Differential accumulation of storage bodies with aging defines discrete subsets of microglia in the healthy brain.

Burns, Jeremy Carlos; Cotleur, Bunny; Walther, Dirk M; Bajrami, Bekim; Rubino, Stephen J; Wei, Ru; Franchimont, Nathalie; Cotman, Susan L et al. · Elife · 2020

basic_science · Level V

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Abstract

To date, microglia subsets in the healthy CNS have not been identified. Utilizing autofluorescence (AF) as a discriminating parameter, we identified two novel microglia subsets in both mice and non-human primates, termed autofluorescence-positive (AF<sup>+</sup>) and negative (AF<sup>-</sup>). While their proportion remained constant throughout most adult life, the AF signal linearly and specifically increased in AF<sup>+</sup> microglia with age and correlated with a commensurate increase in size and complexity of lysosomal storage bodies, as detected by transmission electron microscopy and LAMP1 levels. Post-depletion repopulation kinetics revealed AF<sup>-</sup> cells as likely precursors of AF<sup>+</sup> microglia. At the molecular level, the proteome of AF<sup>+</sup> microglia showed overrepresentation of endolysosomal, autophagic, catabolic, and mTOR-related proteins. Mimicking the effect of advanced aging, genetic disruption of lysosomal function accelerated the accumulation of storage bodies in AF<sup>+</sup> cells and led to impaired microglia physiology and cell death, suggestive of a mechanistic convergence between aging and lysosomal storage disorders.

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