Distinct microbiome dysbiosis and epigenetic anomaly in esophageal adenocarcinoma and its underlying Barrett's esophagus.

IF 4.8 2区 医学 Q1 GENETICS & HEREDITY
Takuya Shijimaya, Tomomitsu Tahara, Jumpei Yamazaki, Sanshiro Kobayashi, Yasushi Matsumoto, Naohiro Nakamura, Yu Takahashi, Takashi Tomiyama, Toshiro Fukui, Tomoyuki Shibata, Makoto Naganuma
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Abstract

Interaction between host genotoxic changes and mucosa-associated microbiome (MAM) dysbiosis may have a role in various digestive cancers. We investigated MAM in Barrett's esophagus (BE) and esophageal adenocarcinoma (EAC) progression sequence and its association with host genotoxic changes. 16S rRNA gene sequencing was performed in three different groups of biopsies from nonneoplastic BE from patients without cancer (N, normal group; n = 47) and with EAC (ADJ, adjacent group; n = 27). Endoscopic biopsies were also obtained from EAC tissues (T, tumor group; n = 22). Results were correlated with TP53 mutation, telomere length and DNA methylation of candidate genes (N33, DPYS, SLC16A12, miR124A3 and miR34bc). Genome-wide DNA methylation examined by reduced representation bisulfite sequencing (RRBS) was available for 32 samples (n = 12 for N, n = 12 for ADJ and n = 22 for T groups). Lower microbial alpha diversity measures were observed in ADJ/T groups relative to N group and associated with higher mean Z score DNA methylation of candidate genes. Specific genera (n = 16) with significant change between ADJ/T groups relative to N group occurred mostly in ADJ group (13/16) and half of them (8/16) were associated with DNA methylation status. Integrated MAM and genome-wide methylation analysis demonstrated that hyper-methylated sites, associated with lower alpha diversity measures dominantly occurred within near the transcription start site, codifying genes were involved in metabolic processes. Our result shows that microbial dysbiosis in EAC mostly occurs in adjacent BE and such dysbiosis was associated with DNA methylation status, offering support for a pathogenic role of interaction between host genotoxic changes and MAM in this tumor type.

食管腺癌及其基础巴雷特食管中不同的微生物组失调和表观遗传异常。
宿主基因毒性变化与粘膜相关微生物群(MAM)生态失调之间的相互作用可能在各种消化系统癌症中起作用。我们研究了MAM在巴雷特食管(BE)和食管腺癌(EAC)的进展顺序及其与宿主基因毒性变化的关系。采用16S rRNA基因测序对三组非肿瘤BE活检组织(N,正常组;n = 47)与EAC (ADJ,相邻组;n = 27)。内镜下活检EAC组织(T,肿瘤组;n = 22)。结果与TP53突变、端粒长度和候选基因(N33、DPYS、SLC16A12、miR124A3和miR34bc)的DNA甲基化相关。32个样本(n组n = 12, ADJ组n = 12, T组n = 22)通过还原亚硫酸氢盐测序(RRBS)检测了全基因组DNA甲基化。相对于N组,ADJ/T组的微生物α多样性测量值较低,并且与较高的候选基因DNA甲基化平均Z评分相关。与n组相比,ADJ/T组差异显著的特异性属(n = 16)主要发生在ADJ组(13/16),其中一半(8/16)与DNA甲基化状态相关。综合MAM和全基因组甲基化分析表明,与低α多样性测量相关的超甲基化位点主要发生在转录起始位点附近,编码基因参与代谢过程。我们的研究结果表明,EAC的微生物生态失调主要发生在邻近的BE,这种生态失调与DNA甲基化状态有关,这为宿主基因毒性变化与MAM相互作用在该肿瘤类型中的致病作用提供了支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
自引率
5.30%
发文量
150
期刊介绍: Clinical Epigenetics, the official journal of the Clinical Epigenetics Society, is an open access, peer-reviewed journal that encompasses all aspects of epigenetic principles and mechanisms in relation to human disease, diagnosis and therapy. Clinical trials and research in disease model organisms are particularly welcome.
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