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Fully Processed Recombinant KRAS4b: Isolating and Characterizing the Farnesylated and Methylated Protein
Published on: January 16, 2020
Ceramide synthase CERS4 gene downregulation is associated with KRAS mutation in colorectal cancer
Tamuro Hayama1,2, Kotaro Hama3,4, Tsuyoshi Ozawa5
1Department of Surgery, Teikyo University School of Medicine, 2-11-1 Kaga, Itabashi-ku, Tokyo, 173-8605, Japan. tamuro@med.teikyo-u.ac.jp.
Abstract:
Ceramide, the central molecule in sphingolipid synthesis, is a bioactive lipid that serves as a regulatory molecule in the anti-inflammatory responses, apoptosis, programmed necrosis, autophagy, and cell motility of cancer cells. In particular, the authors have reported differences in sphingolipid content in colorectal cancer tissues. The associations among genetic mutations, clinicopathological factors, and sphingolipid metabolism in colorectal cancer (CRC) have not been investigated. The objective of this study is to investigate the association between genes associated with sphingolipid metabolism, genetic variations in colorectal cancer (CRC), and clinicopathological factors in CRC patients. We enrolled 82 consecutive patients with stage I-IV CRC who underwent tumor resection at a single institution in 2019-2021. We measured the expression levels of genes related to sphingolipid metabolism and examined the relationships between CRC gene mutations and the clinicopathological data of each individual patient. The relationship between CRC gene mutations and expression levels of ceramide synthase (CERS), N-acylsphingosine amidohydrolase (ASAH), and alkaline ceramidase (ACER) genes involved in sphingolipid metabolism was examined CRES4 expression was significantly lower in the CRC KRAS gene mutation group (p = 0.004); vascular invasion was more common in colorectal cancer patients with high CERS4 expression (p = 0.0057). By examining the correlation between sphingolipid gene expression and clinical factors, we were able to identify cancer types in which sphingolipid metabolism is particularly relevant. CERS4 expression was significantly reduced in KRAS mutant CRC. Moreover, CRC with decreased CERS4 showed significantly more frequent venous invasion.
Insights
Sphingolipid metabolism, particularly ceramide synthase 4 (CERS4) expression, is linked to colorectal cancer (CRC) progression. Lower CERS4 levels correlate with KRAS mutations and increased vascular invasion in CRC patients.
Area of Science:
- Biochemistry
- Oncology
- Molecular Biology
Background:
- Sphingolipids, with ceramide as a key molecule, regulate crucial cellular processes including apoptosis and cancer cell motility.
- Previous studies noted altered sphingolipid content in colorectal cancer (CRC) tissues, but the interplay with genetic mutations and clinical factors remained unexplored.
Purpose of the Study:
- To investigate the associations between genes involved in sphingolipid metabolism, genetic variations, and clinicopathological factors in colorectal cancer (CRC) patients.
- To explore the relationship between specific gene mutations (e.g., KRAS) and the expression of key sphingolipid metabolism genes (CERS, ASAH, ACER) in CRC.
Main Methods:
- Analysis of 82 stage I-IV CRC patients undergoing tumor resection.
- Measurement of sphingolipid metabolism gene expression levels.
- Examination of correlations between CRC gene mutations, clinicopathological data, and expression of ceramide synthase (CERS), N-acylsphingosine amidohydrolase (ASAH), and alkaline ceramidase (ACER) genes.
Main Results:
- Ceramide synthase 4 (CERS4) expression was significantly lower in CRC patients with KRAS gene mutations (p=0.004).
- Increased vascular invasion was observed in colorectal cancer patients with high CERS4 expression (p=0.0057).
- Decreased CERS4 expression was associated with more frequent venous invasion in CRC.
Conclusions:
- Sphingolipid metabolism, specifically CERS4 expression, is significantly associated with genetic mutations and clinical progression in colorectal cancer.
- Reduced CERS4 expression is a potential biomarker for KRAS-mutated CRC and indicates a higher risk of vascular invasion.
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