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Exploration of gastric neuroendocrine carcinoma (GNEC) specific signaling pathways involved in chemoresistance via transcriptome and in vitro analysis
Xie,Jianwei1; Chen,Pengchen2; Xie,Hongteng1; Sun,Yuqin1,5; Huang,Zhen3; Wei,Ran2; Miao,Zhengqiang2; Wang,Qingshui3; Zhang,Shu Dong4; Wong,Koon Ho2; Lin,Yao3,6; Huang,Changming1; Kwok,Hang Fai2
2020
Source PublicationComputational and Structural Biotechnology Journal
ISSN2001-0370
Volume18Pages:2610-2620
Abstract

Gastric neuroendocrine carcinoma (GNEC) is rare cancer detected in the stomach. Previously, we demonstrated that the poorer prognosis of GNEC patients compared with gastric adenocarcinoma (GAC) patients was probably due to the lack of response to chemotherapy. Thus, it is crucial to study the specific GNEC gene expression pattern and investigate chemoresistance mechanism of GNEC. The transcriptome of GNEC patients was compared with that of GAC patients using RNA-seq. The KEGG analysis was employed to explore the specific differential expression gene function enrichment pattern. In addition, the transcriptomes of two GNEC cell lines, ECC10 and ECC12, were also compared with those of two GAC cell lines, MGC-803 and AGS, using RNA-seq. Comparing patient samples and cell lines transcriptome data, we try to uncover the potential targets and pathways which may affect the chemoresistance of GNEC. By combing all transcriptome data, we identified 22 key genes that were specifically up-regulated in GNEC. This panel of genes probably involves in the chemoresistance of GNEC. From our current experimental data, NeuroD1, one of the 22 genes, is associated with the prognosis of GNEC patients. Knockdown of NeuroD1 enhanced the sensitivity to irinotecan of GNEC cell lines. Our research sheds light in identifying a panel of novel therapeutic target specifically for GNEC clinical treatment which has not been reported before.

KeywordChemoresistance Gac Gnec Neurod1 Transcriptome Analysis
DOI10.1016/j.csbj.2020.09.016
URLView the original
Indexed BySCIE
Language英語English
WOS Research AreaBiochemistry & Molecular Biology ; Biotechnology & Applied Microbiology
WOS SubjectBiochemistry & Molecular Biology ; Biotechnology & Applied Microbiology
WOS IDWOS:000607355500018
PublisherELSEVIERRADARWEG 29, 1043 NX AMSTERDAM, NETHERLANDS
Scopus ID2-s2.0-85091742873
Fulltext Access
Citation statistics
Document TypeJournal article
CollectionGenomics, Bioinformatics and Single Cell Analysis Core
Faculty of Health Sciences
Cancer Centre
Corresponding AuthorLin,Yao; Huang,Changming; Kwok,Hang Fai
Affiliation1.Department of Gastric Surgery,Fujian Medical University Union Hospital,Fuzhou,350000,China
2.Cancer Centre,Faculty of Health Sciences,University of Macau,Taipa,Avenida da Universidade,China
3.College of Life Sciences,Fujian Normal University,Fuzhou,350000,China
4.Northern Ireland Centre for Stratified Medicine,Biomedical Sciences Research Institute,Ulster University,Londonderry,BT47,United Kingdom
5.Department of General Surgery,Zhangzhou Affiliated Hospital of Fujian Medical University,Zhangzhou,363000,China
6.Key Laboratory of OptoElectronic Science and Technology for Medicine of Ministry of Education,Fujian Normal University,Fuzhou,350000,China
Corresponding Author AffilicationCancer Centre
Recommended Citation
GB/T 7714
Xie,Jianwei,Chen,Pengchen,Xie,Hongteng,et al. Exploration of gastric neuroendocrine carcinoma (GNEC) specific signaling pathways involved in chemoresistance via transcriptome and in vitro analysis[J]. Computational and Structural Biotechnology Journal, 2020, 18, 2610-2620.
APA Xie,Jianwei., Chen,Pengchen., Xie,Hongteng., Sun,Yuqin., Huang,Zhen., Wei,Ran., Miao,Zhengqiang., Wang,Qingshui., Zhang,Shu Dong., Wong,Koon Ho., Lin,Yao., Huang,Changming., & Kwok,Hang Fai (2020). Exploration of gastric neuroendocrine carcinoma (GNEC) specific signaling pathways involved in chemoresistance via transcriptome and in vitro analysis. Computational and Structural Biotechnology Journal, 18, 2610-2620.
MLA Xie,Jianwei,et al."Exploration of gastric neuroendocrine carcinoma (GNEC) specific signaling pathways involved in chemoresistance via transcriptome and in vitro analysis".Computational and Structural Biotechnology Journal 18(2020):2610-2620.
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