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CPF impedes cell cycle re-entry of quiescent lung cancer cells through transcriptional suppression of FACT and c-MYC.


ABSTRACT: Blockade of cell cycle re-entry in quiescent cancer cells is a strategy to prevent cancer progression and recurrence. We investigated the action and mode of action of CPF mixture (Coptis chinensis, Pinellia ternata and Fructus trichosanthis) in impeding a proliferative switch in quiescent lung cancer cells. The results indicated that CPF impeded cell cycle re-entry in quiescent lung cancer cells by reduction of FACT and c-MYC mRNA and protein levels, with concomitant decrease in H3K4 tri-methylation and RNA polymerase II occupancy at FACT and c-MYC promoter regions. Animals implanted with quiescent cancer cells that had been exposed to CPF had reduced tumour volume/weight. Thus, CPF suppresses proliferative switching through transcriptional suppression of FACT and the c-MYC, providing a new insight into therapeutic target and intervention method in impeding cancer recurrence.

SUBMITTER: Bi L 

PROVIDER: S-EPMC7011132 | biostudies-literature | 2020 Feb

REPOSITORIES: biostudies-literature

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CPF impedes cell cycle re-entry of quiescent lung cancer cells through transcriptional suppression of FACT and c-MYC.

Bi Ling L   Xie Chanlu C   Jiao Lijing L   Jin Shenyi S   Hnit Su Su Thae SST   Mu Yao Y   Wang Yilun Y   Wang Qian Q   Ge Guangbo G   Wang Yaqiao Y   Zhao Xiaodong X   Shi Xinglong X   Kang Yani Y   De Souza Paul P   Liu Tao T   Zhou Jia J   Xu Ling L   Dong Qihan Q  

Journal of cellular and molecular medicine 20200120 3


Blockade of cell cycle re-entry in quiescent cancer cells is a strategy to prevent cancer progression and recurrence. We investigated the action and mode of action of CPF mixture (Coptis chinensis, Pinellia ternata and Fructus trichosanthis) in impeding a proliferative switch in quiescent lung cancer cells. The results indicated that CPF impeded cell cycle re-entry in quiescent lung cancer cells by reduction of FACT and c-MYC mRNA and protein levels, with concomitant decrease in H3K4 tri-methyla  ...[more]

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