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Temozolomide-resistant Glioblastoma Depends on HDAC6 Activity Through Regulation of DNA Mismatch Repair

Authors
Kim Go WoonLee Dong HoonYeon Soo-KeunJeon Yu Hyun유정Lee Sang WooKwon So Hee
Issue Date
Dec-2019
Publisher
International Institute of Anticancer Research
Citation
Anticancer Research, v.39, no.12, pp 6731 - 6741
Pages
11
Journal Title
Anticancer Research
Volume
39
Number
12
Start Page
6731
End Page
6741
URI
https://yscholarhub.yonsei.ac.kr/handle/2021.sw.yonsei/23316
DOI
10.21873/anticanres.13888
ISSN
0250-7005
1791-7530
Abstract
Background/Aim: Histone deacetylase 6 (HDAC6) is considered as one of the most promising targets in drug development for cancer therapy. Drug resistance is a major cause of treatment failure in many cancers including glioblastoma (GBM), the most lethal malignant tumor. The role of HDAC6 in GBM resistance and its underlying mechanisms have not been well elucidated. Herein, we investigated the function of HDAC6 in modulating GBM resistance. Materials and Methods: The anticancer effects of four structurally distinct selective HDAC6 inhibitors were addressed using western blot, flow cytometry, CCK-8 assay, and CI in temozolomide (TMZ)-resistant GBM cells. Results: We showed that HDAC6-selecitve inhibitors block activation of the EGFR and p53 pathways in TMZ-resistant GBM cells. Importantly, the inhibition of HDAC6 correlates with increased levels of MSH2 and MSH6, key DNA mismatch repair proteins, in TMZ-resistant GBM cells. In addition to the MSH, HDAC6 inhibitors decrease MGMT expression in TMZ-resistant GBM cells. Furthermore, HDAC6 inhibitors increase TMZ sensitivity and efficiently induce apoptosis in TMZ-resistant GBM cells. Conclusion: Selective inhibition of HDAC6 may be a promising strategy for the treatment of TMZ-resistant GBM.
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