| Literature DB >> 35674939 |
Mengyue Shen1, Duo Wang2, Yusuke Sennari1, Zirui Zeng3, Ryoko Baba4, Hiroyuki Morimoto4, Noriaki Kitamura5, Tsukasa Nakanishi5, Junichi Tsukada5, Masanobu Ueno3, Yasuyuki Todoroki3, Shigeru Iwata3, Tomo Yonezawa6, Yoshiya Tanaka3, Yoshio Osada1, Yasuhiro Yoshida7.
Abstract
We investigated the antitumor effects of oleanolic acid (OA) and ursolic acid (UA) on adult T-cell leukemia cells. OA and UA dose-dependently inhibited the proliferation of adult T-cell leukemia cells. UA-treated cells showed caspase 3/7 and caspase 9 activation. PARP cleavage was detected in UA-treated MT-4 cells. Activation of mTOR and PDK-1 was inhibited by UA. Autophagosomes were detected in MT-4 cells after UA treatment using electron microscopy. Consistently, mitophagy was observed in OA- and UA-treated MT-4 cells by confocal microscopy. The mitochondrial membrane potential in MT-4 cells considerably decreased, and mitochondrial respiration and aerobic glycolysis were significantly reduced following UA treatment. Furthermore, MT-1 and MT-4 cells were sorted into two regions based on their mitochondrial membrane potential. UA-treated MT-4 cells from both regions showed high activation of caspase 3/7, which were inhibited by Z-vad. Interestingly, MT-4 cells cocultured with sorted UA-treated cells showed enhanced proliferation. Finally, UA induced cell death and ex vivo PARP cleavage in peripheral blood mononuclear cells from patients with adult T-cell leukemia. Therefore, UA-treated MT-4 cells show caspase activation following mitochondrial dysfunction and may produce survival signals to the surrounding cells.Entities:
Keywords: Adult T-cell leukemia; Apoptosis; Mitochondrial dysfunction; Oleanolic acid; PDK-1; Ursolic acid
Year: 2022 PMID: 35674939 DOI: 10.1007/s12032-022-01707-x
Source DB: PubMed Journal: Med Oncol ISSN: 1357-0560 Impact factor: 3.064