Author:
Ong Derrick Sek Tong,Hu Baoli,Ho Yan Wing,Sauvé Charles-Etienne Gabriel,Bristow Christopher A.,Wang Qianghu,Multani Asha S.,Chen Peiwen,Nezi Luigi,Jiang Shan,Gorman Claire Elizabeth,Monasterio Marta Moreno,Koul Dimpy,Marchesini Matteo,Colla Simona,Jin Eun-Jung,Sulman Erik P.,Spring Denise J.,Yung Wai-Kwan Alfred,Verhaak Roel G. W.,Chin Lynda,Wang Y. Alan,DePinho Ronald A.
Abstract
An integrated genomic and functional analysis to elucidate DNA damage signaling factors promoting self-renewal of glioma stem cells (GSCs) identified proliferating cell nuclear antigen (PCNA)-associated factor (PAF) up-regulation in glioblastoma. PAF is preferentially overexpressed in GSCs. Its depletion impairs maintenance of self-renewal without promoting differentiation and reduces tumor-initiating cell frequency. Combined transcriptomic and metabolomic analyses revealed that PAF supports GSC maintenance, in part, by influencing DNA replication and pyrimidine metabolism pathways. PAF interacts with PCNA and regulates PCNA-associated DNA translesion synthesis (TLS); consequently, PAF depletion in combination with radiation generated fewer tumorspheres compared with radiation alone. Correspondingly, pharmacological impairment of DNA replication and TLS phenocopied the effect of PAF depletion in compromising GSC self-renewal and radioresistance, providing preclinical proof of principle that combined TLS inhibition and radiation therapy may be a viable therapeutic option in the treatment of glioblastoma multiforme (GBM).
Funder
HHS | National Institutes of Health
Publisher
Proceedings of the National Academy of Sciences
Cited by
47 articles.
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