistance.
- Higher hSCP3 expression was observed in human cervical cancer tissues.
Conclusions:
- Ectopic expression of XLR and its homologues is a potential mechanism for tumor immune evasion.
- These genes represent promising molecular targets for cancer immunotherapy.
- Targeting XLR or its homologues could enhance antitumor immunity.
