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Zhijia Wang
ORCID
Publication Activity (10 Years)
Years Active: 2023-2023
Publications (10 Years): 5
Top Topics
Mesenchymal Stem Cells
Cell Death
Induced Apoptosis
Pi K Akt
Top Venues
Nucleic acids research
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This page only lists publications with an associated author ORCID identifier.
Publications
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Zhijia Wang
,
Monika Mačáková
,
Andrii Bugai
,
Sergey G Kuznetsov
,
Antti Hassinen
,
Tina Lenasi
,
Swapnil Potdar
,
Caroline C Friedel
,
Matjaž Barborič
P-TEFb promotes cell survival upon p53 activation by suppressing intrinsic apoptosis pathway.
Nucleic acids research
51 (4) (2023)
Zhijia Wang
,
Samu V Himanen
,
Heidi M Haikala
,
Caroline C Friedel
,
Anniina Vihervaara
,
Matjaž Barborič
Inhibition of CDK12 elevates cancer cell dependence on P-TEFb by stimulation of RNA polymerase II pause release.
Nucleic acids research
(2023)
Zhijia Wang
,
Monika Mačáková
,
Andrii Bugai
,
Sergey G Kuznetsov
,
Antti Hassinen
,
Tina Lenasi
,
Swapnil Potdar
,
Caroline C Friedel
,
Matjaž Barborič
P-TEFb promotes cell survival upon p53 activation by suppressing intrinsic apoptosis pathway.
Nucleic acids research
51 (4) (2023)
Zhijia Wang
,
Monika Mačáková
,
Andrii Bugai
,
Sergey G Kuznetsov
,
Antti Hassinen
,
Tina Lenasi
,
Swapnil Potdar
,
Caroline C Friedel
,
Matjaž Barborič
P-TEFb promotes cell survival upon p53 activation by suppressing intrinsic apoptosis pathway.
Nucleic acids research
51 (4) (2023)
Zhijia Wang
,
Monika Mačáková
,
Andrii Bugai
,
Sergey G Kuznetsov
,
Antti Hassinen
,
Tina Lenasi
,
Swapnil Potdar
,
Caroline C Friedel
,
Matjaž Barborič
P-TEFb promotes cell survival upon p53 activation by suppressing intrinsic apoptosis pathway.
Nucleic acids research
(2023)