Small Molecule APY606 Displays Extensive Antitumor Activity in Pancreatic Cancer via Impairing Ras-MAPK Signaling.

Pancreatic cancer has been found with abnormal expression or mutation in Ras proteins. Oncogenic Ras activation exploits their extensive signaling reach to affect multiple cellular processes, in which the mitogen-activated protein kinase (MAPK) signaling exerts important roles in tumorigenesis. Ther...

Full description

Bibliographic Details
Main Authors: Na Guo, Zuojia Liu, Wenjing Zhao, Erkang Wang, Jin Wang
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2016-01-01
Series:PLoS ONE
Online Access:https://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0155874&type=printable
_version_ 1826584046850801664
author Na Guo
Zuojia Liu
Wenjing Zhao
Erkang Wang
Jin Wang
author_facet Na Guo
Zuojia Liu
Wenjing Zhao
Erkang Wang
Jin Wang
author_sort Na Guo
collection DOAJ
description Pancreatic cancer has been found with abnormal expression or mutation in Ras proteins. Oncogenic Ras activation exploits their extensive signaling reach to affect multiple cellular processes, in which the mitogen-activated protein kinase (MAPK) signaling exerts important roles in tumorigenesis. Therapies targeted Ras are thus of major benefit for pancreatic cancer. Although small molecule APY606 has been successfully picked out by virtual drug screening based on Ras target receptor, its in-depth mechanism remains to be elucidated. We herein assessed the antitumor activity of APY606 against human pancreatic cancer Capan-1 and SW1990 cell lines and explored the effect of Ras-MAPK and apoptosis-related signaling pathway on the activity of APY606. APY606 treatment resulted in a dose- and time-dependent inhibition of cancer cell viability. Additionally, APY606 exhibited strong antitumor activity, as evidenced not only by reduction in tumor cell invasion, migration and mitochondrial membrane potential but also by alteration in several apoptotic indexes. Furthermore, APY606 treatment directly inhibited Ras-GTP and the downstream activation of MAPK, which resulted in the down-regulation of anti-apoptotic protein Bcl-2, leading to the up-regulation of mitochondrial apoptosis pathway-related proteins (Bax, cytosolic Cytochrome c and Caspase 3) and of cyclin-dependent kinase 2 and Cyclin A, E. These data suggest that impairing Ras-MAPK signaling is a novel mechanism of action for APY606 during therapeutic intervention in pancreatic cancer.
first_indexed 2024-12-14T13:17:25Z
format Article
id doaj.art-50fbb3d6b2ec427c8530473fcf76be88
institution Directory Open Access Journal
issn 1932-6203
language English
last_indexed 2025-03-14T15:31:32Z
publishDate 2016-01-01
publisher Public Library of Science (PLoS)
record_format Article
series PLoS ONE
spelling doaj.art-50fbb3d6b2ec427c8530473fcf76be882025-02-25T05:35:56ZengPublic Library of Science (PLoS)PLoS ONE1932-62032016-01-01115e015587410.1371/journal.pone.0155874Small Molecule APY606 Displays Extensive Antitumor Activity in Pancreatic Cancer via Impairing Ras-MAPK Signaling.Na GuoZuojia LiuWenjing ZhaoErkang WangJin WangPancreatic cancer has been found with abnormal expression or mutation in Ras proteins. Oncogenic Ras activation exploits their extensive signaling reach to affect multiple cellular processes, in which the mitogen-activated protein kinase (MAPK) signaling exerts important roles in tumorigenesis. Therapies targeted Ras are thus of major benefit for pancreatic cancer. Although small molecule APY606 has been successfully picked out by virtual drug screening based on Ras target receptor, its in-depth mechanism remains to be elucidated. We herein assessed the antitumor activity of APY606 against human pancreatic cancer Capan-1 and SW1990 cell lines and explored the effect of Ras-MAPK and apoptosis-related signaling pathway on the activity of APY606. APY606 treatment resulted in a dose- and time-dependent inhibition of cancer cell viability. Additionally, APY606 exhibited strong antitumor activity, as evidenced not only by reduction in tumor cell invasion, migration and mitochondrial membrane potential but also by alteration in several apoptotic indexes. Furthermore, APY606 treatment directly inhibited Ras-GTP and the downstream activation of MAPK, which resulted in the down-regulation of anti-apoptotic protein Bcl-2, leading to the up-regulation of mitochondrial apoptosis pathway-related proteins (Bax, cytosolic Cytochrome c and Caspase 3) and of cyclin-dependent kinase 2 and Cyclin A, E. These data suggest that impairing Ras-MAPK signaling is a novel mechanism of action for APY606 during therapeutic intervention in pancreatic cancer.https://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0155874&type=printable
spellingShingle Na Guo
Zuojia Liu
Wenjing Zhao
Erkang Wang
Jin Wang
Small Molecule APY606 Displays Extensive Antitumor Activity in Pancreatic Cancer via Impairing Ras-MAPK Signaling.
PLoS ONE
title Small Molecule APY606 Displays Extensive Antitumor Activity in Pancreatic Cancer via Impairing Ras-MAPK Signaling.
title_full Small Molecule APY606 Displays Extensive Antitumor Activity in Pancreatic Cancer via Impairing Ras-MAPK Signaling.
title_fullStr Small Molecule APY606 Displays Extensive Antitumor Activity in Pancreatic Cancer via Impairing Ras-MAPK Signaling.
title_full_unstemmed Small Molecule APY606 Displays Extensive Antitumor Activity in Pancreatic Cancer via Impairing Ras-MAPK Signaling.
title_short Small Molecule APY606 Displays Extensive Antitumor Activity in Pancreatic Cancer via Impairing Ras-MAPK Signaling.
title_sort small molecule apy606 displays extensive antitumor activity in pancreatic cancer via impairing ras mapk signaling
url https://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0155874&type=printable
work_keys_str_mv AT naguo smallmoleculeapy606displaysextensiveantitumoractivityinpancreaticcancerviaimpairingrasmapksignaling
AT zuojialiu smallmoleculeapy606displaysextensiveantitumoractivityinpancreaticcancerviaimpairingrasmapksignaling
AT wenjingzhao smallmoleculeapy606displaysextensiveantitumoractivityinpancreaticcancerviaimpairingrasmapksignaling
AT erkangwang smallmoleculeapy606displaysextensiveantitumoractivityinpancreaticcancerviaimpairingrasmapksignaling
AT jinwang smallmoleculeapy606displaysextensiveantitumoractivityinpancreaticcancerviaimpairingrasmapksignaling