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Multiplex single-cell chemical genomics reveals the kinase dependence of the response to targeted therapy.

Authors :
McFaline-Figueroa JL
Srivatsan S
Hill AJ
Gasperini M
Jackson DL
Saunders L
Domcke S
Regalado SG
Lazarchuck P
Alvarez S
Monnat RJ Jr
Shendure J
Trapnell C
Source :
BioRxiv : the preprint server for biology [bioRxiv] 2023 Jun 14. Date of Electronic Publication: 2023 Jun 14.
Publication Year :
2023

Abstract

Chemical genetic screens are a powerful tool for exploring how cancer cells' response to drugs is shaped by their mutations, yet they lack a molecular view of the contribution of individual genes to the response to exposure. Here, we present sci-Plex- G ene-by- E nvironment (sci-Plex- G x E ), a platform for combined single-cell genetic and chemical screening at scale. We highlight the advantages of large-scale, unbiased screening by defining the contribution of each of 522 human kinases to the response of glioblastoma to different drugs designed to abrogate signaling from the receptor tyrosine kinase pathway. In total, we probed 14,121 gene-by-environment combinations across 1,052,205 single-cell transcriptomes. We identify an expression signature characteristic of compensatory adaptive signaling regulated in a MEK/MAPK-dependent manner. Further analyses aimed at preventing adaptation revealed promising combination therapies, including dual MEK and CDC7/CDK9 or NF-kB inhibitors, as potent means of preventing transcriptional adaptation of glioblastoma to targeted therapy.<br />Competing Interests: Declaration of interests One or more embodiments of one or more patents and patent applications filed by the University of Washington may encompass the methods, reagents, and data disclosed in this manuscript.

Details

Language :
English
Database :
MEDLINE
Journal :
BioRxiv : the preprint server for biology
Accession number :
37398090
Full Text :
https://doi.org/10.1101/2023.03.10.531983