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Prognostic Biomarkers and Molecular Pathways Mediating Helicobacter Pylori-induced Gastric Cancer: a Network-biology Approach

Overview
Journal Genomics Inform
Publisher Biomed Central
Specialty Biology
Date 2023 Apr 10
PMID 37037466
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Abstract

Cancer of the stomach is the second most frequent cancer-related death worldwide. The survival rate of patients with gastric cancer (GC) remains fragile. There is a requirement to discover biomarkers for prognosis approaches. Helicobacter pylori in the stomach is closely associated with the progression of GC. We identified the genes associated with poor/favorable prognosis in H. pylori-induced GC. Multivariate statistical analysis was applied on the Gene Expression Omnibus (GEO) dataset GSE54397 to identify differentially expressed miRNAs (DEMs) in gastric tissues with H. pylori-induced cancer compared with the H. pylori-positive with non-cancerous tissue. A protein interaction map (PIM) was built and subjected to DEMs targets. The enriched pathways and biological processes within the PIM were identified based on substantial clusters. Thereafter, the most critical genes in the PIM were illustrated, and their prognostic impact in GC was investigated. Considering p-value less than 0.01 and |Log2 fold change| as >1, five microRNAs demonstrated significant changes among the two groups. Gene functional analysis revealed that the ubiquitination system, neddylation pathway, and ciliary process are primarily involved in H. pylori-induced GC. Survival analysis illustrated that the overexpression of DOCK4, GNAS, CTGF, TGF-b1, ESR1, SELE, TIMP3, SMARCE1, and TXNIP was associated with poor prognosis, while increased MRPS5 expression was related to a favorable prognosis in GC patients. DOCK4, GNAS, CTGF, TGF-b1, ESR1, SELE, TIMP3, SMARCE1, TXNIP, and MRPS5 may be considered prognostic biomarkers for H. pylori-induced GC. However, experimental validation is necessary in the future.

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References
1.
Lin X, Li C, Shi Y, Chen Y, Zhang L, Zheng X . [Correlation of polymorphism of Nme1-1465 T>C and TGFβ1-509 T>C with genetic susceptibility of gastric carcinoma]. Zhonghua Bing Li Xue Za Zhi. 2010; 39(10):681-5. View

2.
Black J, Whetstine J . RNF2 E3 or Not to E3: Dual Roles of RNF2 Overexpression in Melanoma. Cancer Discov. 2015; 5(12):1241-3. PMC: 4733319. DOI: 10.1158/2159-8290.CD-15-1285. View

3.
Tomita H, Takaishi S, Menheniott T, Yang X, Shibata W, Jin G . Inhibition of gastric carcinogenesis by the hormone gastrin is mediated by suppression of TFF1 epigenetic silencing. Gastroenterology. 2010; 140(3):879-91. PMC: 3049860. DOI: 10.1053/j.gastro.2010.11.037. View

4.
Guo W, Dong Z, Guo Y, Chen Z, Yang Z, Kuang G . Polymorphisms of transforming growth factor-β1 associated with increased risk of gastric cardia adenocarcinoma in north China. Int J Immunogenet. 2011; 38(3):215-24. DOI: 10.1111/j.1744-313X.2010.00991.x. View

5.
Seiler M . Abnormal cilia in a breast carcinoma. An ultrastructural study. Arch Pathol Lab Med. 1984; 108(10):795-7. View