Cargando…

The emerging double-edged sword role of Sirtuins in the gastric inflammation-carcinoma sequence revealed by bulk and single-cell transcriptomes

Histone modification and the inflammation-carcinoma sequence (ICS) have been acknowledgedly implicated in gastric carcinogenesis. However, the extremum expression of some histone modification genes (HMGs) in intestinal metaplasia (IM) rather than GC obscures the roles of HMGs in ICS. In this study,...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Mengyang, Bi, Chenxiao, Li, Hong, Lu, Lizhen, Gao, Tao, Huang, Panpan, Liu, Chengxia, Wang, Bin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9619065/
https://www.ncbi.nlm.nih.gov/pubmed/36324577
http://dx.doi.org/10.3389/fonc.2022.1004726
_version_ 1784821195082825728
author Wang, Mengyang
Bi, Chenxiao
Li, Hong
Lu, Lizhen
Gao, Tao
Huang, Panpan
Liu, Chengxia
Wang, Bin
author_facet Wang, Mengyang
Bi, Chenxiao
Li, Hong
Lu, Lizhen
Gao, Tao
Huang, Panpan
Liu, Chengxia
Wang, Bin
author_sort Wang, Mengyang
collection PubMed
description Histone modification and the inflammation-carcinoma sequence (ICS) have been acknowledgedly implicated in gastric carcinogenesis. However, the extremum expression of some histone modification genes (HMGs) in intestinal metaplasia (IM) rather than GC obscures the roles of HMGs in ICS. In this study, we assumed an explanation that the roles of HMGs in ICS were stage specific. Bulk RNA-seq on endoscopy biopsy samples from a total of 50 patients was accompanied by reanalysis of a set of published single-cell transcriptomes, which cross-sectionally profiled the transcriptomic features of chronic superficial gastritis (SG), atrophy gastritis (AG), IM, and early gastric cancer (GC). Differential analysis observed significantly peaked expression of SIRT6 and SIRT7 at IM. Weighted correlation network analysis on bulk transcriptome recognized significant correlations between SIRT1/6 and IM. The single-cell atlas identified one subgroup of B cells expressing high level of TFF1 (TFF1 (hi) naive B cell) that theoretically played important roles in defending microbial infection, while SIRT6 displayed a positive correlation with TFF1 (low) naive B cells. Moreover, gene set enrichment analysis at different lesions (SG-AG, AG-IM, and IM-GC) highlighted that gene sets contributing to IM, e.g., Brush Border, were largely enriched from co-expressing genes of Sirtuins (SIRTs) in AG-IM. Surveys of the genes negatively correlated with SIRT6 in public databases considered SIRT6 as tumor suppressors, which was confirmed by the cell proliferation and migration assays after transient transfection of SIRT6 overexpression vector into AGS cells. All the above observations were then confirmed by serial section-based immunohistochemistry against Ki-67, MUC2, MUC5AC, p53, and SIRT6 on the endoscopic submucosal dissection tissue. By contrast, the expression of the other HMGs varied even opposite within same family. Taken together, this study preliminarily demonstrated the two-edged sword role of SIRTs in ICS and, by extension, showed that the roles of HMGs in ICS were probably stage specific. Our study may provide new insights into and attract attention on gastric prevention and therapy targeting HMGs.
format Online
Article
Text
id pubmed-9619065
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-96190652022-11-01 The emerging double-edged sword role of Sirtuins in the gastric inflammation-carcinoma sequence revealed by bulk and single-cell transcriptomes Wang, Mengyang Bi, Chenxiao Li, Hong Lu, Lizhen Gao, Tao Huang, Panpan Liu, Chengxia Wang, Bin Front Oncol Oncology Histone modification and the inflammation-carcinoma sequence (ICS) have been acknowledgedly implicated in gastric carcinogenesis. However, the extremum expression of some histone modification genes (HMGs) in intestinal metaplasia (IM) rather than GC obscures the roles of HMGs in ICS. In this study, we assumed an explanation that the roles of HMGs in ICS were stage specific. Bulk RNA-seq on endoscopy biopsy samples from a total of 50 patients was accompanied by reanalysis of a set of published single-cell transcriptomes, which cross-sectionally profiled the transcriptomic features of chronic superficial gastritis (SG), atrophy gastritis (AG), IM, and early gastric cancer (GC). Differential analysis observed significantly peaked expression of SIRT6 and SIRT7 at IM. Weighted correlation network analysis on bulk transcriptome recognized significant correlations between SIRT1/6 and IM. The single-cell atlas identified one subgroup of B cells expressing high level of TFF1 (TFF1 (hi) naive B cell) that theoretically played important roles in defending microbial infection, while SIRT6 displayed a positive correlation with TFF1 (low) naive B cells. Moreover, gene set enrichment analysis at different lesions (SG-AG, AG-IM, and IM-GC) highlighted that gene sets contributing to IM, e.g., Brush Border, were largely enriched from co-expressing genes of Sirtuins (SIRTs) in AG-IM. Surveys of the genes negatively correlated with SIRT6 in public databases considered SIRT6 as tumor suppressors, which was confirmed by the cell proliferation and migration assays after transient transfection of SIRT6 overexpression vector into AGS cells. All the above observations were then confirmed by serial section-based immunohistochemistry against Ki-67, MUC2, MUC5AC, p53, and SIRT6 on the endoscopic submucosal dissection tissue. By contrast, the expression of the other HMGs varied even opposite within same family. Taken together, this study preliminarily demonstrated the two-edged sword role of SIRTs in ICS and, by extension, showed that the roles of HMGs in ICS were probably stage specific. Our study may provide new insights into and attract attention on gastric prevention and therapy targeting HMGs. Frontiers Media S.A. 2022-10-17 /pmc/articles/PMC9619065/ /pubmed/36324577 http://dx.doi.org/10.3389/fonc.2022.1004726 Text en Copyright © 2022 Wang, Bi, Li, Lu, Gao, Huang, Liu and Wang https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Oncology
Wang, Mengyang
Bi, Chenxiao
Li, Hong
Lu, Lizhen
Gao, Tao
Huang, Panpan
Liu, Chengxia
Wang, Bin
The emerging double-edged sword role of Sirtuins in the gastric inflammation-carcinoma sequence revealed by bulk and single-cell transcriptomes
title The emerging double-edged sword role of Sirtuins in the gastric inflammation-carcinoma sequence revealed by bulk and single-cell transcriptomes
title_full The emerging double-edged sword role of Sirtuins in the gastric inflammation-carcinoma sequence revealed by bulk and single-cell transcriptomes
title_fullStr The emerging double-edged sword role of Sirtuins in the gastric inflammation-carcinoma sequence revealed by bulk and single-cell transcriptomes
title_full_unstemmed The emerging double-edged sword role of Sirtuins in the gastric inflammation-carcinoma sequence revealed by bulk and single-cell transcriptomes
title_short The emerging double-edged sword role of Sirtuins in the gastric inflammation-carcinoma sequence revealed by bulk and single-cell transcriptomes
title_sort emerging double-edged sword role of sirtuins in the gastric inflammation-carcinoma sequence revealed by bulk and single-cell transcriptomes
topic Oncology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9619065/
https://www.ncbi.nlm.nih.gov/pubmed/36324577
http://dx.doi.org/10.3389/fonc.2022.1004726
work_keys_str_mv AT wangmengyang theemergingdoubleedgedswordroleofsirtuinsinthegastricinflammationcarcinomasequencerevealedbybulkandsinglecelltranscriptomes
AT bichenxiao theemergingdoubleedgedswordroleofsirtuinsinthegastricinflammationcarcinomasequencerevealedbybulkandsinglecelltranscriptomes
AT lihong theemergingdoubleedgedswordroleofsirtuinsinthegastricinflammationcarcinomasequencerevealedbybulkandsinglecelltranscriptomes
AT lulizhen theemergingdoubleedgedswordroleofsirtuinsinthegastricinflammationcarcinomasequencerevealedbybulkandsinglecelltranscriptomes
AT gaotao theemergingdoubleedgedswordroleofsirtuinsinthegastricinflammationcarcinomasequencerevealedbybulkandsinglecelltranscriptomes
AT huangpanpan theemergingdoubleedgedswordroleofsirtuinsinthegastricinflammationcarcinomasequencerevealedbybulkandsinglecelltranscriptomes
AT liuchengxia theemergingdoubleedgedswordroleofsirtuinsinthegastricinflammationcarcinomasequencerevealedbybulkandsinglecelltranscriptomes
AT wangbin theemergingdoubleedgedswordroleofsirtuinsinthegastricinflammationcarcinomasequencerevealedbybulkandsinglecelltranscriptomes
AT wangmengyang emergingdoubleedgedswordroleofsirtuinsinthegastricinflammationcarcinomasequencerevealedbybulkandsinglecelltranscriptomes
AT bichenxiao emergingdoubleedgedswordroleofsirtuinsinthegastricinflammationcarcinomasequencerevealedbybulkandsinglecelltranscriptomes
AT lihong emergingdoubleedgedswordroleofsirtuinsinthegastricinflammationcarcinomasequencerevealedbybulkandsinglecelltranscriptomes
AT lulizhen emergingdoubleedgedswordroleofsirtuinsinthegastricinflammationcarcinomasequencerevealedbybulkandsinglecelltranscriptomes
AT gaotao emergingdoubleedgedswordroleofsirtuinsinthegastricinflammationcarcinomasequencerevealedbybulkandsinglecelltranscriptomes
AT huangpanpan emergingdoubleedgedswordroleofsirtuinsinthegastricinflammationcarcinomasequencerevealedbybulkandsinglecelltranscriptomes
AT liuchengxia emergingdoubleedgedswordroleofsirtuinsinthegastricinflammationcarcinomasequencerevealedbybulkandsinglecelltranscriptomes
AT wangbin emergingdoubleedgedswordroleofsirtuinsinthegastricinflammationcarcinomasequencerevealedbybulkandsinglecelltranscriptomes