Javascript must be enabled to continue!
Epibrassinolide activates AKT to trigger autophagy with polyamine metabolism in SW480 and DLD-1 colon cancer cell lines
View through CrossRef
Epibrassinolide (EBR), a plant-derived polyhydroxylated derivative of 5α-cholestane, structurally shows similarities to animal steroid hormones. According to the present study, EBR treatment triggered a significant stress response via activating ER stress, autophagy, and apoptosis in cancer cells. EBR could also increase Akt phosphorylation in vitro. While the activation of Akt resulted in cellular metabolic activation in normal cells to proceed with cell survival, a rapid stress response was induced in cancer cells to reduce survival. Therefore, Akt as a mediator of cellular survival and death decision pathways is a crucial target in cancer cells. In this study, we determined that EBR induces stress responses through activating Akt, which reduced the mTOR complex I (mTORC1) activation in SW480 and DLD-1 colon cancer cells. As a consequence, EBR triggered macroautophagy and led to lipidation of LC3 most efficiently in SW480 cells. The cotreatment of spermidine (Spd) with EBR increased lipidation of LC3 synergistically in both cell lines. We also found that EBR promoted polyamine catabolism in SW480 cells. The retention of polyamine biosynthesis was remarkable following EBR treatment. We suggested that EBR-mediated Akt activation might determine the downstream cellular stress responses to induce autophagy related to polyamines.
The Scientific and Technological Research Council of Turkey (TUBITAK-ULAKBIM) - DIGITAL COMMONS JOURNALS
Title: Epibrassinolide activates AKT to trigger autophagy with polyamine metabolism in SW480 and DLD-1 colon cancer cell lines
Description:
Epibrassinolide (EBR), a plant-derived polyhydroxylated derivative of 5α-cholestane, structurally shows similarities to animal steroid hormones.
According to the present study, EBR treatment triggered a significant stress response via activating ER stress, autophagy, and apoptosis in cancer cells.
EBR could also increase Akt phosphorylation in vitro.
While the activation of Akt resulted in cellular metabolic activation in normal cells to proceed with cell survival, a rapid stress response was induced in cancer cells to reduce survival.
Therefore, Akt as a mediator of cellular survival and death decision pathways is a crucial target in cancer cells.
In this study, we determined that EBR induces stress responses through activating Akt, which reduced the mTOR complex I (mTORC1) activation in SW480 and DLD-1 colon cancer cells.
As a consequence, EBR triggered macroautophagy and led to lipidation of LC3 most efficiently in SW480 cells.
The cotreatment of spermidine (Spd) with EBR increased lipidation of LC3 synergistically in both cell lines.
We also found that EBR promoted polyamine catabolism in SW480 cells.
The retention of polyamine biosynthesis was remarkable following EBR treatment.
We suggested that EBR-mediated Akt activation might determine the downstream cellular stress responses to induce autophagy related to polyamines.
Related Results
MUC13 Enhances Colorectal Cancer Metastasis
MUC13 Enhances Colorectal Cancer Metastasis
Colorectal cancer (CRC) is one of the most prevalent cancer worldwide with a 5% lifetime incidence in developed countries. It is third most common cause of cancer related death in ...
Polyamine Drug Discovery: Synthetic Approaches to Therapeutic Modulators of Polyamine Metabolism
Polyamine Drug Discovery: Synthetic Approaches to Therapeutic Modulators of Polyamine Metabolism
Numerous synthetic compounds have been described that either act as inhibitors of enzymes involved in polyamine metabolism or otherwise modulate these pathways. Development of agen...
Complex Collision Tumors: A Systematic Review
Complex Collision Tumors: A Systematic Review
Abstract
Introduction: A collision tumor consists of two distinct neoplastic components located within the same organ, separated by stromal tissue, without histological intermixing...
Abstract 1590: Robust evolutionary conservation and pair-wise co-mapping of polygenic colon and lung cancer susceptibility loci
Abstract 1590: Robust evolutionary conservation and pair-wise co-mapping of polygenic colon and lung cancer susceptibility loci
Abstract
Comparing chromosomal locations of statistically significant colon and lung cancer susceptibility loci detected by linkage in mouse and rat and by GWAS i...
Polyamine Drug Discovery
Polyamine Drug Discovery
Polyamines are ubiquitous molecules that are involved in a number of important cellular processes. Aberrations in their function or metabolism play a role in diseases such as cance...
Abstract 1430: CaMKK2 regulates EGF-dependent activation of oncogenic Akt in ovarian cancer cells
Abstract 1430: CaMKK2 regulates EGF-dependent activation of oncogenic Akt in ovarian cancer cells
Abstract
Background-The canonical PI3K/Akt pathway is hyperactive in a variety of cancers including ovarian cancer (OVCa). Using baculovirus-expressed, FPLC-purified...
Mortality and morbidity outcomes in patients with inflammatory bowel disease with colon cancer: A nationwide analysis.
Mortality and morbidity outcomes in patients with inflammatory bowel disease with colon cancer: A nationwide analysis.
e15669
Background:
Inflammatory bowel disease (IBD), encompassing Crohn’s disease and ulcerative colitis, is a chronic condition chara...
sFLT-1 inhibits proliferation, migration, and invasion of colorectal cancer SW480 cells through vascular mimicry formation suppression
sFLT-1 inhibits proliferation, migration, and invasion of colorectal cancer SW480 cells through vascular mimicry formation suppression
To investigate the effects of soluble fms-like tyrosine kinase-1 on the vascular mimicry formation, proliferation, migration, and invasion of colorectal cancer SW480 cells. The rec...

