Literature DB >> 16323058

Mitochondrial perturbation attenuates bile acid-induced cytotoxicity.

C M Payne1, C L Crowley-Weber, K Dvorak, C Bernstein, H Bernstein, H Holubec, C Crowley, H Garewal.   

Abstract

Hydrophobic bile acids such as deoxycholate (DOC) are known to damage liver cells during cholestasis and promote colon cancer. Cellular stresses induced by bile acids, which include mitochondrial and endoplasmic reticulum (ER) stresses, can result in apoptosis. We found that inhibition of mitochondrial complexes I-V with rotenone, thenoyltrifluoroacetone (TTFA), antimycin A, myxothiazol or oligomycin strongly protected against DOC-induced apoptosis of HCT-116 cells. To understand the mechanism of this protection, we explored the ability of these specific inhibitors to reduce DOC-induced mitochondrial and ER stresses. Different inhibitors markedly reduced DOC-induction of mitochondrial condensation, the DOC-induced decrease in mitochondrial membrane potential and the DOC-induced dilatation of the ER (evidence of ER stress). A dramatic induction of nucleolar segregation by antimycin A and myxothiazol, two distinct complex III inhibitors, was also observed. These findings strongly implicate mitochondrial crosstalk with apoptotic signaling pathways and mitochondrial-nucleolar crosstalk in the development of apoptosis resistance in the colon.

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Year:  2005        PMID: 16323058     DOI: 10.1007/s10565-005-0166-6

Source DB:  PubMed          Journal:  Cell Biol Toxicol        ISSN: 0742-2091            Impact factor:   6.691


  13 in total

1.  Bile acid and inflammation activate gastric cardia stem cells in a mouse model of Barrett-like metaplasia.

Authors:  Michael Quante; Govind Bhagat; Julian A Abrams; Frederic Marache; Pamela Good; Michele D Lee; Yoomi Lee; Richard Friedman; Samuel Asfaha; Zinaida Dubeykovskaya; Umar Mahmood; Jose-Luiz Figueiredo; Jan Kitajewski; Carrie Shawber; Charles J Lightdale; Anil K Rustgi; Timothy C Wang
Journal:  Cancer Cell       Date:  2012-01-17       Impact factor: 31.743

Review 2.  Barrett esophagus: an update.

Authors:  Rami J Badreddine; Kenneth K Wang
Journal:  Nat Rev Gastroenterol Hepatol       Date:  2010-06-01       Impact factor: 46.802

3.  Bile acids in combination with low pH induce oxidative stress and oxidative DNA damage: relevance to the pathogenesis of Barrett's oesophagus.

Authors:  Katerina Dvorak; Claire M Payne; Melissa Chavarria; Lois Ramsey; Barbora Dvorakova; Harris Bernstein; Hana Holubec; Richard E Sampliner; Naihsuan Guy; Amanda Condon; Carol Bernstein; Sylvan B Green; Anil Prasad; Harinder S Garewal
Journal:  Gut       Date:  2006-12-04       Impact factor: 23.059

4.  Cancer and age related colonic crypt deficiencies in cytochrome c oxidase I.

Authors:  Carol Bernstein; Alexander Facista; Huy Nguyen; Beryl Zaitlin; Nadia Hassounah; Cristy Loustaunau; Claire Margaret Payne; Bhaskar Banerjee; Steve Goldschmid; V Liana Tsikitis; Robert Krouse; Harris Bernstein
Journal:  World J Gastrointest Oncol       Date:  2010-12-15

5.  Characterization of enantiomeric bile acid-induced apoptosis in colon cancer cell lines.

Authors:  Bryson W Katona; Shrikant Anant; Douglas F Covey; William F Stenson
Journal:  J Biol Chem       Date:  2008-12-03       Impact factor: 5.157

6.  Deoxycholate, an endogenous cytotoxin/genotoxin, induces the autophagic stress-survival pathway: implications for colon carcinogenesis.

Authors:  Claire M Payne; Cheray Crowley-Skillicorn; Hana Holubec; Katerina Dvorak; Carol Bernstein; Mary Pat Moyer; Harinder Garewal; Harris Bernstein
Journal:  J Toxicol       Date:  2009-05-10

7.  Bile acids inhibit Na⁺/H⁺ exchanger and Cl⁻/HCO₃⁻ exchanger activities via cellular energy breakdown and Ca²⁺ overload in human colonic crypts.

Authors:  É Pallagi-Kunstár; K Farkas; J Maléth; Z Rakonczay; F Nagy; T Molnár; Z Szepes; V Venglovecz; J Lonovics; Z Rázga; T Wittmann; P Hegyi
Journal:  Pflugers Arch       Date:  2015-07-13       Impact factor: 3.657

8.  Hydrophobic bile acids, genomic instability, Darwinian selection, and colon carcinogenesis.

Authors:  Claire M Payne; Carol Bernstein; Katerina Dvorak; Harris Bernstein
Journal:  Clin Exp Gastroenterol       Date:  2008-12-16

9.  The Na+/H+ exchanger controls deoxycholic acid-induced apoptosis by a H+-activated, Na+-dependent ionic shift in esophageal cells.

Authors:  Aaron Goldman; HwuDauRw Chen; Mohammad R Khan; Heather Roesly; Kimberly A Hill; Mohammad Shahidullah; Amritlal Mandal; Nicholas A Delamere; Katerina Dvorak
Journal:  PLoS One       Date:  2011-08-22       Impact factor: 3.240

10.  Maspin is a deoxycholate-inducible, anti-apoptotic stress-response protein differentially expressed during colon carcinogenesis.

Authors:  Claire M Payne; Hana Holubec; Cheray Crowley-Skillicorn; Huy Nguyen; Harris Bernstein; George Wilcox; Carol Bernstein
Journal:  Clin Exp Gastroenterol       Date:  2011-10-03
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