| Literature DB >> 29909984 |
Yan Qin1, Brian S Garrison2, Wenjiang Ma1, Rui Wang1, Aiping Jiang1, Jing Li1, Meeta Mistry3, Roderick T Bronson4, Daria Santoro1, Charlotte Franco1, Daisy A Robinton5, Beth Stevens5, Derrick J Rossi2, Chafen Lu6, Timothy A Springer7.
Abstract
Extracellular proTGF-β is covalently linked to "milieu" molecules in the matrix or on cell surfaces and is latent until TGF-β is released by integrins. Here, we show that LRRC33 on the surface of microglia functions as a milieu molecule and enables highly localized, integrin-αVβ8-dependent TGF-β activation. Lrrc33-/- mice lack CNS vascular abnormalities associated with deficiency in TGF-β-activating integrins but have microglia with a reactive phenotype and after 2 months develop ascending paraparesis with loss of myelinated axons and death by 5 months. Whole bone marrow transplantation results in selective repopulation of Lrrc33-/- brains with WT microglia and halts disease progression. The phenotypes of WT and Lrrc33-/- microglia in the same brain suggest that there is little spreading of TGF-β activated from one microglial cell to neighboring microglia. Our results suggest that interactions between integrin-bearing cells and cells bearing milieu molecule-associated TGF-β provide localized and selective activation of TGF-β.Entities:
Keywords: LRRC33; TGF-β; integrins; microglia; milieu molecules
Mesh:
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Year: 2018 PMID: 29909984 PMCID: PMC6089614 DOI: 10.1016/j.cell.2018.05.027
Source DB: PubMed Journal: Cell ISSN: 0092-8674 Impact factor: 41.582