Whole-genome Sequencing Analysis of Bile Tract Cancer Reveals Mutation Characteristics and Potential Biomarkers.

IF 2.6 4区 医学 Q2 GENETICS & HEREDITY Cancer Genomics & Proteomics Pub Date : 2025-01-01 DOI:10.21873/cgp.20484
Toshio Kokuryo, Masaki Sunagawa, Junpei Yamaguchi, Taisuke Baba, Shoji Kawakatsu, Nobuyuki Watanabe, Shunsuke Onoe, Takashi Mizuno, Tomoki Ebata
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Abstract

Background/aim: Bile tract cancer (BTC) is a malignant tumor with a poor prognosis. Recent studies have reported the heterogeneity of the genomic background and gene alterations in BTC, but its genetic heterogeneity and molecular profiles remain poorly understood. Whole-genome sequencing may enable the identification of novel actionable gene mutations involved in BTC carcinogenesis, malignant progression, and treatment resistance.

Patients and methods: We performed whole-genome sequencing of six BTC samples to elucidate its genetic heterogeneity and identify novel actionable gene mutations. Somatic mutations, structural variations, copy number alterations, and their associations with clinical factors were analyzed.

Results: The average number of somatic mutations detected in each case was 53,705, with SNVs accounting for most of these mutations (85.02%). None of the 331 mutations related to BTC in The Cancer Genome Atlas (TCGA) database were found in the mutations identified in our study. A higher prevalence of gene mutations was observed in samples without vascular invasion than in those with vascular invasion. Several genes with differences in mutation accumulation between groups were identified, including ADAMTS7, AHNAK2, and CAPN10.

Conclusion: Our study provides novel insights into the genomic landscape of BTC and highlights the potential of whole-genome sequencing analysis to identify actionable gene mutations and understand the molecular mechanisms underlying this malignancy. The high mutational burden, structural variations, and copy number alterations observed in BTC samples in this study underscore the genetic complexity and heterogeneity of this disease.

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胆道癌的全基因组测序分析揭示了突变特征和潜在的生物标志物。
背景/目的:胆道癌(BTC)是一种预后不良的恶性肿瘤。最近的研究报道了BTC的基因组背景和基因改变的异质性,但其遗传异质性和分子谱仍然知之甚少。全基因组测序可以鉴定与BTC癌变、恶性进展和治疗耐药有关的新的可操作基因突变。患者和方法:我们对6个BTC样本进行了全基因组测序,以阐明其遗传异质性并确定新的可操作基因突变。分析了体细胞突变、结构变异、拷贝数改变及其与临床因素的关系。结果:每个病例平均检出体细胞突变53,705个,其中snv占多数(85.02%)。在癌症基因组图谱(TCGA)数据库中与BTC相关的331个突变中,没有在我们的研究中发现突变。在没有血管侵犯的样本中,基因突变的发生率高于血管侵犯的样本。发现了几个在组间突变积累上存在差异的基因,包括ADAMTS7、AHNAK2和CAPN10。结论:我们的研究为BTC的基因组图谱提供了新的见解,并强调了全基因组测序分析在识别可操作的基因突变和了解这种恶性肿瘤的分子机制方面的潜力。本研究中在BTC样本中观察到的高突变负担、结构变异和拷贝数改变强调了这种疾病的遗传复杂性和异质性。
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来源期刊
Cancer Genomics & Proteomics
Cancer Genomics & Proteomics ONCOLOGY-GENETICS & HEREDITY
CiteScore
5.00
自引率
8.00%
发文量
51
期刊介绍: Cancer Genomics & Proteomics (CGP) is an international peer-reviewed journal designed to publish rapidly high quality articles and reviews on the application of genomic and proteomic technology to basic, experimental and clinical cancer research. In this site you may find information concerning the editorial board, editorial policy, issue contents, subscriptions, submission of manuscripts and advertising. The first issue of CGP circulated in January 2004. Cancer Genomics & Proteomics is a journal of the International Institute of Anticancer Research. From January 2013 CGP is converted to an online-only open access journal. Cancer Genomics & Proteomics supports (a) the aims and the research projects of the INTERNATIONAL INSTITUTE OF ANTICANCER RESEARCH and (b) the organization of the INTERNATIONAL CONFERENCES OF ANTICANCER RESEARCH.
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