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Published on: June 7, 2019
Loss, mutation and deregulation of L3MBTL4 in breast cancers
Lynda Addou-Klouche1, José Adélaïde, Pascal Finetti
1Marseille Cancer Research Center, Department of Molecular Oncology, UMR891 Inserm, Institut Paoli-Calmettes, Marseille, France.
Background:
Many alterations are involved in mammary oncogenesis, including amplifications of oncogenes and losses of tumor suppressor genes (TSG). Losses may affect almost all chromosome arms and many TSGs remain to be identified.
Results:
We studied 307 primary breast tumors and 47 breast cancer cell lines by high resolution array comparative genomic hybridization (aCGH). We identified a region on 18p11.31 lost in about 20% of the tumors and 40% of the cell lines. The minimal common region of loss (Chr18:6,366,938-6,375,929 bp) targeted the L3MBTL4 gene. This gene was also targeted by breakage in one tumor and in two cell lines. We studied the exon sequence of L3MBTL4 in 180 primary tumor samples and 47 cell lines and found six missense and one nonsense heterozygous mutations. Compared with normal breast tissue, L3MBTL4 mRNA expression was downregulated in 73% of the tumors notably in luminal, ERBB2 and normal-like subtypes. Losses of the 18p11 region were associated with low L3MBTL4 expression level. Integrated analysis combining genome and gene expression profiles of the same tumors pointed to 14 other potential 18p TSG candidates. Downregulated expression of ZFP161, PPP4R1 and YES1 was correlated with luminal B molecular subtype. Low ZFP161 gene expression was associated with adverse clinical outcome.
Conclusion:
We have identified L3MBTL4 as a potential TSG of chromosome arm 18p. The gene is targeted by deletion, breakage and mutations and its mRNA is downregulated in breast tumors. Additional 18p TSG candidates might explain the aggressive phenotype associated with the loss of 18p in breast tumors.
Insights
L3MBTL4 is a potential tumor suppressor gene on chromosome 18p in breast cancer. It is frequently lost, mutated, or downregulated in tumors, suggesting its role in mammary oncogenesis.
Area of Science:
- Genomics
- Cancer Biology
- Molecular Oncology
Background:
- Mammary oncogenesis involves gene amplifications and tumor suppressor gene (TSG) losses.
- Numerous TSGs remain unidentified, particularly on chromosome arms affected by widespread losses.
Purpose of the Study:
- To identify novel tumor suppressor genes (TSGs) on chromosome arm 18p involved in breast cancer.
- To investigate the role of the L3MBTL4 gene in mammary oncogenesis.
Main Methods:
- High-resolution array comparative genomic hybridization (aCGH) on 307 primary breast tumors and 47 cell lines.
- Exome sequencing of L3MBTL4 in 180 primary tumors and 47 cell lines.
- Gene expression profiling and integrated genomic analysis.
Main Results:
- A specific region on 18p11.31 was frequently lost in breast tumors and cell lines, targeting the L3MBTL4 gene.
- L3MBTL4 exhibited heterozygous mutations (missense and nonsense) and its mRNA expression was significantly downregulated in 73% of tumors.
- Losses in the 18p11 region correlated with reduced L3MBTL4 expression, and 14 additional 18p TSG candidates were identified.
Conclusions:
- L3MBTL4 is identified as a potential tumor suppressor gene on chromosome arm 18p, affected by deletions, breakage, and mutations.
- Downregulation of L3MBTL4 mRNA in breast tumors suggests its functional importance.
- Other 18p TSG candidates may contribute to the aggressive phenotype observed with 18p loss in breast cancer.
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