Přehled o publikaci
2022
Identification of AGR2 Gene-Specific Expression Patterns Associated with Epithelial-Mesenchymal Transition
MARTIŠOVÁ, Andrea, Lucia SOMMEROVÁ, Adam KREJCI, Iveta SELINGEROVÁ, Tamara KOLAROVA et. al.Basic information
Original name
Identification of AGR2 Gene-Specific Expression Patterns Associated with Epithelial-Mesenchymal Transition
Authors
MARTIŠOVÁ, Andrea, Lucia SOMMEROVÁ, Adam KREJCI, Iveta SELINGEROVÁ, Tamara KOLAROVA, Filip ZAVADIL KOKAS, Miloš HOLÁNEK, Ján PODHOREC, Tomáš KAZDA and Roman HRSTKA
Edition
International Journal of Molecular Sciences, Basel, Multidisciplinary Digital Publishing Institute, 2022, 1422-0067
Other information
Language
English
Type of outcome
Article in a journal
Country of publisher
Switzerland
Confidentiality degree
is not subject to a state or trade secret
References:
Organization
Přírodovědecká fakulta – Repository – Repository
UT WoS
000858720400001
Keywords in English
AGR2; EMT; TGF-β; RNAseq; arachidonic acid; focal adhesion
Links
LX22NPO5102, research and development project.
Changed: 28/1/2023 03:40, RNDr. Daniel Jakubík
Abstract
V originále
The TGF-β signaling pathway is involved in numerous cellular processes, and its deregulation may result in cancer development. One of the key processes in tumor progression and metastasis is epithelial to mesenchymal transition (EMT), in which TGF-β signaling plays important roles. Recently, AGR2 was identified as a crucial component of the cellular machinery responsible for maintaining the epithelial phenotype, thereby interfering with the induction of mesenchymal phenotype cells by TGF-β effects in cancer. Here, we performed transcriptomic profiling of A549 lung cancer cells with CRISPR-Cas9 mediated AGR2 knockout with and without TGF-β treatment. We identified significant changes in transcripts associated with focal adhesion and eicosanoid production, in particular arachidonic acid metabolism. Changes in transcripts associated with the focal adhesion pathway were validated by RT-qPCR of COL4A1, COL4A2, FLNA, VAV3, VEGFA, and VINC mRNAs. In addition, immunofluorescence showed the formation of stress fibers and vinculin foci in cells without AGR2 and in response to TGF-β treatment, with synergistic effects observed. These findings imply that both AGR2 downregulation and TGF-β have a role in focal adhesion formation and cancer cell migration and invasion. Transcripts associated with arachidonic acid metabolism were downregulated after both AGR2 knockout and TGF-β treatment and were validated by RT-qPCR of GPX2, PTGS2, and PLA2G4A. Since PGE2 is a product of arachidonic acid metabolism, its lowered concentration in media from AGR2-knockout cells was confirmed by ELISA. Together, our results demonstrate that AGR2 downregulation and TGF-β have an essential role in focal adhesion formation; moreover, we have identified AGR2 as an important component of the arachidonic acid metabolic pathway.