Increased <i>MAGE-C</i> Family Gene Expression Levels as a Biomarker of Colon Cancer Through the Demethylation Mechanism
Background/Objectives: Colon cancer (CC) in Saudi Arabia is associated with a high death rate and is commonly identified at a more progressive stage. Therefore, it is critical to identify and characterize potential novel cancer-specific biomarkers to enhance early CC diagnosis. The goal was to asses...
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MDPI AG
2024-10-01
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| author | Mikhlid H. Almutairi Waad A. Alsoraie Turki M. Alrubie Ahmad S. Alkhaldi Nada S. Alhajri Monira A. Alaujan Manar H. Almutairi Bader O. Almutairi |
| author_facet | Mikhlid H. Almutairi Waad A. Alsoraie Turki M. Alrubie Ahmad S. Alkhaldi Nada S. Alhajri Monira A. Alaujan Manar H. Almutairi Bader O. Almutairi |
| author_sort | Mikhlid H. Almutairi |
| collection | DOAJ |
| description | Background/Objectives: Colon cancer (CC) in Saudi Arabia is associated with a high death rate and is commonly identified at a more progressive stage. Therefore, it is critical to identify and characterize potential novel cancer-specific biomarkers to enhance early CC diagnosis. The goal was to assess their potential use as cancer biomarkers for the early detection and improvement of CC treatment. Methods: <i>MAGE-C1</i>, <i>MAGE-C2</i>, and <i>MAGE-C3</i> family gene expression levels were examined using RT-PCR and qRT-PCR assays in 26 adjacent normal colon (NC) and CC tissue samples from male and female Saudi patients. Using several cell lines and the qRT-PCR technique, epigenetic control was also investigated to determine whether reduced treatment with 5-aza-2′-deoxycytidine, which reduces DNA methyltransferase, can increase the expression of the <i>MAGE-C</i> gene. The expression levels, promoter methylation, and prognostic significance of MAGE-C1, MAGE-C2, and MAGE-C3 genes across various cancers were analyzed using The Cancer Genome Atlas (TCGA) data. Additionally, the prognostic significance of these genes was assessed through Kaplan–Meier survival analysis. Results: The RT-PCR results showed that <i>MAGE-C1</i>, <i>MAGE-C2</i>, and <i>MAGE-C3</i> gene expressions were significantly higher in the CC and NC tissues. The <i>MAGE-C1</i> expression level was the highest in CC tissues (<i>p</i> < 0.0001), followed by <i>MAGE-C3</i> (<i>p</i> = 0.0004) and <i>MAGE-C2</i> (<i>p</i> = 0.0020) in descending order. The 5-aza-2′-deoxycytidine treatment significantly increased the mRNA expression levels of the <i>MAGE-C1</i>, <i>MAGE-C2</i>, and <i>MAGE-C3</i> genes in HCT116, Caco-2, MCF-7, and MCF-10A cells. Expression analyses of TCGA samples revealed significant upregulation of these genes in several cancer types, with notable differences between normal, tumor, and metastatic tissues. Promoter methylation indicates hypomethylation in cancerous tissues. Survival analyses show that high expression levels of MAGE-C1 correlate with better prognosis, while MAGE-C3 is associated with poorer outcomes. Conclusions: These results demonstrate that <i>MAGE-C</i> genes are viable prospective biomarkers of CC controlled by hypomethylating drugs, consequently offering a possible treatment target for CC in a specific population. |
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| language | English |
| publishDate | 2024-10-01 |
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| spelling | doaj-art-cb37cb7e9f3948a4b3a92acad8edb4f12025-08-20T01:54:08ZengMDPI AGPharmaceuticals1424-82472024-10-011711144710.3390/ph17111447Increased <i>MAGE-C</i> Family Gene Expression Levels as a Biomarker of Colon Cancer Through the Demethylation MechanismMikhlid H. Almutairi0Waad A. Alsoraie1Turki M. Alrubie2Ahmad S. Alkhaldi3Nada S. Alhajri4Monira A. Alaujan5Manar H. Almutairi6Bader O. Almutairi7Zoology Department, College of Science, King Saud University, P.O. Box 2455, Riyadh 11451, Saudi ArabiaZoology Department, College of Science, King Saud University, P.O. Box 2455, Riyadh 11451, Saudi ArabiaLaboratories Directorate, General Directorate of Animal Health, Ministry of Environment, Water and Agriculture, Riyadh 11195, Saudi ArabiaZoology Department, College of Science, King Saud University, P.O. Box 2455, Riyadh 11451, Saudi ArabiaZoology Department, College of Science, King Saud University, P.O. Box 2455, Riyadh 11451, Saudi ArabiaZoology Department, College of Science, King Saud University, P.O. Box 2455, Riyadh 11451, Saudi ArabiaZoology Department, College of Science, King Saud University, P.O. Box 2455, Riyadh 11451, Saudi ArabiaZoology Department, College of Science, King Saud University, P.O. Box 2455, Riyadh 11451, Saudi ArabiaBackground/Objectives: Colon cancer (CC) in Saudi Arabia is associated with a high death rate and is commonly identified at a more progressive stage. Therefore, it is critical to identify and characterize potential novel cancer-specific biomarkers to enhance early CC diagnosis. The goal was to assess their potential use as cancer biomarkers for the early detection and improvement of CC treatment. Methods: <i>MAGE-C1</i>, <i>MAGE-C2</i>, and <i>MAGE-C3</i> family gene expression levels were examined using RT-PCR and qRT-PCR assays in 26 adjacent normal colon (NC) and CC tissue samples from male and female Saudi patients. Using several cell lines and the qRT-PCR technique, epigenetic control was also investigated to determine whether reduced treatment with 5-aza-2′-deoxycytidine, which reduces DNA methyltransferase, can increase the expression of the <i>MAGE-C</i> gene. The expression levels, promoter methylation, and prognostic significance of MAGE-C1, MAGE-C2, and MAGE-C3 genes across various cancers were analyzed using The Cancer Genome Atlas (TCGA) data. Additionally, the prognostic significance of these genes was assessed through Kaplan–Meier survival analysis. Results: The RT-PCR results showed that <i>MAGE-C1</i>, <i>MAGE-C2</i>, and <i>MAGE-C3</i> gene expressions were significantly higher in the CC and NC tissues. The <i>MAGE-C1</i> expression level was the highest in CC tissues (<i>p</i> < 0.0001), followed by <i>MAGE-C3</i> (<i>p</i> = 0.0004) and <i>MAGE-C2</i> (<i>p</i> = 0.0020) in descending order. The 5-aza-2′-deoxycytidine treatment significantly increased the mRNA expression levels of the <i>MAGE-C1</i>, <i>MAGE-C2</i>, and <i>MAGE-C3</i> genes in HCT116, Caco-2, MCF-7, and MCF-10A cells. Expression analyses of TCGA samples revealed significant upregulation of these genes in several cancer types, with notable differences between normal, tumor, and metastatic tissues. Promoter methylation indicates hypomethylation in cancerous tissues. Survival analyses show that high expression levels of MAGE-C1 correlate with better prognosis, while MAGE-C3 is associated with poorer outcomes. Conclusions: These results demonstrate that <i>MAGE-C</i> genes are viable prospective biomarkers of CC controlled by hypomethylating drugs, consequently offering a possible treatment target for CC in a specific population.https://www.mdpi.com/1424-8247/17/11/1447<i>MAGE-C1</i><i>MAGE-C2</i><i>MAGE-C3</i>colon cancerexpression5-aza-2′-deoxycytidine |
| spellingShingle | Mikhlid H. Almutairi Waad A. Alsoraie Turki M. Alrubie Ahmad S. Alkhaldi Nada S. Alhajri Monira A. Alaujan Manar H. Almutairi Bader O. Almutairi Increased <i>MAGE-C</i> Family Gene Expression Levels as a Biomarker of Colon Cancer Through the Demethylation Mechanism Pharmaceuticals <i>MAGE-C1</i> <i>MAGE-C2</i> <i>MAGE-C3</i> colon cancer expression 5-aza-2′-deoxycytidine |
| title | Increased <i>MAGE-C</i> Family Gene Expression Levels as a Biomarker of Colon Cancer Through the Demethylation Mechanism |
| title_full | Increased <i>MAGE-C</i> Family Gene Expression Levels as a Biomarker of Colon Cancer Through the Demethylation Mechanism |
| title_fullStr | Increased <i>MAGE-C</i> Family Gene Expression Levels as a Biomarker of Colon Cancer Through the Demethylation Mechanism |
| title_full_unstemmed | Increased <i>MAGE-C</i> Family Gene Expression Levels as a Biomarker of Colon Cancer Through the Demethylation Mechanism |
| title_short | Increased <i>MAGE-C</i> Family Gene Expression Levels as a Biomarker of Colon Cancer Through the Demethylation Mechanism |
| title_sort | increased i mage c i family gene expression levels as a biomarker of colon cancer through the demethylation mechanism |
| topic | <i>MAGE-C1</i> <i>MAGE-C2</i> <i>MAGE-C3</i> colon cancer expression 5-aza-2′-deoxycytidine |
| url | https://www.mdpi.com/1424-8247/17/11/1447 |
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