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PLK1 inhibition promotes apoptosis and DNA damage in glioma stem cells by regulating the nuclear translocation of YBX1
by
Tao, Zhennan
, Liu, Bin
, Huang, Yulun
, Chen, Guangliang
, Wu, Yue
, Feng, Zibin
, Li, Xuetao
, Zhang, Kai
, Wang, Hao
in
631/67/1059/602
/ 631/67/71
/ Apoptosis
/ Biochemistry
/ Biomedical and Life Sciences
/ Brain tumors
/ Cell Biology
/ Cell Cycle Analysis
/ Deoxyribonucleic acid
/ DNA
/ DNA damage
/ Glioma
/ Glioma cells
/ Kinases
/ Life Sciences
/ Molecular modelling
/ Nuclear transport
/ Phosphorylation
/ Polo-like kinase
/ Polo-like kinase 1
/ Protein-serine/threonine kinase
/ Stem Cells
/ Tumorigenesis
2023
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PLK1 inhibition promotes apoptosis and DNA damage in glioma stem cells by regulating the nuclear translocation of YBX1
by
Tao, Zhennan
, Liu, Bin
, Huang, Yulun
, Chen, Guangliang
, Wu, Yue
, Feng, Zibin
, Li, Xuetao
, Zhang, Kai
, Wang, Hao
in
631/67/1059/602
/ 631/67/71
/ Apoptosis
/ Biochemistry
/ Biomedical and Life Sciences
/ Brain tumors
/ Cell Biology
/ Cell Cycle Analysis
/ Deoxyribonucleic acid
/ DNA
/ DNA damage
/ Glioma
/ Glioma cells
/ Kinases
/ Life Sciences
/ Molecular modelling
/ Nuclear transport
/ Phosphorylation
/ Polo-like kinase
/ Polo-like kinase 1
/ Protein-serine/threonine kinase
/ Stem Cells
/ Tumorigenesis
2023
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PLK1 inhibition promotes apoptosis and DNA damage in glioma stem cells by regulating the nuclear translocation of YBX1
by
Tao, Zhennan
, Liu, Bin
, Huang, Yulun
, Chen, Guangliang
, Wu, Yue
, Feng, Zibin
, Li, Xuetao
, Zhang, Kai
, Wang, Hao
in
631/67/1059/602
/ 631/67/71
/ Apoptosis
/ Biochemistry
/ Biomedical and Life Sciences
/ Brain tumors
/ Cell Biology
/ Cell Cycle Analysis
/ Deoxyribonucleic acid
/ DNA
/ DNA damage
/ Glioma
/ Glioma cells
/ Kinases
/ Life Sciences
/ Molecular modelling
/ Nuclear transport
/ Phosphorylation
/ Polo-like kinase
/ Polo-like kinase 1
/ Protein-serine/threonine kinase
/ Stem Cells
/ Tumorigenesis
2023
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PLK1 inhibition promotes apoptosis and DNA damage in glioma stem cells by regulating the nuclear translocation of YBX1
Journal Article
PLK1 inhibition promotes apoptosis and DNA damage in glioma stem cells by regulating the nuclear translocation of YBX1
2023
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Overview
Glioma stem cells (GSCs) are the important cause of tumorigenesis, recurrence, and chemo(radio)resistance in glioma. Targeting GSCs helps improve the outcomes of glioma treatment. Polo-like kinase 1 (PLK1) is a member of the serine/threonine protein kinase family, which is highly conserved. In recent years, it has been suggested that increased levels of PLK1 and its activity are associated with tumor progression and poor prognosis. We aimed to identify whether PLK1 plays a critical role in stemness maintenance and apoptosis regulation in GSCs. Here we identify that PLK1 inhibition can induce apoptosis and DNA damage of GSCs, we have also delineat the possible underlying molecular mechanisms: PLK1 interacts with YBX1 and directly phosphorylates serine 174 and serine 176 of YBX1. Inhibition of PLK1 reduces the phosphorylation level of YBX1, and decreased phosphorylation of YBX1 prevents its nuclear translocation, thereby inducing apoptosis and DNA damage of GSCs. We confirmed that YBX1 knockdown resulted in the apoptosis and DNA damage of GSCs. These findings uncover that PLK1 inhibition induces cell apoptosis and DNA damage in GSCs through YBX1 phosphorylation, providing new insights into the mechanism by which PLK1 inhibition contributes to the apoptosis of and DNA damage in gliomas.
Publisher
Nature Publishing Group UK,Springer Nature B.V,Nature Publishing Group
Subject
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