SPT6-driven error-free DNA repair safeguards genomic stability of glioblastoma cancer stem-like cells

Author:

Obara Elisabeth Anne Adanma,Aguilar-Morante DianaORCID,Rasmussen Rikke Darling,Frias Alex,Vitting-Serup Kristoffer,Lim Yi ChiehORCID,Elbæk Kirstine Juul,Pedersen Henriette,Vardouli Lina,Jensen Kamilla Ellermann,Skjoth-Rasmussen Jane,Brennum Jannick,Tuckova Lucie,Strauss RobertORCID,Dinant Christoffel,Bartek Jiri,Hamerlik PetraORCID

Abstract

AbstractGlioblastoma cancer-stem like cells (GSCs) display marked resistance to ionizing radiation (IR), a standard of care for glioblastoma patients. Mechanisms underpinning radio-resistance of GSCs remain largely unknown. Chromatin state and the accessibility of DNA lesions to DNA repair machineries are crucial for the maintenance of genomic stability. Understanding the functional impact of chromatin remodeling on DNA repair in GSCs may lay the foundation for advancing the efficacy of radio-sensitizing therapies. Here, we present the results of a high-content siRNA microscopy screen, revealing the transcriptional elongation factor SPT6 to be critical for the genomic stability and self-renewal of GSCs. Mechanistically, SPT6 transcriptionally up-regulates BRCA1 and thereby drives an error-free DNA repair in GSCs. SPT6 loss impairs the self-renewal, genomic stability and tumor initiating capacity of GSCs. Collectively, our results provide mechanistic insights into how SPT6 regulates DNA repair and identify SPT6 as a putative therapeutic target in glioblastoma.

Funder

Novo Nordisk Fonden

Danish National Research Foundation (CARD), the Danish Council for Independent Research and the Swedish research council.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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