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Heteronemin and Tetrac Induce Anti-Proliferation by Blocking EGFR-Mediated Signaling in Colorectal Cancer Cells

Overexpressed EGFR and mutant K-Ras play vital roles in therapeutic resistance in colorectal cancer patients. To search for an effective therapeutic protocol is an urgent task. A secondary metabolite in the sponge Hippospongia sp., Heteronemin, has been shown to induce anti-proliferation in several...

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Autores principales: Unson, Sukanya, Chang, Tung-Cheng, Yang, Yung-Ning, Wang, Shwu-Huey, Huang, Chi-Hung, Crawford, Dana R., Huang, Haw-Ming, Li, Zi-Lin, Lin, Hung-Yun, Whang-Peng, Jacqueline, Wang, Kuan, Davis, Paul J., Li, Wen-Shan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9410344/
https://www.ncbi.nlm.nih.gov/pubmed/36005485
http://dx.doi.org/10.3390/md20080482
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author Unson, Sukanya
Chang, Tung-Cheng
Yang, Yung-Ning
Wang, Shwu-Huey
Huang, Chi-Hung
Crawford, Dana R.
Huang, Haw-Ming
Li, Zi-Lin
Lin, Hung-Yun
Whang-Peng, Jacqueline
Wang, Kuan
Davis, Paul J.
Li, Wen-Shan
author_facet Unson, Sukanya
Chang, Tung-Cheng
Yang, Yung-Ning
Wang, Shwu-Huey
Huang, Chi-Hung
Crawford, Dana R.
Huang, Haw-Ming
Li, Zi-Lin
Lin, Hung-Yun
Whang-Peng, Jacqueline
Wang, Kuan
Davis, Paul J.
Li, Wen-Shan
author_sort Unson, Sukanya
collection PubMed
description Overexpressed EGFR and mutant K-Ras play vital roles in therapeutic resistance in colorectal cancer patients. To search for an effective therapeutic protocol is an urgent task. A secondary metabolite in the sponge Hippospongia sp., Heteronemin, has been shown to induce anti-proliferation in several types of cancers. A thyroxine-deaminated analogue, tetrac, binds to integrin αvβ3 to induce anti-proliferation in different cancers. Heteronemin- and in combination with tetrac-induced antiproliferative effects were evaluated. Tetrac enhanced heteronemin-induced anti-proliferation in HT-29 cells (KRAS WT CRC) and HCT-116 cells (KRAS MT CRC). Heteronemin and tetrac arrested cell cycle in different phases. Combined treatment increased the cell accumulation in sub-G1 and S phases. The combined treatment also induced the inactivation of EGFR signaling and downregulated the phosphorylated ERK1/2 protein in both cell lines. Heteronemin and the combination showed the downregulation of the phosphorylated and total PI3K protein in HT-29 cells (KRAS WT CRC). Results by NanoString technology and RT-qPCR revealed that heteronemin and combined treatment suppressed the expression of EGFR and downstream genes in HCT-116 cells (KRAS MT CRC). Heteronemin or combined treatment downregulated genes associated with cancer progression and decreased cell motility. Heteronemin or the combined treatment suppressed PD-L1 expression in both cancer cell lines. However, only tetrac and the combined treatment inhibited PD-L1 protein accumulation in HT-29 cells (KRAS WT CRC) and HCT-116 cells (KRAS MT CRC), respectively. In summary, heteronemin induced anti-proliferation in colorectal cancer cells by blocking the EGFR-dependent signal transduction pathway. The combined treatment further enhanced the anti-proliferative effect via PD-L1 suppression. It can be an alternative strategy to suppress mutant KRAS resistance for anti-EGFR therapy.
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spelling pubmed-94103442022-08-26 Heteronemin and Tetrac Induce Anti-Proliferation by Blocking EGFR-Mediated Signaling in Colorectal Cancer Cells Unson, Sukanya Chang, Tung-Cheng Yang, Yung-Ning Wang, Shwu-Huey Huang, Chi-Hung Crawford, Dana R. Huang, Haw-Ming Li, Zi-Lin Lin, Hung-Yun Whang-Peng, Jacqueline Wang, Kuan Davis, Paul J. Li, Wen-Shan Mar Drugs Article Overexpressed EGFR and mutant K-Ras play vital roles in therapeutic resistance in colorectal cancer patients. To search for an effective therapeutic protocol is an urgent task. A secondary metabolite in the sponge Hippospongia sp., Heteronemin, has been shown to induce anti-proliferation in several types of cancers. A thyroxine-deaminated analogue, tetrac, binds to integrin αvβ3 to induce anti-proliferation in different cancers. Heteronemin- and in combination with tetrac-induced antiproliferative effects were evaluated. Tetrac enhanced heteronemin-induced anti-proliferation in HT-29 cells (KRAS WT CRC) and HCT-116 cells (KRAS MT CRC). Heteronemin and tetrac arrested cell cycle in different phases. Combined treatment increased the cell accumulation in sub-G1 and S phases. The combined treatment also induced the inactivation of EGFR signaling and downregulated the phosphorylated ERK1/2 protein in both cell lines. Heteronemin and the combination showed the downregulation of the phosphorylated and total PI3K protein in HT-29 cells (KRAS WT CRC). Results by NanoString technology and RT-qPCR revealed that heteronemin and combined treatment suppressed the expression of EGFR and downstream genes in HCT-116 cells (KRAS MT CRC). Heteronemin or combined treatment downregulated genes associated with cancer progression and decreased cell motility. Heteronemin or the combined treatment suppressed PD-L1 expression in both cancer cell lines. However, only tetrac and the combined treatment inhibited PD-L1 protein accumulation in HT-29 cells (KRAS WT CRC) and HCT-116 cells (KRAS MT CRC), respectively. In summary, heteronemin induced anti-proliferation in colorectal cancer cells by blocking the EGFR-dependent signal transduction pathway. The combined treatment further enhanced the anti-proliferative effect via PD-L1 suppression. It can be an alternative strategy to suppress mutant KRAS resistance for anti-EGFR therapy. MDPI 2022-07-27 /pmc/articles/PMC9410344/ /pubmed/36005485 http://dx.doi.org/10.3390/md20080482 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Unson, Sukanya
Chang, Tung-Cheng
Yang, Yung-Ning
Wang, Shwu-Huey
Huang, Chi-Hung
Crawford, Dana R.
Huang, Haw-Ming
Li, Zi-Lin
Lin, Hung-Yun
Whang-Peng, Jacqueline
Wang, Kuan
Davis, Paul J.
Li, Wen-Shan
Heteronemin and Tetrac Induce Anti-Proliferation by Blocking EGFR-Mediated Signaling in Colorectal Cancer Cells
title Heteronemin and Tetrac Induce Anti-Proliferation by Blocking EGFR-Mediated Signaling in Colorectal Cancer Cells
title_full Heteronemin and Tetrac Induce Anti-Proliferation by Blocking EGFR-Mediated Signaling in Colorectal Cancer Cells
title_fullStr Heteronemin and Tetrac Induce Anti-Proliferation by Blocking EGFR-Mediated Signaling in Colorectal Cancer Cells
title_full_unstemmed Heteronemin and Tetrac Induce Anti-Proliferation by Blocking EGFR-Mediated Signaling in Colorectal Cancer Cells
title_short Heteronemin and Tetrac Induce Anti-Proliferation by Blocking EGFR-Mediated Signaling in Colorectal Cancer Cells
title_sort heteronemin and tetrac induce anti-proliferation by blocking egfr-mediated signaling in colorectal cancer cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9410344/
https://www.ncbi.nlm.nih.gov/pubmed/36005485
http://dx.doi.org/10.3390/md20080482
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