SETDB1 promotes gastric carcinogenesis and metastasis via upregulation of CCND1 and MMP9 expression
JOURNAL OF PATHOLOGY
Authors: Shang, Wenjing; Wang, Yue; Liang, Xiuming; Li, Tongyu; Shao, Wei; Liu, Fen; Cui, Xiujie; Wang, Yuanyuan; Lv, Lin; Chai, Li; Qu, Lingxin; Zheng, Lixin; Jia, Jihui
Abstract
SETDB1 is a histone lysine methyltransferase that has critical roles in cancers. However, its potential role in gastric cancer (GC) remains obscure. Here, we mainly investigate the clinical significance and the possible role of SETDB1 in GC. We find that SETDB1 expression is upregulated in GC tissues and its high-level expression was a predictor of poor prognosis in patients. Overexpression of SETDB1 promoted cell proliferation and metastasis, while SETDB1 suppression had an opposite effect both in vitro and in vivo. Mechanistically, SETDB1 was shown to interact with ERG to promote the transcription of cyclin D1 (CCND1) and matrix metalloproteinase 9 (MMP9) through binding to their promoter regions. In addition, the expression of SETDB1 was also enhanced by the transcription factor TCF4 at the transcriptional level in GC. Furthermore, SETDB1 expression was found to be induced by Helicobacter pylori (H. pylori) infection in a TCF4-dependent manner. Taken together, our results indicate that SETDB1 is aberrantly overexpressed in GC and plays key roles in gastric carcinogenesis and metastasis via upregulation of CCND1 and MMP9. Our work also suggests that SETDB1 could be a potential oncogenic factor and a therapeutic target for GC. (c) 2020 The Pathological Society of Great Britain and Ireland. Published by John Wiley & Sons, Ltd.
Landscape of transcriptome variations uncovering known and novel driver events in colorectal carcinoma
SCIENTIFIC REPORTS
Authors: Pira, Giovanna; Uva, Paolo; Scanu, Antonio Mario; Rocca, Paolo Cossu; Murgia, Luciano; Uleri, Elena; Piu, Claudia; Porcu, Alberto; Carru, Ciriaco; Manca, Alessandra; Persico, Ivana; Muroni, Maria Rosaria; Sanges, Francesca; Serra, Caterina; Dolei, Antonia; Angius, Andrea; De Miglio, Maria Rosaria
Abstract
We focused on an integrated view of genomic changes in Colorectal cancer (CRC) and distant normal colon tissue (NTC) to test the effectiveness of expression profiling on identification of molecular targets. We performed transcriptome on 16 primary coupled CRC and NTC tissues. We identified pathways and networks related to pathophysiology of CRC and selected potential therapeutic targets. CRC cells have multiple ways to reprogram its transcriptome: a functional enrichment analysis in 285 genes, 25% mutated, showed that they control the major cellular processes known to promote tumorigenesis. Among the genes showing alternative splicing, cell cycle related genes were upregulated (CCND1, CDC25B, MCM2, MCM3), while genes involved in fatty acid metabolism (ACAAA2, ACADS, ACAT1, ACOX, CPT1A, HMGCS2) were downregulated. Overall 148 genes showed differential splicing identifying 17 new isoforms. Most of them are involved in the pathogenesis of CRC, although the functions of these variants remain unknown. We identified 2 in-frame fusion events, KRT19-KRT18 and EEF1A1-HSP90AB1, encoding for chemical proteins in two CRC patients. We draw a functional interactome map involving integrated multiple genomic features in CRC. Finally, we underline that two functional cell programs are prevalently deregulated and absolutely crucial to determinate and sustain CRC phenotype.