TY - JOUR
T1 - The histone methyltransferase SMYD2 is a novel therapeutic target for the induction of apoptosis in ovarian clear cell carcinoma cells
AU - Kojima, Machiko
AU - Sone, Kenbun
AU - Oda, Katsutoshi
AU - Hamamoto, Ryuji
AU - Kaneko, Syuzo
AU - Oki, Shinya
AU - Kukita, Asako
AU - Kawata, Akira
AU - Honjoh, Harunori
AU - Kawata, Yoshiko
AU - Kashiyama, Tomoko
AU - Sato, Masakazu
AU - Taguchi, Ayumi
AU - Miyamoto, Yuichiro
AU - Tanikawa, Michihiro
AU - Tsuruga, Tetsushi
AU - Nagasaka, Kazunori
AU - Wada‑Hiraike, Osamu
AU - Osuga, Yutaka
AU - Fujii, Tomoyuki
N1 - Publisher Copyright:
© 2020 Spandidos Publications. All rights reserved.
PY - 2020/8
Y1 - 2020/8
N2 - Previous studies have suggested that histone meth‑ ylation can modulate carcinogenesis and cancer progression. For instance, the histone methyltransferase SET and MYND domain containing 2 (SMYD2) is overexpressed in several types of cancer tissue. The aim of the present study was to determine whether SMYD2 could serve a therapeutic role in ovarian clear cell carcinoma (OCCC). Reverse transcription‑quantitative PCR was used to examine SMYD2 expression in 23 clinical OCCC specimens. Moreover, OCCC cell proliferation and cell cycle progression were also examined following small interfering RNA‑mediated SMYD2 silencing or treatment with a selective SMYD2 inhibitor. SMYD2 was significantly upregulated in clinical OCCC specimens, compared with normal ovarian tissue. In addition, SMYD2 knockdown decreased cell viability as determined via a Cell Counting Kit‑8 assay. Moreover, the proportion of cells in the sub‑G1 phase increased following SMYD2 knockdown, suggesting increased apoptosis. Treatment with the SMYD2 inhibitor LLY‑507 suppressed OCCC cell viability. These results suggested that SMYD2 could promote OCCC viability, and that SMYD2 inhibition induced apoptosis in these cells. Thus, SMYD2 inhibitors may represent a promising molecular targeted approach for OCCC treatment.
AB - Previous studies have suggested that histone meth‑ ylation can modulate carcinogenesis and cancer progression. For instance, the histone methyltransferase SET and MYND domain containing 2 (SMYD2) is overexpressed in several types of cancer tissue. The aim of the present study was to determine whether SMYD2 could serve a therapeutic role in ovarian clear cell carcinoma (OCCC). Reverse transcription‑quantitative PCR was used to examine SMYD2 expression in 23 clinical OCCC specimens. Moreover, OCCC cell proliferation and cell cycle progression were also examined following small interfering RNA‑mediated SMYD2 silencing or treatment with a selective SMYD2 inhibitor. SMYD2 was significantly upregulated in clinical OCCC specimens, compared with normal ovarian tissue. In addition, SMYD2 knockdown decreased cell viability as determined via a Cell Counting Kit‑8 assay. Moreover, the proportion of cells in the sub‑G1 phase increased following SMYD2 knockdown, suggesting increased apoptosis. Treatment with the SMYD2 inhibitor LLY‑507 suppressed OCCC cell viability. These results suggested that SMYD2 could promote OCCC viability, and that SMYD2 inhibition induced apoptosis in these cells. Thus, SMYD2 inhibitors may represent a promising molecular targeted approach for OCCC treatment.
KW - Epigenetic modification
KW - Histone methyltransferase
KW - Ovarian clear cell carcinoma
KW - SMYD2
KW - SMYD2 selective inhibitor
UR - https://www.scopus.com/pages/publications/85090883880
UR - https://www.scopus.com/pages/publications/85090883880#tab=citedBy
U2 - 10.3892/OL.2020.12014
DO - 10.3892/OL.2020.12014
M3 - Article
AN - SCOPUS:85090883880
SN - 1792-1074
VL - 20
JO - Oncology Letters
JF - Oncology Letters
IS - 5
ER -