SorLA restricts TNFα release from microglia to shape a glioma-supportive brain microenvironment

Author:

Kaminska PaulinaORCID,Ovesen Peter L,Jakiel Mateusz,Obrebski Tomasz,Schmidt Vanessa,Draminski Michal,Bilska Aleksandra GORCID,Bieniek Magdalena,Anink Jasper,Paterczyk BohdanORCID,Jensen Anne Mette Gissel,Piatek SylwiaORCID,Andersen Olav M,Aronica Eleonora,Willnow Thomas EORCID,Kaminska BozenaORCID,Dabrowski Michal JORCID,Malik Anna RORCID

Abstract

AbstractSorLA, encoded by the gene SORL1, is an intracellular sorting receptor of the VPS10P domain receptor gene family. Although SorLA is best recognized for its ability to shuttle target proteins between intracellular compartments in neurons, recent data suggest that also its microglial expression can be of high relevance for the pathogenesis of brain diseases, including glioblastoma (GBM). Here, we interrogated the impact of SorLA on the functional properties of glioma-associated microglia and macrophages (GAMs). In the GBM microenvironment, GAMs are re-programmed and lose the ability to elicit anti-tumor responses. Instead, they acquire a glioma-supporting phenotype, which is a key mechanism promoting glioma progression. Our re-analysis of published scRNA-seq data from GBM patients revealed that functional phenotypes of GAMs are linked to the level of SORL1 expression, which was further confirmed using in vitro models. Moreover, we demonstrate that SorLA restrains secretion of TNFα from microglia to restrict the inflammatory potential of these cells. Finally, we show that loss of SorLA exacerbates the pro-inflammatory response of microglia in the murine model of glioma and suppresses tumor growth.

Funder

Foundation for Polish Science

National Science Center

University of Warsaw

Minister of Education and Science

Publisher

Springer Science and Business Media LLC

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Cytokines on the way to secretion;Cytokine & Growth Factor Reviews;2024-10

2. Brain macrophage senescence in glioma;Seminars in Cancer Biology;2024-09

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