Cargando…

Cordycepin (3′-deoxyadenosine) suppressed HMGA2, Twist1 and ZEB1-dependent melanoma invasion and metastasis by targeting miR-33b

Malignant melanoma, the most deadly form of skin cancer, has a high propensity for metastatic spread and is notoriously chemotherapy-resistant. Cordycepin, the active component of Cordyceps spp., has been identified to have anti-metastatic effect on tumor progression and thus possesses pharmacologic...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Pu, Huang, Changjin, Fu, Changliang, Tian, Yang, Hu, Yijuan, Wang, Bochu, Strasner, Amy, Song, Yang, Song, Erqun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4496401/
https://www.ncbi.nlm.nih.gov/pubmed/25868853
_version_ 1782380396276613120
author Zhang, Pu
Huang, Changjin
Fu, Changliang
Tian, Yang
Hu, Yijuan
Wang, Bochu
Strasner, Amy
Song, Yang
Song, Erqun
author_facet Zhang, Pu
Huang, Changjin
Fu, Changliang
Tian, Yang
Hu, Yijuan
Wang, Bochu
Strasner, Amy
Song, Yang
Song, Erqun
author_sort Zhang, Pu
collection PubMed
description Malignant melanoma, the most deadly form of skin cancer, has a high propensity for metastatic spread and is notoriously chemotherapy-resistant. Cordycepin, the active component of Cordyceps spp., has been identified to have anti-metastatic effect on tumor progression and thus possesses pharmacological and therapeutic potentials. However, the mechanisms of anti-metastatic effects of cordycepin at cellular levels remain elusive. We analyzed the effect of cordycepin on human melanoma miRNA expression profiles by miRNAarray and found that miR-33b was upregulated in highly-metastatic melanoma cell lines following cordycepin exposure. Cordycepin-mediated miR-33b expression was dependent on LXR-RXR heterodimer activation. miR-33b directly binds to HMGA2, Twist1 and ZEB1 3′-UTR to suppress their expression. The negative correlations between miR-33b levels and HMGA2, Twist1 or ZEB1 expression were detected in 72 patient melanoma tissue samples. By targeting HMGA2 and Twist1, miR-33b attenuated melanoma migration and invasiveness upon cordycepin exposure. miR-33b knockdown or ZEB1 overexpression reverted cordycepin-mediated mesenchymal-epithelial transition (MET), triggering the expression of N-cadherin. In spontaneous metastasis models, cordycepin suppressed tumor metastasis without altering primary tumor growth. We showed for the first time that targeting miRNA by cordycepin indicates a new mechanism of cordycepin-induced suppression of tumor metastasis and miR-33b/HMGA2/Twist1/ZEB1 axis plays critical roles in regulating melanoma dissemination.
format Online
Article
Text
id pubmed-4496401
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-44964012015-07-15 Cordycepin (3′-deoxyadenosine) suppressed HMGA2, Twist1 and ZEB1-dependent melanoma invasion and metastasis by targeting miR-33b Zhang, Pu Huang, Changjin Fu, Changliang Tian, Yang Hu, Yijuan Wang, Bochu Strasner, Amy Song, Yang Song, Erqun Oncotarget Research Paper Malignant melanoma, the most deadly form of skin cancer, has a high propensity for metastatic spread and is notoriously chemotherapy-resistant. Cordycepin, the active component of Cordyceps spp., has been identified to have anti-metastatic effect on tumor progression and thus possesses pharmacological and therapeutic potentials. However, the mechanisms of anti-metastatic effects of cordycepin at cellular levels remain elusive. We analyzed the effect of cordycepin on human melanoma miRNA expression profiles by miRNAarray and found that miR-33b was upregulated in highly-metastatic melanoma cell lines following cordycepin exposure. Cordycepin-mediated miR-33b expression was dependent on LXR-RXR heterodimer activation. miR-33b directly binds to HMGA2, Twist1 and ZEB1 3′-UTR to suppress their expression. The negative correlations between miR-33b levels and HMGA2, Twist1 or ZEB1 expression were detected in 72 patient melanoma tissue samples. By targeting HMGA2 and Twist1, miR-33b attenuated melanoma migration and invasiveness upon cordycepin exposure. miR-33b knockdown or ZEB1 overexpression reverted cordycepin-mediated mesenchymal-epithelial transition (MET), triggering the expression of N-cadherin. In spontaneous metastasis models, cordycepin suppressed tumor metastasis without altering primary tumor growth. We showed for the first time that targeting miRNA by cordycepin indicates a new mechanism of cordycepin-induced suppression of tumor metastasis and miR-33b/HMGA2/Twist1/ZEB1 axis plays critical roles in regulating melanoma dissemination. Impact Journals LLC 2015-03-13 /pmc/articles/PMC4496401/ /pubmed/25868853 Text en Copyright: © 2015 Zhang et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Zhang, Pu
Huang, Changjin
Fu, Changliang
Tian, Yang
Hu, Yijuan
Wang, Bochu
Strasner, Amy
Song, Yang
Song, Erqun
Cordycepin (3′-deoxyadenosine) suppressed HMGA2, Twist1 and ZEB1-dependent melanoma invasion and metastasis by targeting miR-33b
title Cordycepin (3′-deoxyadenosine) suppressed HMGA2, Twist1 and ZEB1-dependent melanoma invasion and metastasis by targeting miR-33b
title_full Cordycepin (3′-deoxyadenosine) suppressed HMGA2, Twist1 and ZEB1-dependent melanoma invasion and metastasis by targeting miR-33b
title_fullStr Cordycepin (3′-deoxyadenosine) suppressed HMGA2, Twist1 and ZEB1-dependent melanoma invasion and metastasis by targeting miR-33b
title_full_unstemmed Cordycepin (3′-deoxyadenosine) suppressed HMGA2, Twist1 and ZEB1-dependent melanoma invasion and metastasis by targeting miR-33b
title_short Cordycepin (3′-deoxyadenosine) suppressed HMGA2, Twist1 and ZEB1-dependent melanoma invasion and metastasis by targeting miR-33b
title_sort cordycepin (3′-deoxyadenosine) suppressed hmga2, twist1 and zeb1-dependent melanoma invasion and metastasis by targeting mir-33b
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4496401/
https://www.ncbi.nlm.nih.gov/pubmed/25868853
work_keys_str_mv AT zhangpu cordycepin3deoxyadenosinesuppressedhmga2twist1andzeb1dependentmelanomainvasionandmetastasisbytargetingmir33b
AT huangchangjin cordycepin3deoxyadenosinesuppressedhmga2twist1andzeb1dependentmelanomainvasionandmetastasisbytargetingmir33b
AT fuchangliang cordycepin3deoxyadenosinesuppressedhmga2twist1andzeb1dependentmelanomainvasionandmetastasisbytargetingmir33b
AT tianyang cordycepin3deoxyadenosinesuppressedhmga2twist1andzeb1dependentmelanomainvasionandmetastasisbytargetingmir33b
AT huyijuan cordycepin3deoxyadenosinesuppressedhmga2twist1andzeb1dependentmelanomainvasionandmetastasisbytargetingmir33b
AT wangbochu cordycepin3deoxyadenosinesuppressedhmga2twist1andzeb1dependentmelanomainvasionandmetastasisbytargetingmir33b
AT strasneramy cordycepin3deoxyadenosinesuppressedhmga2twist1andzeb1dependentmelanomainvasionandmetastasisbytargetingmir33b
AT songyang cordycepin3deoxyadenosinesuppressedhmga2twist1andzeb1dependentmelanomainvasionandmetastasisbytargetingmir33b
AT songerqun cordycepin3deoxyadenosinesuppressedhmga2twist1andzeb1dependentmelanomainvasionandmetastasisbytargetingmir33b