TY - JOUR
T1 - Reduction in MnSOD promotes the migration and invasion of squamous carcinoma cells
AU - Fan, Jhen Jia
AU - Hsu, Wen Hsien
AU - Hung, Hao Hsiang
AU - Zhang, Wei Jun
AU - A Lee, Yu Lin
AU - Chen, Ku Chung
AU - Chu, Cheng Ying
AU - Ko, Tzu Ping
AU - Lee, Ming Ting
AU - Lin, Cheng Wei
AU - Cheng, Chia Hsiung
N1 - Funding Information:
This study was supported by Taipei Medical University-Wan Fang Hospital (grant no. 105TMU-WFH-14, 2016) and the Ministry of Science and Technology, Taiwan (grant no. MOST107-2320-B-038-036, 2018).
Publisher Copyright:
© 2019 Spandidos Publications. All rights reserved.
PY - 2019/5
Y1 - 2019/5
N2 -
Reactive oxygen species (ROS) homeostasis is maintained at a higher level in cancer cells, which promotes tumorigenesis. Oxidative stress induced by anticancer drugs may further increase ROS to promote apoptosis, but can also enhance the metastasis of cancer cells. The effects of ROS homeostasis on cancer cells remain to be fully elucidated. In the present study, the effect of a reduction in manganese superoxide dismutase (MnSOD) on the migration and invasion of A431 cells was investigated. Our previous micro-assay data revealed that the mRNA expression of MnSOD was higher in the invasive A431-III cell line compared with that in the parental A431 cell line (A431-P). In the present study, high protein levels of MnSOD and H
2
O
2
production were observed in A431-III cells; however, catalase protein levels were significantly lower in A431-III cells compared with those in the A431-P cell line. The knockdown of MnSOD increased H
2
O
2
levels, enzyme activity, the mRNA levels of matrix metalloproteinase-1, -2 and -9, and the migratory and invasive abilities of the cells. Inducing a reduction in H
2
O
2
using diphenyleneiodonium (DPI) and N.acetyl-l-cysteine decreased the migratory abilities of the cell lines, and DPI attenuated the migratory ability that had been increased by MnSOD small interfering RNA knockdown. Luteolin (Lu) and quercetin (Qu) increased the expression of catalase and reduced H
2
O
2
levels, but without an observed change in the protein levels of MnSOD. Taken together, these data suggest that reduced MnSOD may induce ROS imbalance in cells and promote the metastatic ability of cancer cells. Lu and Qu may attenuate these processes and may be promising potential anticancer agents.
AB -
Reactive oxygen species (ROS) homeostasis is maintained at a higher level in cancer cells, which promotes tumorigenesis. Oxidative stress induced by anticancer drugs may further increase ROS to promote apoptosis, but can also enhance the metastasis of cancer cells. The effects of ROS homeostasis on cancer cells remain to be fully elucidated. In the present study, the effect of a reduction in manganese superoxide dismutase (MnSOD) on the migration and invasion of A431 cells was investigated. Our previous micro-assay data revealed that the mRNA expression of MnSOD was higher in the invasive A431-III cell line compared with that in the parental A431 cell line (A431-P). In the present study, high protein levels of MnSOD and H
2
O
2
production were observed in A431-III cells; however, catalase protein levels were significantly lower in A431-III cells compared with those in the A431-P cell line. The knockdown of MnSOD increased H
2
O
2
levels, enzyme activity, the mRNA levels of matrix metalloproteinase-1, -2 and -9, and the migratory and invasive abilities of the cells. Inducing a reduction in H
2
O
2
using diphenyleneiodonium (DPI) and N.acetyl-l-cysteine decreased the migratory abilities of the cell lines, and DPI attenuated the migratory ability that had been increased by MnSOD small interfering RNA knockdown. Luteolin (Lu) and quercetin (Qu) increased the expression of catalase and reduced H
2
O
2
levels, but without an observed change in the protein levels of MnSOD. Taken together, these data suggest that reduced MnSOD may induce ROS imbalance in cells and promote the metastatic ability of cancer cells. Lu and Qu may attenuate these processes and may be promising potential anticancer agents.
KW - Hydrogen peroxide
KW - Luteolin
KW - Manganese superoxide dismutase
KW - Metastasis
KW - Quercetin
KW - Reactive oxygen species
KW - Reactive Oxygen Species/metabolism
KW - Superoxide Dismutase/genetics
KW - Neoplasm Invasiveness
KW - Down-Regulation
KW - Humans
KW - Luteolin/pharmacology
KW - Gene Expression Regulation, Neoplastic/drug effects
KW - Onium Compounds/pharmacology
KW - Matrix Metalloproteinases/genetics
KW - Gene Knockdown Techniques
KW - Carcinoma, Squamous Cell/genetics
KW - Acetylcysteine/pharmacology
KW - Quercetin/pharmacology
KW - Cell Movement
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UR - http://www.scopus.com/inward/citedby.url?scp=85063411073&partnerID=8YFLogxK
U2 - 10.3892/ijo.2019.4750
DO - 10.3892/ijo.2019.4750
M3 - Article
C2 - 30896828
AN - SCOPUS:85063411073
SN - 1019-6439
VL - 54
SP - 1639
EP - 1650
JO - International Journal of Oncology
JF - International Journal of Oncology
IS - 5
ER -