Journal Of Cellular Physiology 2008-04-01

Etoposide-resistant HT-29 human colon carcinoma cells during glucose deprivation are sensitive to piericidin A, a GRP78 down-regulator.

Ji-Hwan Hwang, Ju-Young Kim, Mi-Ran Cha, In-Ja Ryoo, Soo-Jin Choo, Sung-Min Cho, Yoshinori Tsukumo, Akihiro Tomida, Kazuo Shin-Ya, Yong-Il Hwang, Ick-Dong Yoo, Hae-Ryong Park

文献索引:J. Cell Physiol. 215(1) , 243-50, (2008)

全文:HTML全文

摘要

Glucose deprivation, a pathophysiological cell condition, causes up-regulation of GRP78 and induction of etoposide resistance in human cancer cells. The induction of drug resistance can be partly explained by the fact that GRP78 can block activation of caspase-7 induced by treatment with etoposide. Therefore, downregulating GRP78 expression may be a novel strategy anticancer drug development. Based on that premise, we established a screening program for anticancer agents that exhibit preferential cytotoxic activity for etoposide-resistant cancer cells under glucose-deprived conditions. We recently isolated an active compound, AR-054, from the culture broth of Streptomyces sp., which prevents stress-induced etoposide resistance in vitro. AR-054 was identified as piericidin A, a prototypical compound, by ESI-MS analysis and various NMR spectroscopic methods. Here, we showed that piericidin A suppressed the accumulation of GRP78 protein and was also highly toxic to etoposide-resistant HT-29 cells, with IC50 values for colony formation of 6.4 and 7.7 nM under 2-deoxyglucose supplemented and glucose-deprived conditions, respectively. Interestingly, piericidin A had no effect under normal growth conditions. Therefore, we suggest that piericidin A prevents up-regulation of GRP78, and exhibits cytotoxicity in glucose-deprived HT-29 cells that are resistant to etoposide.(c) 2007 Wiley-Liss, Inc.


相关化合物

  • 粉蝶霉素A

相关文献:

Isolation and characterizations of quinone analogue-resistant mutants of bo-type ubiquinol oxidase from Escherichia coli.

1998-09-15

[Biochemistry 37(37) , 12744-52, (1998)]

Genetic evidence for the existence of two quinone related inhibitor binding sites in NADH-CoQ reductase.

1997-03-28

[Biochim. Biophys. Acta 1319(1) , 1-4, (1997)]

Metabolomic identification of the target of the filopodia protrusion inhibitor glucopiericidin A.

2010-09-24

[Chem. Biol. 17(9) , 989-98, (2010)]

Elucidation of Piericidin A1 biosynthetic locus revealed a thioesterase-dependent mechanism of α-pyridone ring formation.

2012-02-24

[Chem. Biol. 19(2) , 243-53, (2012)]

Molecular characterization of benzimidazole resistance in Helicobacter pylori.

2004-07-01

[Antimicrob. Agents Chemother. 48(7) , 2524-30, (2004)]

更多文献...