Neural metabolic imbalance induced by MOF dysfunction triggers pericyte activation and breakdown of vasculature

Affiliation auteurs!!!! Error affiliation !!!!
TitreNeural metabolic imbalance induced by MOF dysfunction triggers pericyte activation and breakdown of vasculature
Type de publicationJournal Article
Year of Publication2020
AuteursSheikh BN, Guhathakurta S, Tsang THong, Schwabenland M, Renschler G, Herquel B, Bhardwaj V, Holz H, Stehle T, Bondareva O, Aizarani N, Mossad O, Kretz O, Reichardt W, Chatterjee A, Braun LJ, Thevenon J, Sartelet H, Blank T, Gruen D, von Elverfeldt D, Huber TB, Vestweber D, Avilov S, Prinz M, Buescher JM, Akhtar A
JournalNATURE CELL BIOLOGY
Volume22
Pagination828+
Date PublishedJUL
Type of ArticleArticle
ISSN1465-7392
Résumé

Mutations in chromatin-modifying complexes and metabolic enzymes commonly underlie complex human developmental syndromes affecting multiple organs. A major challenge is to determine how disease-causing genetic lesions cause deregulation of homeostasis in unique cell types. Here we show that neural-specific depletion of three members of the non-specific lethal (NSL) chromatin complex-Mof,Kansl2orKansl3-unexpectedly leads to severe vascular defects and brain haemorrhaging. Deregulation of the epigenetic landscape induced by the loss of the NSL complex in neural cells causes widespread metabolic defects, including an accumulation of free long-chain fatty acids (LCFAs). Free LCFAs induce a Toll-like receptor 4 (TLR4)-NF kappa B-dependent pro-inflammatory signalling cascade in neighbouring vascular pericytes that is rescued by TLR4 inhibition. Pericytes display functional changes in response to LCFA-induced activation that result in vascular breakdown. Our work establishes that neurovascular function is determined by the neural metabolic environment. Sheikh et al. show that deficiency in the lysine acetyltransferase MOF causes aberrant accumulation of fatty acids in neural cells, which in turn triggers inflammation in nearby pericytes, resulting in brain haemorrhaging.

DOI10.1038/s41556-020-0526-8