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December 6, 2025Nature Communications2 citationsOpen Access

A spatial atlas of the complement system uncovers unique expression patterns in postnatal brain development in mice

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YZYingying ZhangTMTakashi MiwaMGMadhu Golla

Key Points

  • Molecular structure alterations and memory defects observed with Masp3 deficiency in mice.
  • Cellular heterogeneity measured across developmental stages from embryonic to adulthood.
  • Analysis of the complement system's role in neuropsychiatric disorders through spatial transcriptomics.
  • Research highlights distinct regulatory mechanisms in brain development compared to peripheral tissues.

Abstract

Recent studies have found non-immunological roles of the classical complement pathway (CP) in brain development and its involvement in neuropsychiatric and neurodegenerative diseases. However, multiple complement activation pathways exist beyond the CP, but their expression and function remain poorly understood in the brain. Using MERFISH, we constructed a comprehensive spatial transcriptomic atlas of the complement system in mouse brains from late embryonic stage to adulthood. Here we show that most complement genes are expressed locally with a remarkable degree of cellular, spatial, and temporal heterogeneity and that complement regulatory mechanisms are distinct from the periphery. Beyond confirming the known expression of the CP, our measurements reveal endogenous expression of the alternative pathway (AP), notably the AP activator Masp3 in immature brains. Masp3 deficiency alters molecular structure of the brain and causes working spatial memory defects, indicating a role of Masp3 in brain maturation, potentially via modulation of AP activity.

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Cite This Study

Zhang et al. (2025) studied this question.

synapsesocial.com/papers/69337cceb3f947a0a1259c1bhttps://doi.org/10.1038/s41467-025-66048-5
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