Microglia–neuron crosstalk through Hex–GM2–MGL2 maintains brain homeostasis

M Maximilian Frosch T Takashi Shimizu E Emile Wogram L Lukas Amann L Lars Gruber A Ayelén I. Groisman M Maximilian Fliegauf M Marius Schwabenland C Chintan Chhatbar S Sabrina Zechel H Hendrik Rosewich J Jutta Gärtner F Francisco J. Quintana J Joerg M. Buescher T Thomas Blank H Harald Binder C Christine Stadelmann J Johannes J. Letzkus C Carsten Hopf T Takahiro Masuda K Klaus-Peter Knobeloch M Marco Prinz

Abstract

Abstract As tissue-resident macrophages of the central nervous system parenchyma, microglia perform diverse essential functions during homeostasis and perturbations 1 . They primarily interact with neurons by means of synaptic engulfment and through the rapid elimination of apoptotic cells and non-functional synapses 2 . Here, by combining unbiased lipidomics and high-resolution spatial lipid imaging, deep single-cell transcriptome analysis and novel cell-type-specific mutants, we identified a previously unknown mode of microglial interaction with neurons. During homeostasis, microglia deliver the lysosomal enzyme β-hexosaminidase to neurons for the degradation of the ganglioside GM2 that is integral to maintaining cell membrane organization and function. Absence of Hexb , encoding the β subunit of β-hexosaminidase, in both mice and patients with neurodegenerative Sandhoff disease leads to a massive accumulation of GM2 derivatives in a characteristic spatiotemporal manner 3 . In mice, neuronal GM2 gangliosides subsequently engage the macrophage galactose-type lectin 2 receptor on microglia through N -acetylgalactosamine residues, leading to lethal neurodegeneration. Notably, replacement of microglia with peripherally derived microglia-like cells is able to break this degenerative cycle and fully restore central nervous system homeostasis. Our results reveal a mode of bidirectional microglia–neuron communication centred around GM2 ganglioside turnover, identify a microgliopathy and offer therapeutic avenues for these maladies.

Article Details

Journal Nature
Volume / Issue Vol. 646, Issue 8086
Published October 23, 2025
Pages 913-924
ISSN 0028-0836
Publisher Nature Portfolio

Journal Info

Nature

Nature Portfolio

ISSN: 0028-0836 Health Sciences

Authors (22)

M

Maximilian Frosch

T

Takashi Shimizu

E

Emile Wogram

L

Lukas Amann

L

Lars Gruber

A

Ayelén I. Groisman

M

Maximilian Fliegauf

M

Marius Schwabenland

C

Chintan Chhatbar

S

Sabrina Zechel

H

Hendrik Rosewich

J

Jutta Gärtner

F

Francisco J. Quintana

J

Joerg M. Buescher

T

Thomas Blank

H

Harald Binder

C

Christine Stadelmann

J

Johannes J. Letzkus

C

Carsten Hopf

T

Takahiro Masuda

K

Klaus-Peter Knobeloch

M

Marco Prinz