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Updated: Mar 3, 2026

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Published on: January 12, 2020
A novel NOTCH3 mutation identified in patients with oral cancer by whole exome sequencing
Yanjun Yi1, Zhuowei Tian2, Houyu Ju2
1Department of Stomatology, Quzhou People's Hospital, Quzhou, Zhejiang 324000, P.R. China.
Abstract:
Oral cancer is a serious disease caused by environmental factors and/or susceptible genes. In the present study, in order to identify useful genetic biomarkers for cancer prediction and prevention, and for personalized treatment, we detected somatic mutations in 5 pairs of oral cancer tissues and blood samples using whole exome sequencing (WES). Finally, we confirmed a novel nonsense single-nucleotide polymorphism (SNP; chr19:15288426A>C) in the NOTCH3 gene with sanger sequencing, which resulted in a N1438T mutation in the protein sequence. Using multiple in silico analyses, this variant was found to mildly damaging effects on the NOTCH3 gene, which was supported by the results from analyses using PANTHER, SNAP and SNPs&GO. However, further analysis using Mutation Taster revealed that this SNP had a probability of 0.9997 to be 'disease causing'. In addition, we performed 3D structure simulation analysis and the results suggested that this variant had little effect on the solubility and hydrophobicity of the protein and thus on its function; however, it decreased the stability of the protein by increasing the total energy following minimization (-1,051.39 kcal/mol for the mutant and -1,229.84 kcal/mol for the native) and decreasing one stabilizing residue of the protein. Less stability of the N1438T mutant was also supported by analysis using I-Mutant with a DDG value of -1.67. Overall, the present study identified and confirmed a novel mutation in the NOTCH3 gene, which may decrease the stability of NOTCH3, and may thus prove to be helpful in cancer prognosis.
Insights
Researchers identified a novel NOTCH3 gene mutation in oral cancer patients. This genetic alteration may impact protein stability, potentially serving as a biomarker for cancer prognosis and personalized treatment strategies.
Area of Science:
- Genetics
- Oncology
- Molecular Biology
Background:
- Oral cancer presents a significant health challenge, influenced by genetic and environmental factors.
- Identifying reliable genetic biomarkers is crucial for early detection, prevention, and tailored therapies.
Purpose of the Study:
- To discover novel genetic biomarkers for oral cancer prediction and personalized treatment.
- To investigate somatic mutations in oral cancer tissues and blood samples.
Main Methods:
- Whole exome sequencing (WES) was employed on 5 pairs of oral cancer tissues and blood samples.
- Sanger sequencing confirmed a specific single-nucleotide polymorphism (SNP) in the NOTCH3 gene.
- In silico analyses (PANTHER, SNAP, SNPs&GO, Mutation Taster) and 3D structure simulations were performed.
Main Results:
- A novel nonsense SNP (chr19:15288426A>C) in the NOTCH3 gene, leading to an N1438T protein mutation, was identified and confirmed.
- In silico analyses indicated the variant is potentially disease-causing and mildly damaging, decreasing NOTCH3 protein stability.
- Structural analysis revealed reduced protein stability, with implications for its function.
Conclusions:
- A novel mutation in the NOTCH3 gene was identified and validated in oral cancer.
- This NOTCH3 mutation may reduce protein stability, suggesting its potential utility as a biomarker for oral cancer prognosis.
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