Cargando…
Up‐regulation of KISS1 as a novel target of Let‐7i in melanoma serves as a potential suppressor of migration and proliferation in vitro
Melanoma is a kind of skin cancer that is begun by the alteration of melanocytes. miRNAs are small non‐coding RNA molecules that regulate a variety of biological processes. KISS1, the metastasis‐suppressor gene, encodes kisspeptins which inhibits migration and proliferation of cancers. This study wa...
Autores principales: | , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
John Wiley and Sons Inc.
2021
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8278109/ https://www.ncbi.nlm.nih.gov/pubmed/34096173 http://dx.doi.org/10.1111/jcmm.16695 |
_version_ | 1783722199348150272 |
---|---|
author | Alkafaji, Haider A. Raji, Ahmed Rahman, Heshu S. Zekiy, Angelina O. Adili, Ali Jalili, Mohammadmahdi Hojjatipour, Tahereh Cid‐Arregui, Angel Shomali, Navid Tarzi, Saeed Tamjidifar, Rozita Heshmati, Ramin Marofi, Faroogh Akbari, Morteza Hasanzadeh, Ali Deljavanghodrati, Mina Jarahian, Mostafa Sandoghchian Shotorbani, Siamak |
author_facet | Alkafaji, Haider A. Raji, Ahmed Rahman, Heshu S. Zekiy, Angelina O. Adili, Ali Jalili, Mohammadmahdi Hojjatipour, Tahereh Cid‐Arregui, Angel Shomali, Navid Tarzi, Saeed Tamjidifar, Rozita Heshmati, Ramin Marofi, Faroogh Akbari, Morteza Hasanzadeh, Ali Deljavanghodrati, Mina Jarahian, Mostafa Sandoghchian Shotorbani, Siamak |
author_sort | Alkafaji, Haider A. |
collection | PubMed |
description | Melanoma is a kind of skin cancer that is begun by the alteration of melanocytes. miRNAs are small non‐coding RNA molecules that regulate a variety of biological processes. KISS1, the metastasis‐suppressor gene, encodes kisspeptins which inhibits migration and proliferation of cancers. This study was aimed to determine the role of Let‐7i and KISS1 in melanoma cell migration and proliferation. At first, the expression of Let‐7i and KISS1 was determined in patients with melanoma. In the in vitro part of the study, Let‐7i mimics were transfected and the impact of its restoration on target gene expression, proliferation, migration and apoptosis of SK‐MEL‐3 melanoma cell line was assessed by real‐time PCR and Western blotting, MTT assay, wound‐healing assay and flow cytometry, respectively. Besides, KISS1 inhibitor siRNA alone and along with Let‐7i was transfected to determine their probable correlation. The results revealed that either Let‐7i or KISS1 were down‐regulated in patients with melanoma. The results obtained from the in vitro part of the study revealed that restoration of Let‐7i reduced the expression of metastasis‐ and proliferation‐related target genes. Moreover, it was revealed that up‐regulation of Let‐7i attenuated migration and proliferation capability of SK‐MEL‐3 cells. Besides, it was demonstrated that Let‐7i restoration induced apoptosis in melanoma cells. More importantly, the KISS1 inhibitor caused a prominent cell migration and proliferation, attenuated by Let‐7i re‐expression. To sum up, the present study revealed the impressive role of Let‐7i restoration along with its correlation with KISS1 on melanoma carcinogenicity which may be applicable in future in vivo studies. |
format | Online Article Text |
id | pubmed-8278109 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | John Wiley and Sons Inc. |
record_format | MEDLINE/PubMed |
spelling | pubmed-82781092021-07-15 Up‐regulation of KISS1 as a novel target of Let‐7i in melanoma serves as a potential suppressor of migration and proliferation in vitro Alkafaji, Haider A. Raji, Ahmed Rahman, Heshu S. Zekiy, Angelina O. Adili, Ali Jalili, Mohammadmahdi Hojjatipour, Tahereh Cid‐Arregui, Angel Shomali, Navid Tarzi, Saeed Tamjidifar, Rozita Heshmati, Ramin Marofi, Faroogh Akbari, Morteza Hasanzadeh, Ali Deljavanghodrati, Mina Jarahian, Mostafa Sandoghchian Shotorbani, Siamak J Cell Mol Med Original Articles Melanoma is a kind of skin cancer that is begun by the alteration of melanocytes. miRNAs are small non‐coding RNA molecules that regulate a variety of biological processes. KISS1, the metastasis‐suppressor gene, encodes kisspeptins which inhibits migration and proliferation of cancers. This study was aimed to determine the role of Let‐7i and KISS1 in melanoma cell migration and proliferation. At first, the expression of Let‐7i and KISS1 was determined in patients with melanoma. In the in vitro part of the study, Let‐7i mimics were transfected and the impact of its restoration on target gene expression, proliferation, migration and apoptosis of SK‐MEL‐3 melanoma cell line was assessed by real‐time PCR and Western blotting, MTT assay, wound‐healing assay and flow cytometry, respectively. Besides, KISS1 inhibitor siRNA alone and along with Let‐7i was transfected to determine their probable correlation. The results revealed that either Let‐7i or KISS1 were down‐regulated in patients with melanoma. The results obtained from the in vitro part of the study revealed that restoration of Let‐7i reduced the expression of metastasis‐ and proliferation‐related target genes. Moreover, it was revealed that up‐regulation of Let‐7i attenuated migration and proliferation capability of SK‐MEL‐3 cells. Besides, it was demonstrated that Let‐7i restoration induced apoptosis in melanoma cells. More importantly, the KISS1 inhibitor caused a prominent cell migration and proliferation, attenuated by Let‐7i re‐expression. To sum up, the present study revealed the impressive role of Let‐7i restoration along with its correlation with KISS1 on melanoma carcinogenicity which may be applicable in future in vivo studies. John Wiley and Sons Inc. 2021-06-06 2021-07 /pmc/articles/PMC8278109/ /pubmed/34096173 http://dx.doi.org/10.1111/jcmm.16695 Text en © 2021 The Authors. Journal of Cellular and Molecular Medicine published by Foundation for Cellular and Molecular Medicine and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Original Articles Alkafaji, Haider A. Raji, Ahmed Rahman, Heshu S. Zekiy, Angelina O. Adili, Ali Jalili, Mohammadmahdi Hojjatipour, Tahereh Cid‐Arregui, Angel Shomali, Navid Tarzi, Saeed Tamjidifar, Rozita Heshmati, Ramin Marofi, Faroogh Akbari, Morteza Hasanzadeh, Ali Deljavanghodrati, Mina Jarahian, Mostafa Sandoghchian Shotorbani, Siamak Up‐regulation of KISS1 as a novel target of Let‐7i in melanoma serves as a potential suppressor of migration and proliferation in vitro |
title | Up‐regulation of KISS1 as a novel target of Let‐7i in melanoma serves as a potential suppressor of migration and proliferation in vitro |
title_full | Up‐regulation of KISS1 as a novel target of Let‐7i in melanoma serves as a potential suppressor of migration and proliferation in vitro |
title_fullStr | Up‐regulation of KISS1 as a novel target of Let‐7i in melanoma serves as a potential suppressor of migration and proliferation in vitro |
title_full_unstemmed | Up‐regulation of KISS1 as a novel target of Let‐7i in melanoma serves as a potential suppressor of migration and proliferation in vitro |
title_short | Up‐regulation of KISS1 as a novel target of Let‐7i in melanoma serves as a potential suppressor of migration and proliferation in vitro |
title_sort | up‐regulation of kiss1 as a novel target of let‐7i in melanoma serves as a potential suppressor of migration and proliferation in vitro |
topic | Original Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8278109/ https://www.ncbi.nlm.nih.gov/pubmed/34096173 http://dx.doi.org/10.1111/jcmm.16695 |
work_keys_str_mv | AT alkafajihaidera upregulationofkiss1asanoveltargetoflet7iinmelanomaservesasapotentialsuppressorofmigrationandproliferationinvitro AT rajiahmed upregulationofkiss1asanoveltargetoflet7iinmelanomaservesasapotentialsuppressorofmigrationandproliferationinvitro AT rahmanheshus upregulationofkiss1asanoveltargetoflet7iinmelanomaservesasapotentialsuppressorofmigrationandproliferationinvitro AT zekiyangelinao upregulationofkiss1asanoveltargetoflet7iinmelanomaservesasapotentialsuppressorofmigrationandproliferationinvitro AT adiliali upregulationofkiss1asanoveltargetoflet7iinmelanomaservesasapotentialsuppressorofmigrationandproliferationinvitro AT jalilimohammadmahdi upregulationofkiss1asanoveltargetoflet7iinmelanomaservesasapotentialsuppressorofmigrationandproliferationinvitro AT hojjatipourtahereh upregulationofkiss1asanoveltargetoflet7iinmelanomaservesasapotentialsuppressorofmigrationandproliferationinvitro AT cidarreguiangel upregulationofkiss1asanoveltargetoflet7iinmelanomaservesasapotentialsuppressorofmigrationandproliferationinvitro AT shomalinavid upregulationofkiss1asanoveltargetoflet7iinmelanomaservesasapotentialsuppressorofmigrationandproliferationinvitro AT tarzisaeed upregulationofkiss1asanoveltargetoflet7iinmelanomaservesasapotentialsuppressorofmigrationandproliferationinvitro AT tamjidifarrozita upregulationofkiss1asanoveltargetoflet7iinmelanomaservesasapotentialsuppressorofmigrationandproliferationinvitro AT heshmatiramin upregulationofkiss1asanoveltargetoflet7iinmelanomaservesasapotentialsuppressorofmigrationandproliferationinvitro AT marofifaroogh upregulationofkiss1asanoveltargetoflet7iinmelanomaservesasapotentialsuppressorofmigrationandproliferationinvitro AT akbarimorteza upregulationofkiss1asanoveltargetoflet7iinmelanomaservesasapotentialsuppressorofmigrationandproliferationinvitro AT hasanzadehali upregulationofkiss1asanoveltargetoflet7iinmelanomaservesasapotentialsuppressorofmigrationandproliferationinvitro AT deljavanghodratimina upregulationofkiss1asanoveltargetoflet7iinmelanomaservesasapotentialsuppressorofmigrationandproliferationinvitro AT jarahianmostafa upregulationofkiss1asanoveltargetoflet7iinmelanomaservesasapotentialsuppressorofmigrationandproliferationinvitro AT sandoghchianshotorbanisiamak upregulationofkiss1asanoveltargetoflet7iinmelanomaservesasapotentialsuppressorofmigrationandproliferationinvitro |