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Identification of Two Novel CIL-102 Upregulations of ERP29 and FUMH to Inhibit the Migration and Invasiveness of Colorectal Cancer Cells by Using the Proteomic Approach

CIL-102 (1-[4-(furo[2,3-b]quinolin-4-ylamino) phenyl]ethanone) is a major active agent of Camptotheca acuminata’s alkaloid derivative, and its anti-tumorigenic activity, a valuable biological property of the agent, has been reported in many types of cancer. In this study, we researched the novel CIL...

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Autores principales: Cheng, Kung-Chuan, Kuo, Hsing-Chun, Hsieh, Meng-Chiao, Huang, Cheng-Yi, Teng, Chih-Chuan, Tung, Shui-Yi, Shen, Chien-Heng, Lee, Kam-Fai, Yang, Ya-Ling, Lee, Ko-Chao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8465048/
https://www.ncbi.nlm.nih.gov/pubmed/34572494
http://dx.doi.org/10.3390/biom11091280
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author Cheng, Kung-Chuan
Kuo, Hsing-Chun
Hsieh, Meng-Chiao
Huang, Cheng-Yi
Teng, Chih-Chuan
Tung, Shui-Yi
Shen, Chien-Heng
Lee, Kam-Fai
Yang, Ya-Ling
Lee, Ko-Chao
author_facet Cheng, Kung-Chuan
Kuo, Hsing-Chun
Hsieh, Meng-Chiao
Huang, Cheng-Yi
Teng, Chih-Chuan
Tung, Shui-Yi
Shen, Chien-Heng
Lee, Kam-Fai
Yang, Ya-Ling
Lee, Ko-Chao
author_sort Cheng, Kung-Chuan
collection PubMed
description CIL-102 (1-[4-(furo[2,3-b]quinolin-4-ylamino) phenyl]ethanone) is a major active agent of Camptotheca acuminata’s alkaloid derivative, and its anti-tumorigenic activity, a valuable biological property of the agent, has been reported in many types of cancer. In this study, we researched the novel CIL-102-induced protein for either the induction of cell apoptosis or the inhibition of cell migration/invasiveness in colorectal cancer cells (CRC) and their molecular mechanism. Firstly, our data showed that CIL-102 treatment not only increased the cytotoxicity of cells and the production of Reactive Oxygen Species (ROS), but it also decreased cell migration and invasiveness in DLD-1 cells. In addition, many cellular death-related proteins (cleavage caspase 9, cleavage caspase 3, Bcl-2, and TNFR1 and TRAIL) and JNK MAPK/p300 pathways were increased in a time-dependent manner. Using the proteomic approach with a MALDI-TOF-TOF analysis, CIL-102-regulated differentially expressed proteins were identified, including eight downregulated and 11 upregulated proteins. Among them, upregulated Endoplasmic Reticulum resident Protein 29 (ERP29) and Fumarate Hydratase (FUMH) by CIL-102 were blocked by the inhibition of ROS production, JNK activity, and p300/CBP (CREB binding protein) signaling pathways. Importantly, the knockdown of ERP29 and FUMH expression by shRNA abolished the inhibition of cell migration and invasion by CIL-102 in DLD-1 cells. Together, our findings demonstrate that ERP29 and FUMH were upregulated by CIL102 via ROS production, JNK activity, and p300/CBP pathways, and that they were involved in the inhibition of the aggressive status of colorectal cancer cells.
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spelling pubmed-84650482021-09-27 Identification of Two Novel CIL-102 Upregulations of ERP29 and FUMH to Inhibit the Migration and Invasiveness of Colorectal Cancer Cells by Using the Proteomic Approach Cheng, Kung-Chuan Kuo, Hsing-Chun Hsieh, Meng-Chiao Huang, Cheng-Yi Teng, Chih-Chuan Tung, Shui-Yi Shen, Chien-Heng Lee, Kam-Fai Yang, Ya-Ling Lee, Ko-Chao Biomolecules Article CIL-102 (1-[4-(furo[2,3-b]quinolin-4-ylamino) phenyl]ethanone) is a major active agent of Camptotheca acuminata’s alkaloid derivative, and its anti-tumorigenic activity, a valuable biological property of the agent, has been reported in many types of cancer. In this study, we researched the novel CIL-102-induced protein for either the induction of cell apoptosis or the inhibition of cell migration/invasiveness in colorectal cancer cells (CRC) and their molecular mechanism. Firstly, our data showed that CIL-102 treatment not only increased the cytotoxicity of cells and the production of Reactive Oxygen Species (ROS), but it also decreased cell migration and invasiveness in DLD-1 cells. In addition, many cellular death-related proteins (cleavage caspase 9, cleavage caspase 3, Bcl-2, and TNFR1 and TRAIL) and JNK MAPK/p300 pathways were increased in a time-dependent manner. Using the proteomic approach with a MALDI-TOF-TOF analysis, CIL-102-regulated differentially expressed proteins were identified, including eight downregulated and 11 upregulated proteins. Among them, upregulated Endoplasmic Reticulum resident Protein 29 (ERP29) and Fumarate Hydratase (FUMH) by CIL-102 were blocked by the inhibition of ROS production, JNK activity, and p300/CBP (CREB binding protein) signaling pathways. Importantly, the knockdown of ERP29 and FUMH expression by shRNA abolished the inhibition of cell migration and invasion by CIL-102 in DLD-1 cells. Together, our findings demonstrate that ERP29 and FUMH were upregulated by CIL102 via ROS production, JNK activity, and p300/CBP pathways, and that they were involved in the inhibition of the aggressive status of colorectal cancer cells. MDPI 2021-08-27 /pmc/articles/PMC8465048/ /pubmed/34572494 http://dx.doi.org/10.3390/biom11091280 Text en © 2021 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
Cheng, Kung-Chuan
Kuo, Hsing-Chun
Hsieh, Meng-Chiao
Huang, Cheng-Yi
Teng, Chih-Chuan
Tung, Shui-Yi
Shen, Chien-Heng
Lee, Kam-Fai
Yang, Ya-Ling
Lee, Ko-Chao
Identification of Two Novel CIL-102 Upregulations of ERP29 and FUMH to Inhibit the Migration and Invasiveness of Colorectal Cancer Cells by Using the Proteomic Approach
title Identification of Two Novel CIL-102 Upregulations of ERP29 and FUMH to Inhibit the Migration and Invasiveness of Colorectal Cancer Cells by Using the Proteomic Approach
title_full Identification of Two Novel CIL-102 Upregulations of ERP29 and FUMH to Inhibit the Migration and Invasiveness of Colorectal Cancer Cells by Using the Proteomic Approach
title_fullStr Identification of Two Novel CIL-102 Upregulations of ERP29 and FUMH to Inhibit the Migration and Invasiveness of Colorectal Cancer Cells by Using the Proteomic Approach
title_full_unstemmed Identification of Two Novel CIL-102 Upregulations of ERP29 and FUMH to Inhibit the Migration and Invasiveness of Colorectal Cancer Cells by Using the Proteomic Approach
title_short Identification of Two Novel CIL-102 Upregulations of ERP29 and FUMH to Inhibit the Migration and Invasiveness of Colorectal Cancer Cells by Using the Proteomic Approach
title_sort identification of two novel cil-102 upregulations of erp29 and fumh to inhibit the migration and invasiveness of colorectal cancer cells by using the proteomic approach
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8465048/
https://www.ncbi.nlm.nih.gov/pubmed/34572494
http://dx.doi.org/10.3390/biom11091280
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