Se-methylselenocysteine sensitized TRAIL-mediated
apoptosis via down-regulation of Bcl-2 expression
- Author(s)
- JUNG TAE LEE; TAE-JIN LEE; JONG-WOOK PARK; TAEG KYU KWON
- Keimyung Author(s)
- Park, Jong Wook; Kwon, Taeg Kyu
- Department
- Dept. of Immunology (면역학)
Institute for Medical Science (의과학연구소)
- Journal Title
- International Journal of Oncology
- Issued Date
- 2009
- Volume
- 34
- Issue
- 5
- Abstract
- . Recent studies establish a critical role of selenium
in cancer prevention in vitro and in vivo. Selenium may
sensitize TRAIL-mediated apoptosis in human renal cancer
cells and increase therapeutic efficacy. In this study, we
demonstrate that concomitant administration of TRAIL and
Se-methylselenocysteine (Se-MSC) produces synergistic
effects on the induction of apoptosis in Caki cells. Se-MSC
rapidly and specifically down-regulates expression of the
Bcl-2 at transcriptional level. The forced expression of
Bcl-2 attenuated Se-MSC plus TRAIL-mediated apoptosis,
suggesting that the lessened Bcl-2 expression caused by
Se-MSC treatment is critical to the increased sensitivity to
TRAIL in renal cancer cells. In addition, we demonstrate
that the synergistic effects of Se-MSC and TRAIL result
from the activation of the caspase-dependent pathways.
Co-administration of HA14-1, a small molecule Bcl-2 inhibitor
and TRAIL increased apoptosis in Caki cells. Taken together,
Se-MSC-mediated down-regulation of Bcl-2 is able to sensitize
Caki cells for TRAIL-induced apoptosis. Thus, seleniumbased
dietary compounds may help to overcome resistance to
TRAIL-mediated apoptosis in renal cancer cells.
- 공개 및 라이선스
-
- 파일 목록
-
Items in Repository are protected by copyright, with all rights reserved, unless otherwise indicated.