Identification of druggable regulators of cell secretion via a kinome-wide screen and high-throughput immunomagnetic cell sorting

被引:0
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作者
Mahmoud Labib
Zongjie Wang
Yunhye Kim
Sichun Lin
Abdalla Abdrabou
Hanie Yousefi
Pei-Ying Lo
Stéphane Angers
Edward H. Sargent
Shana O. Kelley
机构
[1] University of Plymouth,Peninsula Medical School, Faculty of Health
[2] Northwestern University,Department of Chemistry
[3] University of Toronto,Department of Pharmaceutical Sciences
[4] Northwestern University,Department of Biomedical Engineering, McCormick School of Engineering
[5] Northwestern University,Robert H. Laurie Comprehensive Cancer Center
[6] University of Toronto,Department of Biochemistry
[7] Donnelly Centre for Cellular and Biomolecular Research,Department of Electrical & Computer Engineering
[8] University of Toronto,Institute for Biomaterials and Biomedical Engineering
[9] University of Toronto,undefined
[10] Chan Zuckerberg Biohub Chicago,undefined
来源
Nature Biomedical Engineering | 2024年 / 8卷
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摘要
The identification of genetic regulators of cell secretions is challenging because it requires the sorting of a large number of cells according to their secretion patterns. Here we report the development and applicability of a high-throughput microfluidic method for the analysis of the secretion levels of large populations of immune cells. The method is linked with a kinome-wide loss-of-function CRISPR screen, immunomagnetically sorting the cells according to their secretion levels, and the sequencing of their genomes to identify key genetic modifiers of cell secretion. We used the method, which we validated against flow cytometry for cytokines secreted from primary mouse CD4+ (cluster of differentiation 4-positive) T cells, to discover a subgroup of highly co-expressed kinase-coding genes that regulate interferon-gamma secretion by these cells. We validated the function of the kinases identified using RNA interference, CRISPR knockouts and kinase inhibitors and confirmed the druggability of selected kinases via the administration of a kinase inhibitor in an animal model of colitis. The technique may facilitate the discovery of regulatory mechanisms for immune-cell activation and of therapeutic targets for autoimmune diseases.
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页码:263 / 277
页数:14
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