Cargando…

Lanosterol synthase loss of function decreases the malignant phenotypes of HepG2 cells by deactivating the Src/MAPK signaling pathway

Cholesterol is critical for tumor cells to maintain their membrane components, cell morphology and activity functions. The inhibition of the cholesterol pathway may be an efficient strategy with which to limit tumor growth and the metastatic process. In the present study, lanosterol synthase (LSS) w...

Descripción completa

Detalles Bibliográficos
Autores principales: Sun, Xiaomei, Zhang, Jun, Liu, Hui, Li, Mingcong, Liu, Li, Yang, Zhen, Hu, Weikang, Bai, Hongmei, Xu, Jiansheng, Xing, Jun, Xu, Zhijun, Mo, Aizhu, Guo, Ziyi, Bai, Yajie, Zhou, Qing, Wang, Yuan, Zhang, Shengquan, Zhang, Sumei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: D.A. Spandidos 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10236266/
https://www.ncbi.nlm.nih.gov/pubmed/37274468
http://dx.doi.org/10.3892/ol.2023.13881
_version_ 1785052881262477312
author Sun, Xiaomei
Zhang, Jun
Liu, Hui
Li, Mingcong
Liu, Li
Yang, Zhen
Hu, Weikang
Bai, Hongmei
Xu, Jiansheng
Xing, Jun
Xu, Zhijun
Mo, Aizhu
Guo, Ziyi
Bai, Yajie
Zhou, Qing
Wang, Yuan
Zhang, Shengquan
Zhang, Sumei
author_facet Sun, Xiaomei
Zhang, Jun
Liu, Hui
Li, Mingcong
Liu, Li
Yang, Zhen
Hu, Weikang
Bai, Hongmei
Xu, Jiansheng
Xing, Jun
Xu, Zhijun
Mo, Aizhu
Guo, Ziyi
Bai, Yajie
Zhou, Qing
Wang, Yuan
Zhang, Shengquan
Zhang, Sumei
author_sort Sun, Xiaomei
collection PubMed
description Cholesterol is critical for tumor cells to maintain their membrane components, cell morphology and activity functions. The inhibition of the cholesterol pathway may be an efficient strategy with which to limit tumor growth and the metastatic process. In the present study, lanosterol synthase (LSS) was knocked down by transfecting LSS short hairpin RNA into HepG2 cells, and cell growth, apoptosis and migratory potential were then detected by Cell Counting Kit-8 cell proliferation assay, flow cytometric analysis and wound healing assay, respectively. In addition, proteins associated with the regulation of the aforementioned cell biological behaviors were analyzed by western blot analysis. The activity of the Src/MAPK signaling pathway was measured by western blotting to elucidate the possible signal transduction mechanisms. LSS knockdown in the HepG2 liver cancer cell line inhibited cell proliferation, with cell cycle arrest at the S phase; it also decreased cell migratory ability and increased apoptosis. The expression proteins involved in the regulation of cell cycle, cell apoptosis and migration was altered by LSS knockdown in HepG2 cells. Furthermore, a decreased Src/MAPK activity was observed in the HepG2 cells subjected to LSS knockdown. LSS loss of function decreased the malignant phenotypes of HepG2 cells by deactivating the Src/MAPK signaling pathway and regulating expression of genes involved in cell cycle regulation, cell apoptosis and migration.
format Online
Article
Text
id pubmed-10236266
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher D.A. Spandidos
record_format MEDLINE/PubMed
spelling pubmed-102362662023-06-03 Lanosterol synthase loss of function decreases the malignant phenotypes of HepG2 cells by deactivating the Src/MAPK signaling pathway Sun, Xiaomei Zhang, Jun Liu, Hui Li, Mingcong Liu, Li Yang, Zhen Hu, Weikang Bai, Hongmei Xu, Jiansheng Xing, Jun Xu, Zhijun Mo, Aizhu Guo, Ziyi Bai, Yajie Zhou, Qing Wang, Yuan Zhang, Shengquan Zhang, Sumei Oncol Lett Articles Cholesterol is critical for tumor cells to maintain their membrane components, cell morphology and activity functions. The inhibition of the cholesterol pathway may be an efficient strategy with which to limit tumor growth and the metastatic process. In the present study, lanosterol synthase (LSS) was knocked down by transfecting LSS short hairpin RNA into HepG2 cells, and cell growth, apoptosis and migratory potential were then detected by Cell Counting Kit-8 cell proliferation assay, flow cytometric analysis and wound healing assay, respectively. In addition, proteins associated with the regulation of the aforementioned cell biological behaviors were analyzed by western blot analysis. The activity of the Src/MAPK signaling pathway was measured by western blotting to elucidate the possible signal transduction mechanisms. LSS knockdown in the HepG2 liver cancer cell line inhibited cell proliferation, with cell cycle arrest at the S phase; it also decreased cell migratory ability and increased apoptosis. The expression proteins involved in the regulation of cell cycle, cell apoptosis and migration was altered by LSS knockdown in HepG2 cells. Furthermore, a decreased Src/MAPK activity was observed in the HepG2 cells subjected to LSS knockdown. LSS loss of function decreased the malignant phenotypes of HepG2 cells by deactivating the Src/MAPK signaling pathway and regulating expression of genes involved in cell cycle regulation, cell apoptosis and migration. D.A. Spandidos 2023-05-23 /pmc/articles/PMC10236266/ /pubmed/37274468 http://dx.doi.org/10.3892/ol.2023.13881 Text en Copyright: © Sun et al. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.
spellingShingle Articles
Sun, Xiaomei
Zhang, Jun
Liu, Hui
Li, Mingcong
Liu, Li
Yang, Zhen
Hu, Weikang
Bai, Hongmei
Xu, Jiansheng
Xing, Jun
Xu, Zhijun
Mo, Aizhu
Guo, Ziyi
Bai, Yajie
Zhou, Qing
Wang, Yuan
Zhang, Shengquan
Zhang, Sumei
Lanosterol synthase loss of function decreases the malignant phenotypes of HepG2 cells by deactivating the Src/MAPK signaling pathway
title Lanosterol synthase loss of function decreases the malignant phenotypes of HepG2 cells by deactivating the Src/MAPK signaling pathway
title_full Lanosterol synthase loss of function decreases the malignant phenotypes of HepG2 cells by deactivating the Src/MAPK signaling pathway
title_fullStr Lanosterol synthase loss of function decreases the malignant phenotypes of HepG2 cells by deactivating the Src/MAPK signaling pathway
title_full_unstemmed Lanosterol synthase loss of function decreases the malignant phenotypes of HepG2 cells by deactivating the Src/MAPK signaling pathway
title_short Lanosterol synthase loss of function decreases the malignant phenotypes of HepG2 cells by deactivating the Src/MAPK signaling pathway
title_sort lanosterol synthase loss of function decreases the malignant phenotypes of hepg2 cells by deactivating the src/mapk signaling pathway
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10236266/
https://www.ncbi.nlm.nih.gov/pubmed/37274468
http://dx.doi.org/10.3892/ol.2023.13881
work_keys_str_mv AT sunxiaomei lanosterolsynthaselossoffunctiondecreasesthemalignantphenotypesofhepg2cellsbydeactivatingthesrcmapksignalingpathway
AT zhangjun lanosterolsynthaselossoffunctiondecreasesthemalignantphenotypesofhepg2cellsbydeactivatingthesrcmapksignalingpathway
AT liuhui lanosterolsynthaselossoffunctiondecreasesthemalignantphenotypesofhepg2cellsbydeactivatingthesrcmapksignalingpathway
AT limingcong lanosterolsynthaselossoffunctiondecreasesthemalignantphenotypesofhepg2cellsbydeactivatingthesrcmapksignalingpathway
AT liuli lanosterolsynthaselossoffunctiondecreasesthemalignantphenotypesofhepg2cellsbydeactivatingthesrcmapksignalingpathway
AT yangzhen lanosterolsynthaselossoffunctiondecreasesthemalignantphenotypesofhepg2cellsbydeactivatingthesrcmapksignalingpathway
AT huweikang lanosterolsynthaselossoffunctiondecreasesthemalignantphenotypesofhepg2cellsbydeactivatingthesrcmapksignalingpathway
AT baihongmei lanosterolsynthaselossoffunctiondecreasesthemalignantphenotypesofhepg2cellsbydeactivatingthesrcmapksignalingpathway
AT xujiansheng lanosterolsynthaselossoffunctiondecreasesthemalignantphenotypesofhepg2cellsbydeactivatingthesrcmapksignalingpathway
AT xingjun lanosterolsynthaselossoffunctiondecreasesthemalignantphenotypesofhepg2cellsbydeactivatingthesrcmapksignalingpathway
AT xuzhijun lanosterolsynthaselossoffunctiondecreasesthemalignantphenotypesofhepg2cellsbydeactivatingthesrcmapksignalingpathway
AT moaizhu lanosterolsynthaselossoffunctiondecreasesthemalignantphenotypesofhepg2cellsbydeactivatingthesrcmapksignalingpathway
AT guoziyi lanosterolsynthaselossoffunctiondecreasesthemalignantphenotypesofhepg2cellsbydeactivatingthesrcmapksignalingpathway
AT baiyajie lanosterolsynthaselossoffunctiondecreasesthemalignantphenotypesofhepg2cellsbydeactivatingthesrcmapksignalingpathway
AT zhouqing lanosterolsynthaselossoffunctiondecreasesthemalignantphenotypesofhepg2cellsbydeactivatingthesrcmapksignalingpathway
AT wangyuan lanosterolsynthaselossoffunctiondecreasesthemalignantphenotypesofhepg2cellsbydeactivatingthesrcmapksignalingpathway
AT zhangshengquan lanosterolsynthaselossoffunctiondecreasesthemalignantphenotypesofhepg2cellsbydeactivatingthesrcmapksignalingpathway
AT zhangsumei lanosterolsynthaselossoffunctiondecreasesthemalignantphenotypesofhepg2cellsbydeactivatingthesrcmapksignalingpathway