A multiplexed siRNA screen identifies key kinase signaling networks of brain glia

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초록

The dynamic behaviors of brain glial cells in various neuroinflammatory conditions and neurological disorders have been reported; however, little is known about the underlying intracellular signaling pathways. Here, we developed a multiplexed kinome-wide siRNA screen to identify the kinases regulating several inflammatory phenotypes of mouse glial cells in culture, including inflammatory activation, migration, and phagocytosis of glia. Subsequent proof-of-concept experiments involving genetic and pharmacological inhibitions indicated the importance of T-cell receptor signaling components in microglial activation and a metabolic shift from glycolysis to oxidative phosphorylation in astrocyte migration. This time- and cost-effective multiplexed kinome siRNA screen efficiently provides exploitable drug targets and novel insight into the mechanisms underlying the phenotypic regulation of glial cells and neuroinflammation. Moreover, the kinases identified in this screen may be relevant in other inflammatory diseases and cancer, wherein kinases play a critical role in disease signaling pathways.

키워드

NITRIC-OXIDE; ACTIVATION; ASTROCYTES; EXPRESSION; PATHWAY; ROLES
제목
A multiplexed siRNA screen identifies key kinase signaling networks of brain glia
저자
Kim, Jong-Heon; Han, Jin; Afridi, Ruqayya; Kim, Jae-Hong; Rahman, Md Habibur; Park, Dong Ho; Lee, Won Suk; Song, Gyun Jee; Suk, Kyoungho
DOI
10.26508/lsa.202201605
발행일
2023-05
유형
Article
저널명
LIFE SCIENCE ALLIANCE
권
6
호
5