bioRxiv · 10.1101/2023.07.13.548459
Radial glia control microglial differentiation via integrin avb8-dependent trans-activation of TGFB1
Abstract
Microglia diversity emerges from interactions between intrinsic genetic programs and environment-derived signals, but how these processes unfold and interact in the developing brain remains unclear. Here, we show that radial glia-expressed integrin beta 8 (ITGB8) expressed in radial glia progenitors activates microglia-expressed TGF{beta}1, permitting microglial development. Domain-restricted deletion of Itgb8 in these progenitors establishes complementary regions with developmentally arrested "dysmature" microglia that persist into adulthood. In the absence of autocrine TGF{beta}1 signaling, we find that microglia adopt a similar dysmature phenotype, leading to neuromotor symptoms almost identical to Itgb8 mutant mice. In contrast, microglia lacking the TGF{beta} signal transducers Smad2 and Smad3 have a less polarized dysmature phenotype and correspondingly less severe neuromotor dysfunction. Finally, we show that non-canonical (Smad-independent) signaling partially suppresses disease and development associated gene expression, providing compelling evidence for the adoption of microglial developmental signaling pathways in the context of injury or disease.
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McKinsey, G. L., Santander, N., Zhang, X., Kleemann, K., Katewa, A., Tran, L., Conant, K., Barraza, M., Lizama, C. O., Koo, H. J., Lee, H., Mukherjee, D., Paidassi, H., Anton, E. S., Atabai, K., Sheppard, D., Butovsky, O., Arnold, T. D.. 2023-07-13. Radial glia control microglial differentiation via integrin avb8-dependent trans-activation of TGFB1. https://doi.org/10.1101/2023.07.13.548459
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