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Knockdown of Bcl-xL enhances growth-inhibiting and apoptosis-inducing effects of resveratrol and clofarabine in malignant mesothelioma H-2452 cells

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Abstract
Mcl-1 and Bcl-xL, key anti-apoptotic proteins of the Bcl-2 family, have attracted attention as important molecules in the cell survival and drug resistance. In this study, we investigated whether inhibition of Bcl-xL influences cell growth and apoptosis against simultaneous treatment of resveratrol and clofarabine in the human malignant mesothelioma H-2452 cells. Resveratrol and clofarabine decreased Mcl-1 protein levels but had little effect on Bcl-xL levels. In the presence of two compounds, any detectable change in the Mcl-1 mRNA levels was not observed in RT-PCR analysis, whereas pretreatment with the proteasome inhibitor MG132 led to its accumulation to levels far above basal levels. The knockdown of Bcl-xL inhibited cell proliferation with cell accumulation at G2/M phase and the appearance of sub-G0/G1 peak in DNA flow cytometric assay. The suppression of cell growth was accompanied by an increase in the caspase-3/7 activity with the resultant cleavages of procaspase-3 and its substrate poly (ADP-ribose) polymerase, and increased percentage of apoptotic propensities in annexin V binding assay. Collectively, our data represent that the efficacy of resveratrol and clofarabine for apoptosis induction was substantially enhanced by Bcl-xL-lowering strategy in which the simultaneous targeting of Mcl-1 and Bcl-xL could be a more effective strategy for treating malignant mesothelioma.
All Author(s)
Y. J. Lee ; I. S. Hwang ; C. H. Lee ; S. H. Kim ; H. S. Nam ; Y. J. Choi ; S. H. Lee
Intsitutional Author(s)
이용진이창호
Issued Date
2014
Type
Article
Keyword
Mesothelioma, MalignantMcl-1Bcl-xLResveratolClofarabineApoptosis
Publisher
대한의학회
Korean Academy of Medical Sciences
ISSN
1011-8934 ; 1598-6357
Citation Title
Journal of Korean Medical Science
Citation Volume
29
Citation Number
11
Citation Start Page
1464
Citation End Page
1472
Language(ISO)
eng
DOI
10.3346/jkms.2014.29.11.1464
URI
http://schca-ir.schmc.ac.kr/handle/2022.oak/3980
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