Analysis of Cell Cycle Gene Expression Responding to Acetoxyscirpendiol Isolated from Paecilomyces tenuipes(Biochemistry/Molecular Biology)
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概要
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Paecilomyces tenuipes is believed to contain potential oncostatic and tumor-reducing components. Molecular mechanism, however, is poorly understood concerning the potential antitumor components and their biological function. We purified acetoxyscirpendiol (ASD) from methanolic extracts (MPT) of the fungus and tested the two compounds for the molecular profile of their antitumor potential. Using a differential display protocol, cyclin C and Mad-1 were identified as candidate genes responding to MPT. When a quantitative PCR was performed on the total RNA from MCF-7 treated by MPT or ASD, gene expressions of cyclin C and Mad-1 were greatly augmented. In terms of protein expression, cyclin C level increased up to 12 folds in response to ASD as well as MPT. Similar as MPT treatments, ASD-treated cells synthesize cyclin C as 2-4 fold compared to the control treatments. In terms of Mad-1 expression in cells treated with ASD, the level of Mad-1 expression increased up to 2.5 folds by MPT treatment. Cyclin C expression was compared with non-treated cells in various cell lines. MCF-7 cell was shown highly responsive to the MPT or ASD treatment. Taken together, these results strongly indicate that MPT contains potential antitumor components which might exert their action by modulating cell cycle-related genes such as cyclin C and Mad-1 in MCF-7. The major antioncogenic component in MPT may be ASD which modulates cyclin C and Mad-1 expression.
- 公益社団法人日本薬学会の論文
- 2003-01-01
著者
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KIM Ha
Department of East-West Medicine, Graduate School, Kyung Hee University
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Chung Eui-jung
Department Of Life Science University Of Seoul
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Kim Ha
Department Of Chemical Engineering Hanyang University
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Kim Ha
Department Of Life Science University Of Seoul
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CHOI Kyungyi
Department of Life Science, University of Seoul
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LEE Dong-Hee
Department of Life Science, University of Seoul
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Lee Dong-hee
Department Of Life Science University Of Seoul
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Choi Kyungyi
Department Of Life Science University Of Seoul
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Kim Ha
Department Of Biological Science And Engineering Korea Advanced Institute Of Science And Technology
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