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Inhibition of Period Gene Expression Causes Repression of Cell Cycle Progression and Cell Growth in the Bombyx mori Cells.


ABSTRACT: Circadian clock system disorders can lead to uncontrolled cell proliferation, but the molecular mechanism remains unknown. We used a Bombyx mori animal model of single Period gene (BmPer) expression to investigate this mechanism. A slow growing developmental cell model (Per-KD) was isolated from a B. mori ovarian cell line (BmN) by continuous knock down of BmPer expression. The effects of BmPer expression knockdown (Per-KD) on cell proliferation and apoptosis were opposite to those of m/hPer1 and m/hPer2 in mammals. The knockdown of BmPer expression led to cell cycle deceleration with shrinking of the BmN cell nucleus, and significant inhibition of nuclear DNA synthesis and cell proliferation. It also promoted autophagy via the lysosomal pathway, and accelerated apoptosis via the caspase pathway.

SUBMITTER: Qiu JF 

PROVIDER: S-EPMC6509393 | biostudies-literature | 2019

REPOSITORIES: biostudies-literature

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Inhibition of <i>Period</i> Gene Expression Causes Repression of Cell Cycle Progression and Cell Growth in the <i>Bombyx mori</i> Cells.

Qiu Jian-Feng JF   Li Xue X   Cui Wen-Zhao WZ   Liu Xiao-Fei XF   Tao Hui H   Yang Kun K   Dai Tai-Ming TM   Sima Yang-Hu YH   Xu Shi-Qing SQ  

Frontiers in physiology 20190503


Circadian clock system disorders can lead to uncontrolled cell proliferation, but the molecular mechanism remains unknown. We used a <i>Bombyx mori</i> animal model of single <i>Period</i> gene (<i>BmPer</i>) expression to investigate this mechanism. A slow growing developmental cell model (Per-KD) was isolated from a <i>B. mori</i> ovarian cell line (BmN) by continuous knock down of <i>BmPer</i> expression. The effects of <i>BmPer</i> expression knockdown (Per-KD) on cell proliferation and apop  ...[more]

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