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Mapping a Circular RNA–microRNA–mRNA-Signaling Regulatory Axis that Modulates Stemness Properties of Cancer Stem Cell Populations in Colorectal Cancer Spheroid Cells

Spheroidal cancer cell cultures have been used to enrich cancer stem cells (CSC), which are thought to contribute to important clinical features of tumors. This study aimed to map the regulatory networks driven by circular RNAs (circRNAs) in CSC-enriched colorectal cancer (CRC) spheroid cells. The s...

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Autores principales: Rengganaten, Vimalan, Huang, Chiu-Jung, Tsai, Ping-Hsing, Wang, Mong-Lien, Yang, Yi-Ping, Lan, Yuan-Tzu, Fang, Wen-Liang, Soo, Shelly, Ong, Hooi Tin, Cheong, Soon Keng, Choo, Kong Bung, Chiou, Shih-Hwa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7672619/
https://www.ncbi.nlm.nih.gov/pubmed/33114016
http://dx.doi.org/10.3390/ijms21217864
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author Rengganaten, Vimalan
Huang, Chiu-Jung
Tsai, Ping-Hsing
Wang, Mong-Lien
Yang, Yi-Ping
Lan, Yuan-Tzu
Fang, Wen-Liang
Soo, Shelly
Ong, Hooi Tin
Cheong, Soon Keng
Choo, Kong Bung
Chiou, Shih-Hwa
author_facet Rengganaten, Vimalan
Huang, Chiu-Jung
Tsai, Ping-Hsing
Wang, Mong-Lien
Yang, Yi-Ping
Lan, Yuan-Tzu
Fang, Wen-Liang
Soo, Shelly
Ong, Hooi Tin
Cheong, Soon Keng
Choo, Kong Bung
Chiou, Shih-Hwa
author_sort Rengganaten, Vimalan
collection PubMed
description Spheroidal cancer cell cultures have been used to enrich cancer stem cells (CSC), which are thought to contribute to important clinical features of tumors. This study aimed to map the regulatory networks driven by circular RNAs (circRNAs) in CSC-enriched colorectal cancer (CRC) spheroid cells. The spheroid cells established from two CRC cell lines acquired stemness properties in pluripotency gene expression and multi-lineage differentiation capacity. Genome-wide sequencing identified 1503 and 636 circRNAs specific to the CRC parental and spheroid cells, respectively. In the CRC spheroids, algorithmic analyses unveiled a core network of mRNAs involved in modulating stemness-associated signaling pathways, driven by a circRNA–microRNA (miRNA)–mRNA axis. The two major circRNAs, hsa_circ_0066631 and hsa_circ_0082096, in this network were significantly up-regulated in expression levels in the spheroid cells. The two circRNAs were predicted to target and were experimentally shown to down-regulate miR-140-3p, miR-224, miR-382, miR-548c-3p and miR-579, confirming circRNA sponging of the targeted miRNAs. Furthermore, the affected miRNAs were demonstrated to inhibit degradation of six mRNA targets, viz. ACVR1C/ALK7, FZD3, IL6ST/GP130, SKIL/SNON, SMAD2 and WNT5, in the CRC spheroid cells. These mRNAs encode proteins that are reported to variously regulate the GP130/Stat, Activin/Nodal, TGF-β/SMAD or Wnt/β-catenin signaling pathways in controlling various aspects of CSC stemness. Using the CRC spheroid cell model, the novel circRNA–miRNA–mRNA axis mapped in this work forms the foundation for the elucidation of the molecular mechanisms of the complex cellular and biochemical processes that determine CSC stemness properties of cancer cells, and possibly for designing therapeutic strategies for CRC treatment by targeting CSC.
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spelling pubmed-76726192020-11-19 Mapping a Circular RNA–microRNA–mRNA-Signaling Regulatory Axis that Modulates Stemness Properties of Cancer Stem Cell Populations in Colorectal Cancer Spheroid Cells Rengganaten, Vimalan Huang, Chiu-Jung Tsai, Ping-Hsing Wang, Mong-Lien Yang, Yi-Ping Lan, Yuan-Tzu Fang, Wen-Liang Soo, Shelly Ong, Hooi Tin Cheong, Soon Keng Choo, Kong Bung Chiou, Shih-Hwa Int J Mol Sci Article Spheroidal cancer cell cultures have been used to enrich cancer stem cells (CSC), which are thought to contribute to important clinical features of tumors. This study aimed to map the regulatory networks driven by circular RNAs (circRNAs) in CSC-enriched colorectal cancer (CRC) spheroid cells. The spheroid cells established from two CRC cell lines acquired stemness properties in pluripotency gene expression and multi-lineage differentiation capacity. Genome-wide sequencing identified 1503 and 636 circRNAs specific to the CRC parental and spheroid cells, respectively. In the CRC spheroids, algorithmic analyses unveiled a core network of mRNAs involved in modulating stemness-associated signaling pathways, driven by a circRNA–microRNA (miRNA)–mRNA axis. The two major circRNAs, hsa_circ_0066631 and hsa_circ_0082096, in this network were significantly up-regulated in expression levels in the spheroid cells. The two circRNAs were predicted to target and were experimentally shown to down-regulate miR-140-3p, miR-224, miR-382, miR-548c-3p and miR-579, confirming circRNA sponging of the targeted miRNAs. Furthermore, the affected miRNAs were demonstrated to inhibit degradation of six mRNA targets, viz. ACVR1C/ALK7, FZD3, IL6ST/GP130, SKIL/SNON, SMAD2 and WNT5, in the CRC spheroid cells. These mRNAs encode proteins that are reported to variously regulate the GP130/Stat, Activin/Nodal, TGF-β/SMAD or Wnt/β-catenin signaling pathways in controlling various aspects of CSC stemness. Using the CRC spheroid cell model, the novel circRNA–miRNA–mRNA axis mapped in this work forms the foundation for the elucidation of the molecular mechanisms of the complex cellular and biochemical processes that determine CSC stemness properties of cancer cells, and possibly for designing therapeutic strategies for CRC treatment by targeting CSC. MDPI 2020-10-23 /pmc/articles/PMC7672619/ /pubmed/33114016 http://dx.doi.org/10.3390/ijms21217864 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Rengganaten, Vimalan
Huang, Chiu-Jung
Tsai, Ping-Hsing
Wang, Mong-Lien
Yang, Yi-Ping
Lan, Yuan-Tzu
Fang, Wen-Liang
Soo, Shelly
Ong, Hooi Tin
Cheong, Soon Keng
Choo, Kong Bung
Chiou, Shih-Hwa
Mapping a Circular RNA–microRNA–mRNA-Signaling Regulatory Axis that Modulates Stemness Properties of Cancer Stem Cell Populations in Colorectal Cancer Spheroid Cells
title Mapping a Circular RNA–microRNA–mRNA-Signaling Regulatory Axis that Modulates Stemness Properties of Cancer Stem Cell Populations in Colorectal Cancer Spheroid Cells
title_full Mapping a Circular RNA–microRNA–mRNA-Signaling Regulatory Axis that Modulates Stemness Properties of Cancer Stem Cell Populations in Colorectal Cancer Spheroid Cells
title_fullStr Mapping a Circular RNA–microRNA–mRNA-Signaling Regulatory Axis that Modulates Stemness Properties of Cancer Stem Cell Populations in Colorectal Cancer Spheroid Cells
title_full_unstemmed Mapping a Circular RNA–microRNA–mRNA-Signaling Regulatory Axis that Modulates Stemness Properties of Cancer Stem Cell Populations in Colorectal Cancer Spheroid Cells
title_short Mapping a Circular RNA–microRNA–mRNA-Signaling Regulatory Axis that Modulates Stemness Properties of Cancer Stem Cell Populations in Colorectal Cancer Spheroid Cells
title_sort mapping a circular rna–microrna–mrna-signaling regulatory axis that modulates stemness properties of cancer stem cell populations in colorectal cancer spheroid cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7672619/
https://www.ncbi.nlm.nih.gov/pubmed/33114016
http://dx.doi.org/10.3390/ijms21217864
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