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Transcriptome Profiling and Cytological Assessments for Identifying Regulatory Pathways Associated With Diorcinol N-Induced Autophagy in A3 Cells

Fungal secondary metabolites serve as a rich resource for exploring lead compounds with medicinal importance. Diorcinol N (DN), a fungal secondary metabolite isolated from an endophytic fungus, Arthrinium arundinis, exhibits robust anticancer activity. However, the anticancer mechanism of DN remains...

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Autores principales: Yuan, Xiao-Long, Li, Xiu-Qi, Xu, Kuo, Hou, Xiao-Dong, Zhang, Zhong-Feng, Xue, Lin, Liu, Xin-Min, Zhang, Peng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7593552/
https://www.ncbi.nlm.nih.gov/pubmed/33178020
http://dx.doi.org/10.3389/fphar.2020.570450
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author Yuan, Xiao-Long
Li, Xiu-Qi
Xu, Kuo
Hou, Xiao-Dong
Zhang, Zhong-Feng
Xue, Lin
Liu, Xin-Min
Zhang, Peng
author_facet Yuan, Xiao-Long
Li, Xiu-Qi
Xu, Kuo
Hou, Xiao-Dong
Zhang, Zhong-Feng
Xue, Lin
Liu, Xin-Min
Zhang, Peng
author_sort Yuan, Xiao-Long
collection PubMed
description Fungal secondary metabolites serve as a rich resource for exploring lead compounds with medicinal importance. Diorcinol N (DN), a fungal secondary metabolite isolated from an endophytic fungus, Arthrinium arundinis, exhibits robust anticancer activity. However, the anticancer mechanism of DN remains unclear. In this study, we examined the growth-inhibitory effect of DN on different human cancer cell lines. We found that DN decreased the viability of A3 T-cell leukemia cells in a time- and concentration-dependent manner. Transcriptome analysis indicated that DN modulated the transcriptome of A3 cells. In total, 9,340 differentially expressed genes were found, among which 4,378 downregulated genes and 4,962 upregulated genes were mainly involved in autophagy, cell cycle, and DNA replication. Furthermore, we demonstrated that DN induced autophagy, cell cycle arrest in the G1/S phase, and downregulated the expression of autophagy- and cell cycle-related genes in A3 cells. By labeling A3 cells with acridine orange/ethidium bromide, Hoechst 33,258, and monodansylcadaverine and via transmission electron microscopy, we found that DN increased plasma membrane permeability, structural disorganization, vacuolation, and autophagosome formation. Our study provides evidence for the mechanism of anticancer activity of DN in T-cell leukemia (A3) cells and demonstrates the promise of DN as a lead or even candidate molecule for the treatment of acute lymphoblastic leukemia.
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spelling pubmed-75935522020-11-10 Transcriptome Profiling and Cytological Assessments for Identifying Regulatory Pathways Associated With Diorcinol N-Induced Autophagy in A3 Cells Yuan, Xiao-Long Li, Xiu-Qi Xu, Kuo Hou, Xiao-Dong Zhang, Zhong-Feng Xue, Lin Liu, Xin-Min Zhang, Peng Front Pharmacol Pharmacology Fungal secondary metabolites serve as a rich resource for exploring lead compounds with medicinal importance. Diorcinol N (DN), a fungal secondary metabolite isolated from an endophytic fungus, Arthrinium arundinis, exhibits robust anticancer activity. However, the anticancer mechanism of DN remains unclear. In this study, we examined the growth-inhibitory effect of DN on different human cancer cell lines. We found that DN decreased the viability of A3 T-cell leukemia cells in a time- and concentration-dependent manner. Transcriptome analysis indicated that DN modulated the transcriptome of A3 cells. In total, 9,340 differentially expressed genes were found, among which 4,378 downregulated genes and 4,962 upregulated genes were mainly involved in autophagy, cell cycle, and DNA replication. Furthermore, we demonstrated that DN induced autophagy, cell cycle arrest in the G1/S phase, and downregulated the expression of autophagy- and cell cycle-related genes in A3 cells. By labeling A3 cells with acridine orange/ethidium bromide, Hoechst 33,258, and monodansylcadaverine and via transmission electron microscopy, we found that DN increased plasma membrane permeability, structural disorganization, vacuolation, and autophagosome formation. Our study provides evidence for the mechanism of anticancer activity of DN in T-cell leukemia (A3) cells and demonstrates the promise of DN as a lead or even candidate molecule for the treatment of acute lymphoblastic leukemia. Frontiers Media S.A. 2020-10-15 /pmc/articles/PMC7593552/ /pubmed/33178020 http://dx.doi.org/10.3389/fphar.2020.570450 Text en Copyright © 2020 Yuan, Li, Xu, Hou, Zhang, Xue, Liu and Zhang http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Yuan, Xiao-Long
Li, Xiu-Qi
Xu, Kuo
Hou, Xiao-Dong
Zhang, Zhong-Feng
Xue, Lin
Liu, Xin-Min
Zhang, Peng
Transcriptome Profiling and Cytological Assessments for Identifying Regulatory Pathways Associated With Diorcinol N-Induced Autophagy in A3 Cells
title Transcriptome Profiling and Cytological Assessments for Identifying Regulatory Pathways Associated With Diorcinol N-Induced Autophagy in A3 Cells
title_full Transcriptome Profiling and Cytological Assessments for Identifying Regulatory Pathways Associated With Diorcinol N-Induced Autophagy in A3 Cells
title_fullStr Transcriptome Profiling and Cytological Assessments for Identifying Regulatory Pathways Associated With Diorcinol N-Induced Autophagy in A3 Cells
title_full_unstemmed Transcriptome Profiling and Cytological Assessments for Identifying Regulatory Pathways Associated With Diorcinol N-Induced Autophagy in A3 Cells
title_short Transcriptome Profiling and Cytological Assessments for Identifying Regulatory Pathways Associated With Diorcinol N-Induced Autophagy in A3 Cells
title_sort transcriptome profiling and cytological assessments for identifying regulatory pathways associated with diorcinol n-induced autophagy in a3 cells
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7593552/
https://www.ncbi.nlm.nih.gov/pubmed/33178020
http://dx.doi.org/10.3389/fphar.2020.570450
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