SHORT-CHAIN FATTY ACIDS INDUCED AUTOPHAGY SERVES AS AN ADAPTIVE STRATEGY FOR RETARDING MITOCHONDRIA-MEDIATED APOPTOTIC CELL DEATH

Short-chain fatty acids are the major by-products of bacterial fermentation of undigested dietary fibers in human large intestine. SCFAs, mostly propionate and butyrate, inhibit proliferation and induce apoptosis in colon cancer cells, but clinical trials had mixed results regarding the anti-tumor a...

Full description

Bibliographic Details
Main Author: Tang, Yong
Format: Others
Published: OpenSIUC 2010
Subjects:
Online Access:https://opensiuc.lib.siu.edu/dissertations/159
https://opensiuc.lib.siu.edu/cgi/viewcontent.cgi?article=1159&context=dissertations
id ndltd-siu.edu-oai-opensiuc.lib.siu.edu-dissertations-1159
record_format oai_dc
spelling ndltd-siu.edu-oai-opensiuc.lib.siu.edu-dissertations-11592018-12-20T04:30:14Z SHORT-CHAIN FATTY ACIDS INDUCED AUTOPHAGY SERVES AS AN ADAPTIVE STRATEGY FOR RETARDING MITOCHONDRIA-MEDIATED APOPTOTIC CELL DEATH Tang, Yong Short-chain fatty acids are the major by-products of bacterial fermentation of undigested dietary fibers in human large intestine. SCFAs, mostly propionate and butyrate, inhibit proliferation and induce apoptosis in colon cancer cells, but clinical trials had mixed results regarding the anti-tumor activities of SCFAs. Herein we demonstrate that propionate and butyrate induced autophagy in human colon cancer cells to dampen apoptosis whereas inhibition of autophagy potentiated SCFA induced apoptosis. Colon cancer cells, after propionate treatment, exhibited extensive characteristics of autophagic proteolysis: increased LC3-I to LC3-II conversion, acidic vesicular organelle development and reduced p62/SQSTM1 expression. Propionate-induced autophagy was associated with decreased mTOR activity and enhanced AMP kinase activity. The elevated AMPKα phosphorylation was associated with cellular ATP depletion and overproduction of reactive oxygen species due to mitochondrial dysfunction involving the induction of MPT and loss of Δψ. In this context, mitochondria biogenesis was initiated to recover cellular energy homeostasis. Importantly, when autophagy was prevented either pharmacologically ii (3-MA or chloroquine) or genetically (knockdown of ATG5 or ATG7), the colon cancer cells became sensitized toward propionate induced apoptosis through activation of caspase 7 and its downstream effector caspase-3. The observations indicate that propionatetriggered autophagy serves as an adaptive strategy for retarding mitochondria-mediated apoptotic cell death, whereas application of an autophagy inhibitor (Chloroquine) is expected to enhance the therapeutic efficacy of SCFAs in inducing colon tumor cell apoptosis. 2010-12-01T08:00:00Z text application/pdf https://opensiuc.lib.siu.edu/dissertations/159 https://opensiuc.lib.siu.edu/cgi/viewcontent.cgi?article=1159&context=dissertations Dissertations OpenSIUC APOPTOSIS AUTOPHAGY CANCER MITOCHONDRIA SHORT-CHAIN FATTY ACIDS
collection NDLTD
format Others
sources NDLTD
topic APOPTOSIS
AUTOPHAGY
CANCER
MITOCHONDRIA
SHORT-CHAIN FATTY ACIDS
spellingShingle APOPTOSIS
AUTOPHAGY
CANCER
MITOCHONDRIA
SHORT-CHAIN FATTY ACIDS
Tang, Yong
SHORT-CHAIN FATTY ACIDS INDUCED AUTOPHAGY SERVES AS AN ADAPTIVE STRATEGY FOR RETARDING MITOCHONDRIA-MEDIATED APOPTOTIC CELL DEATH
description Short-chain fatty acids are the major by-products of bacterial fermentation of undigested dietary fibers in human large intestine. SCFAs, mostly propionate and butyrate, inhibit proliferation and induce apoptosis in colon cancer cells, but clinical trials had mixed results regarding the anti-tumor activities of SCFAs. Herein we demonstrate that propionate and butyrate induced autophagy in human colon cancer cells to dampen apoptosis whereas inhibition of autophagy potentiated SCFA induced apoptosis. Colon cancer cells, after propionate treatment, exhibited extensive characteristics of autophagic proteolysis: increased LC3-I to LC3-II conversion, acidic vesicular organelle development and reduced p62/SQSTM1 expression. Propionate-induced autophagy was associated with decreased mTOR activity and enhanced AMP kinase activity. The elevated AMPKα phosphorylation was associated with cellular ATP depletion and overproduction of reactive oxygen species due to mitochondrial dysfunction involving the induction of MPT and loss of Δψ. In this context, mitochondria biogenesis was initiated to recover cellular energy homeostasis. Importantly, when autophagy was prevented either pharmacologically ii (3-MA or chloroquine) or genetically (knockdown of ATG5 or ATG7), the colon cancer cells became sensitized toward propionate induced apoptosis through activation of caspase 7 and its downstream effector caspase-3. The observations indicate that propionatetriggered autophagy serves as an adaptive strategy for retarding mitochondria-mediated apoptotic cell death, whereas application of an autophagy inhibitor (Chloroquine) is expected to enhance the therapeutic efficacy of SCFAs in inducing colon tumor cell apoptosis.
author Tang, Yong
author_facet Tang, Yong
author_sort Tang, Yong
title SHORT-CHAIN FATTY ACIDS INDUCED AUTOPHAGY SERVES AS AN ADAPTIVE STRATEGY FOR RETARDING MITOCHONDRIA-MEDIATED APOPTOTIC CELL DEATH
title_short SHORT-CHAIN FATTY ACIDS INDUCED AUTOPHAGY SERVES AS AN ADAPTIVE STRATEGY FOR RETARDING MITOCHONDRIA-MEDIATED APOPTOTIC CELL DEATH
title_full SHORT-CHAIN FATTY ACIDS INDUCED AUTOPHAGY SERVES AS AN ADAPTIVE STRATEGY FOR RETARDING MITOCHONDRIA-MEDIATED APOPTOTIC CELL DEATH
title_fullStr SHORT-CHAIN FATTY ACIDS INDUCED AUTOPHAGY SERVES AS AN ADAPTIVE STRATEGY FOR RETARDING MITOCHONDRIA-MEDIATED APOPTOTIC CELL DEATH
title_full_unstemmed SHORT-CHAIN FATTY ACIDS INDUCED AUTOPHAGY SERVES AS AN ADAPTIVE STRATEGY FOR RETARDING MITOCHONDRIA-MEDIATED APOPTOTIC CELL DEATH
title_sort short-chain fatty acids induced autophagy serves as an adaptive strategy for retarding mitochondria-mediated apoptotic cell death
publisher OpenSIUC
publishDate 2010
url https://opensiuc.lib.siu.edu/dissertations/159
https://opensiuc.lib.siu.edu/cgi/viewcontent.cgi?article=1159&context=dissertations
work_keys_str_mv AT tangyong shortchainfattyacidsinducedautophagyservesasanadaptivestrategyforretardingmitochondriamediatedapoptoticcelldeath
_version_ 1718802200622268416