Cargando…

Gastric cancer cells escape metabolic stress via the DLC3/MACC1 axis

Metabolic stress usually occurs in rapidly growing gastric cancer (GC) when the energy demand exceeds the supply. Interestingly, cancer cells can somehow escape this stress. Some small Rho GTPases regulating cell migration can be activated by metabolic stress. DLC3 is a RhoA-specific GTPase-activati...

Descripción completa

Detalles Bibliográficos
Autores principales: Lin, Li, Liu, Yantan, Pan, Changqie, Zhang, Junhao, Zhao, Yang, Shao, Ruoyang, Huang, Zhenhua, Su, Yuqi, Shi, Min, Bin, Jianping, Liao, Yulin, Li, Nailin, Wang, Chunlin, Liao, Wangjun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6485279/
https://www.ncbi.nlm.nih.gov/pubmed/31037159
http://dx.doi.org/10.7150/thno.29538
_version_ 1783414249975971840
author Lin, Li
Liu, Yantan
Pan, Changqie
Zhang, Junhao
Zhao, Yang
Shao, Ruoyang
Huang, Zhenhua
Su, Yuqi
Shi, Min
Bin, Jianping
Liao, Yulin
Li, Nailin
Wang, Chunlin
Liao, Wangjun
author_facet Lin, Li
Liu, Yantan
Pan, Changqie
Zhang, Junhao
Zhao, Yang
Shao, Ruoyang
Huang, Zhenhua
Su, Yuqi
Shi, Min
Bin, Jianping
Liao, Yulin
Li, Nailin
Wang, Chunlin
Liao, Wangjun
author_sort Lin, Li
collection PubMed
description Metabolic stress usually occurs in rapidly growing gastric cancer (GC) when the energy demand exceeds the supply. Interestingly, cancer cells can somehow escape this stress. Some small Rho GTPases regulating cell migration can be activated by metabolic stress. DLC3 is a RhoA-specific GTPase-activating protein of unclear function in cancer. We hypothesized that it participated in metabolic stress escape. Methods: Metabolic stress in GC cells was induced by glucose deprivation, and DLC3 expression was detected. Based on the prognostic value, cell viability, motility and glycolysis were detected in DLC3 differently expressed GC cells in vitro and in vivo. DLC3 downstream targets were screened and verified. Chemotactic ability was evaluated to study DLC3 and its downstream signaling on metabolic stress escape. In addition, therapeutic strategies targeting DLC3 were explored. Results: DLC3 expression was lowered by metabolic stress in GC cells. DLC3 downregulation indicated poor cancer prognosis, and silencing DLC3 promoted GC cell proliferation and invasion. MACC1, an oncogene promoting GC growth and metastasis, was proved to be the downstream target of DLC3. Low DLC3 expression and high MACC1 expression indicated high recurrence rate after GC resection. DLC3 transcriptionally inhibited MACC1 expression via RhoA/JNK/AP-1 signaling, and subsequently suppressed GC cell glycolysis and survival under metabolic stress. The DLC3/MACC1 axis modulated the chemotaxis of GC cells from energy deficient area to glucose abundant area. Finally, lovastatin was found to be a promising therapeutic drug targeting the DLC3/MACC1 axis. Conclusions: The DLC3/MACC1 axis modulates GC glycolysis and chemotaxis to escape glucose deprivation. Lovastatin may inhibit GC by targeting the DLC3/MACC1 axis.
format Online
Article
Text
id pubmed-6485279
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Ivyspring International Publisher
record_format MEDLINE/PubMed
spelling pubmed-64852792019-04-29 Gastric cancer cells escape metabolic stress via the DLC3/MACC1 axis Lin, Li Liu, Yantan Pan, Changqie Zhang, Junhao Zhao, Yang Shao, Ruoyang Huang, Zhenhua Su, Yuqi Shi, Min Bin, Jianping Liao, Yulin Li, Nailin Wang, Chunlin Liao, Wangjun Theranostics Research Paper Metabolic stress usually occurs in rapidly growing gastric cancer (GC) when the energy demand exceeds the supply. Interestingly, cancer cells can somehow escape this stress. Some small Rho GTPases regulating cell migration can be activated by metabolic stress. DLC3 is a RhoA-specific GTPase-activating protein of unclear function in cancer. We hypothesized that it participated in metabolic stress escape. Methods: Metabolic stress in GC cells was induced by glucose deprivation, and DLC3 expression was detected. Based on the prognostic value, cell viability, motility and glycolysis were detected in DLC3 differently expressed GC cells in vitro and in vivo. DLC3 downstream targets were screened and verified. Chemotactic ability was evaluated to study DLC3 and its downstream signaling on metabolic stress escape. In addition, therapeutic strategies targeting DLC3 were explored. Results: DLC3 expression was lowered by metabolic stress in GC cells. DLC3 downregulation indicated poor cancer prognosis, and silencing DLC3 promoted GC cell proliferation and invasion. MACC1, an oncogene promoting GC growth and metastasis, was proved to be the downstream target of DLC3. Low DLC3 expression and high MACC1 expression indicated high recurrence rate after GC resection. DLC3 transcriptionally inhibited MACC1 expression via RhoA/JNK/AP-1 signaling, and subsequently suppressed GC cell glycolysis and survival under metabolic stress. The DLC3/MACC1 axis modulated the chemotaxis of GC cells from energy deficient area to glucose abundant area. Finally, lovastatin was found to be a promising therapeutic drug targeting the DLC3/MACC1 axis. Conclusions: The DLC3/MACC1 axis modulates GC glycolysis and chemotaxis to escape glucose deprivation. Lovastatin may inhibit GC by targeting the DLC3/MACC1 axis. Ivyspring International Publisher 2019-04-06 /pmc/articles/PMC6485279/ /pubmed/31037159 http://dx.doi.org/10.7150/thno.29538 Text en © Ivyspring International Publisher This is an open access article distributed under the terms of the Creative Commons Attribution (CC BY-NC) license (https://creativecommons.org/licenses/by-nc/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Lin, Li
Liu, Yantan
Pan, Changqie
Zhang, Junhao
Zhao, Yang
Shao, Ruoyang
Huang, Zhenhua
Su, Yuqi
Shi, Min
Bin, Jianping
Liao, Yulin
Li, Nailin
Wang, Chunlin
Liao, Wangjun
Gastric cancer cells escape metabolic stress via the DLC3/MACC1 axis
title Gastric cancer cells escape metabolic stress via the DLC3/MACC1 axis
title_full Gastric cancer cells escape metabolic stress via the DLC3/MACC1 axis
title_fullStr Gastric cancer cells escape metabolic stress via the DLC3/MACC1 axis
title_full_unstemmed Gastric cancer cells escape metabolic stress via the DLC3/MACC1 axis
title_short Gastric cancer cells escape metabolic stress via the DLC3/MACC1 axis
title_sort gastric cancer cells escape metabolic stress via the dlc3/macc1 axis
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6485279/
https://www.ncbi.nlm.nih.gov/pubmed/31037159
http://dx.doi.org/10.7150/thno.29538
work_keys_str_mv AT linli gastriccancercellsescapemetabolicstressviathedlc3macc1axis
AT liuyantan gastriccancercellsescapemetabolicstressviathedlc3macc1axis
AT panchangqie gastriccancercellsescapemetabolicstressviathedlc3macc1axis
AT zhangjunhao gastriccancercellsescapemetabolicstressviathedlc3macc1axis
AT zhaoyang gastriccancercellsescapemetabolicstressviathedlc3macc1axis
AT shaoruoyang gastriccancercellsescapemetabolicstressviathedlc3macc1axis
AT huangzhenhua gastriccancercellsescapemetabolicstressviathedlc3macc1axis
AT suyuqi gastriccancercellsescapemetabolicstressviathedlc3macc1axis
AT shimin gastriccancercellsescapemetabolicstressviathedlc3macc1axis
AT binjianping gastriccancercellsescapemetabolicstressviathedlc3macc1axis
AT liaoyulin gastriccancercellsescapemetabolicstressviathedlc3macc1axis
AT linailin gastriccancercellsescapemetabolicstressviathedlc3macc1axis
AT wangchunlin gastriccancercellsescapemetabolicstressviathedlc3macc1axis
AT liaowangjun gastriccancercellsescapemetabolicstressviathedlc3macc1axis