Cargando…

Combined inhibition of JAK1/2 and DNMT1 by newly identified small-molecule compounds synergistically suppresses the survival and proliferation of cervical cancer cells

Despite substantial advances in treating cervical cancer (CC) with surgery, radiation and chemotherapy, patients with advanced CC still have poor prognosis and significantly variable clinical outcomes due to tumor recurrence and metastasis. Therefore, to develop more efficacious and specific treatme...

Descripción completa

Detalles Bibliográficos
Autores principales: She, Shiqi, Zhao, Yang, Kang, Bo, Chen, Cheng, Chen, Xinyu, Zhang, Xiaobing, Chen, Wenjie, Dan, Songsong, Wang, Hangxiang, Wang, Ying-Jie, Zhao, Jinhao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7476923/
https://www.ncbi.nlm.nih.gov/pubmed/32895373
http://dx.doi.org/10.1038/s41419-020-02934-8
_version_ 1783579794750832640
author She, Shiqi
Zhao, Yang
Kang, Bo
Chen, Cheng
Chen, Xinyu
Zhang, Xiaobing
Chen, Wenjie
Dan, Songsong
Wang, Hangxiang
Wang, Ying-Jie
Zhao, Jinhao
author_facet She, Shiqi
Zhao, Yang
Kang, Bo
Chen, Cheng
Chen, Xinyu
Zhang, Xiaobing
Chen, Wenjie
Dan, Songsong
Wang, Hangxiang
Wang, Ying-Jie
Zhao, Jinhao
author_sort She, Shiqi
collection PubMed
description Despite substantial advances in treating cervical cancer (CC) with surgery, radiation and chemotherapy, patients with advanced CC still have poor prognosis and significantly variable clinical outcomes due to tumor recurrence and metastasis. Therefore, to develop more efficacious and specific treatments for CC remains an unmet clinical need. In this study, by virtual screening the SPECS database, we identified multiple novel JAK inhibitor candidates and validated their antitumor drug efficacies that were particularly high against CC cell lines. AH057, the best JAK inhibitor identified, effectively blocked the JAK/STAT pathways by directly inhibiting JAK1/2 kinase activities, and led to compromised cell proliferation and invasion, increased apoptosis, arrested cell cycles, and impaired tumor progression in vitro and in vivo. Next, by screening the Selleck chemical library, we identified SGI-1027, a DNMT1 inhibitor, as the compound that displayed the highest synergy with AH057. By acting on a same set of downstream effector molecules that are dually controlled by JAK1/2 and DNMT1, the combination of AH057 with SGI-1027 potently and synergistically impaired CC cell propagation via dramatically increasing apoptotic cell death and cell-cycle arrest. These findings establish a preclinical proof of concept for combating CC by dual targeting of JAK1/2 and DNMT1, and provide support for launching a clinical trial to evaluate the efficacy and safety of this drug combination in patients with CC and other malignant tumors.
format Online
Article
Text
id pubmed-7476923
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-74769232020-09-21 Combined inhibition of JAK1/2 and DNMT1 by newly identified small-molecule compounds synergistically suppresses the survival and proliferation of cervical cancer cells She, Shiqi Zhao, Yang Kang, Bo Chen, Cheng Chen, Xinyu Zhang, Xiaobing Chen, Wenjie Dan, Songsong Wang, Hangxiang Wang, Ying-Jie Zhao, Jinhao Cell Death Dis Article Despite substantial advances in treating cervical cancer (CC) with surgery, radiation and chemotherapy, patients with advanced CC still have poor prognosis and significantly variable clinical outcomes due to tumor recurrence and metastasis. Therefore, to develop more efficacious and specific treatments for CC remains an unmet clinical need. In this study, by virtual screening the SPECS database, we identified multiple novel JAK inhibitor candidates and validated their antitumor drug efficacies that were particularly high against CC cell lines. AH057, the best JAK inhibitor identified, effectively blocked the JAK/STAT pathways by directly inhibiting JAK1/2 kinase activities, and led to compromised cell proliferation and invasion, increased apoptosis, arrested cell cycles, and impaired tumor progression in vitro and in vivo. Next, by screening the Selleck chemical library, we identified SGI-1027, a DNMT1 inhibitor, as the compound that displayed the highest synergy with AH057. By acting on a same set of downstream effector molecules that are dually controlled by JAK1/2 and DNMT1, the combination of AH057 with SGI-1027 potently and synergistically impaired CC cell propagation via dramatically increasing apoptotic cell death and cell-cycle arrest. These findings establish a preclinical proof of concept for combating CC by dual targeting of JAK1/2 and DNMT1, and provide support for launching a clinical trial to evaluate the efficacy and safety of this drug combination in patients with CC and other malignant tumors. Nature Publishing Group UK 2020-09-07 /pmc/articles/PMC7476923/ /pubmed/32895373 http://dx.doi.org/10.1038/s41419-020-02934-8 Text en © The Author(s) 2020 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
She, Shiqi
Zhao, Yang
Kang, Bo
Chen, Cheng
Chen, Xinyu
Zhang, Xiaobing
Chen, Wenjie
Dan, Songsong
Wang, Hangxiang
Wang, Ying-Jie
Zhao, Jinhao
Combined inhibition of JAK1/2 and DNMT1 by newly identified small-molecule compounds synergistically suppresses the survival and proliferation of cervical cancer cells
title Combined inhibition of JAK1/2 and DNMT1 by newly identified small-molecule compounds synergistically suppresses the survival and proliferation of cervical cancer cells
title_full Combined inhibition of JAK1/2 and DNMT1 by newly identified small-molecule compounds synergistically suppresses the survival and proliferation of cervical cancer cells
title_fullStr Combined inhibition of JAK1/2 and DNMT1 by newly identified small-molecule compounds synergistically suppresses the survival and proliferation of cervical cancer cells
title_full_unstemmed Combined inhibition of JAK1/2 and DNMT1 by newly identified small-molecule compounds synergistically suppresses the survival and proliferation of cervical cancer cells
title_short Combined inhibition of JAK1/2 and DNMT1 by newly identified small-molecule compounds synergistically suppresses the survival and proliferation of cervical cancer cells
title_sort combined inhibition of jak1/2 and dnmt1 by newly identified small-molecule compounds synergistically suppresses the survival and proliferation of cervical cancer cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7476923/
https://www.ncbi.nlm.nih.gov/pubmed/32895373
http://dx.doi.org/10.1038/s41419-020-02934-8
work_keys_str_mv AT sheshiqi combinedinhibitionofjak12anddnmt1bynewlyidentifiedsmallmoleculecompoundssynergisticallysuppressesthesurvivalandproliferationofcervicalcancercells
AT zhaoyang combinedinhibitionofjak12anddnmt1bynewlyidentifiedsmallmoleculecompoundssynergisticallysuppressesthesurvivalandproliferationofcervicalcancercells
AT kangbo combinedinhibitionofjak12anddnmt1bynewlyidentifiedsmallmoleculecompoundssynergisticallysuppressesthesurvivalandproliferationofcervicalcancercells
AT chencheng combinedinhibitionofjak12anddnmt1bynewlyidentifiedsmallmoleculecompoundssynergisticallysuppressesthesurvivalandproliferationofcervicalcancercells
AT chenxinyu combinedinhibitionofjak12anddnmt1bynewlyidentifiedsmallmoleculecompoundssynergisticallysuppressesthesurvivalandproliferationofcervicalcancercells
AT zhangxiaobing combinedinhibitionofjak12anddnmt1bynewlyidentifiedsmallmoleculecompoundssynergisticallysuppressesthesurvivalandproliferationofcervicalcancercells
AT chenwenjie combinedinhibitionofjak12anddnmt1bynewlyidentifiedsmallmoleculecompoundssynergisticallysuppressesthesurvivalandproliferationofcervicalcancercells
AT dansongsong combinedinhibitionofjak12anddnmt1bynewlyidentifiedsmallmoleculecompoundssynergisticallysuppressesthesurvivalandproliferationofcervicalcancercells
AT wanghangxiang combinedinhibitionofjak12anddnmt1bynewlyidentifiedsmallmoleculecompoundssynergisticallysuppressesthesurvivalandproliferationofcervicalcancercells
AT wangyingjie combinedinhibitionofjak12anddnmt1bynewlyidentifiedsmallmoleculecompoundssynergisticallysuppressesthesurvivalandproliferationofcervicalcancercells
AT zhaojinhao combinedinhibitionofjak12anddnmt1bynewlyidentifiedsmallmoleculecompoundssynergisticallysuppressesthesurvivalandproliferationofcervicalcancercells