Small molecule inhibitors target the tissue transglutaminase and fibronectin interaction.

Tissue transglutaminase (TG2) mediates protein crosslinking through generation of ε-(γ-glutamyl) lysine isopeptide bonds and promotes cell adhesion through interaction with fibronectin (FN) and integrins. Cell adhesion to the peritoneal matrix regulated by TG2 facilitates ovarian cancer disseminatio...

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Main Authors: Bakhtiyor Yakubov, Lan Chen, Alexey M Belkin, Sheng Zhang, Bhadrani Chelladurai, Zhong-Yin Zhang, Daniela Matei
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3930694?pdf=render
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spelling doaj-0b0089e8a4af41a6a297290fe1fc4e5e2020-11-25T01:46:28ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0192e8928510.1371/journal.pone.0089285Small molecule inhibitors target the tissue transglutaminase and fibronectin interaction.Bakhtiyor YakubovLan ChenAlexey M BelkinSheng ZhangBhadrani ChelladuraiZhong-Yin ZhangDaniela MateiTissue transglutaminase (TG2) mediates protein crosslinking through generation of ε-(γ-glutamyl) lysine isopeptide bonds and promotes cell adhesion through interaction with fibronectin (FN) and integrins. Cell adhesion to the peritoneal matrix regulated by TG2 facilitates ovarian cancer dissemination. Therefore, disruption of the TG2-FN complex by small molecules may inhibit cell adhesion and metastasis. A novel high throughput screening (HTS) assay based on AlphaLISA™ technology was developed to measure the formation of a complex between His-TG2 and the biotinylated FN fragment that binds TG2 and to discover small molecules that inhibit this protein-protein interaction. Several hits were identified from 10,000 compounds screened. The top candidates selected based on >70% inhibition of the TG2/FN complex formation were confirmed by using ELISA and bioassays measuring cell adhesion, migration, invasion, and proliferation. In conclusion, the AlphaLISA bead format assay measuring the TG2-FN interaction is robust and suitable for HTS of small molecules. One compound identified from the screen (TG53) potently inhibited ovarian cancer cell adhesion to FN, cell migration, and invasion and could be further developed as a potential inhibitor for ovarian cancer dissemination.http://europepmc.org/articles/PMC3930694?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Bakhtiyor Yakubov
Lan Chen
Alexey M Belkin
Sheng Zhang
Bhadrani Chelladurai
Zhong-Yin Zhang
Daniela Matei
spellingShingle Bakhtiyor Yakubov
Lan Chen
Alexey M Belkin
Sheng Zhang
Bhadrani Chelladurai
Zhong-Yin Zhang
Daniela Matei
Small molecule inhibitors target the tissue transglutaminase and fibronectin interaction.
PLoS ONE
author_facet Bakhtiyor Yakubov
Lan Chen
Alexey M Belkin
Sheng Zhang
Bhadrani Chelladurai
Zhong-Yin Zhang
Daniela Matei
author_sort Bakhtiyor Yakubov
title Small molecule inhibitors target the tissue transglutaminase and fibronectin interaction.
title_short Small molecule inhibitors target the tissue transglutaminase and fibronectin interaction.
title_full Small molecule inhibitors target the tissue transglutaminase and fibronectin interaction.
title_fullStr Small molecule inhibitors target the tissue transglutaminase and fibronectin interaction.
title_full_unstemmed Small molecule inhibitors target the tissue transglutaminase and fibronectin interaction.
title_sort small molecule inhibitors target the tissue transglutaminase and fibronectin interaction.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description Tissue transglutaminase (TG2) mediates protein crosslinking through generation of ε-(γ-glutamyl) lysine isopeptide bonds and promotes cell adhesion through interaction with fibronectin (FN) and integrins. Cell adhesion to the peritoneal matrix regulated by TG2 facilitates ovarian cancer dissemination. Therefore, disruption of the TG2-FN complex by small molecules may inhibit cell adhesion and metastasis. A novel high throughput screening (HTS) assay based on AlphaLISA™ technology was developed to measure the formation of a complex between His-TG2 and the biotinylated FN fragment that binds TG2 and to discover small molecules that inhibit this protein-protein interaction. Several hits were identified from 10,000 compounds screened. The top candidates selected based on >70% inhibition of the TG2/FN complex formation were confirmed by using ELISA and bioassays measuring cell adhesion, migration, invasion, and proliferation. In conclusion, the AlphaLISA bead format assay measuring the TG2-FN interaction is robust and suitable for HTS of small molecules. One compound identified from the screen (TG53) potently inhibited ovarian cancer cell adhesion to FN, cell migration, and invasion and could be further developed as a potential inhibitor for ovarian cancer dissemination.
url http://europepmc.org/articles/PMC3930694?pdf=render
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