4.6 Article

Compromised fractalkine signaling delays microglial occupancy of emerging modules in the multisensory midbrain

期刊

GLIA
卷 70, 期 4, 页码 697-711

出版社

WILEY
DOI: 10.1002/glia.24134

关键词

CX3CL1; CX3CR1; fractalkine; mapping; matrix; microglia; modularity; multimodal; RRID; AB_2276839; RRID; AB_2278725; RRID; AB_2336408; RRID; AB_2336833; RRID; AB_839504; RRID; SCR_003070

资金

  1. National Institutes of Health [DC018885-01]
  2. National Science Foundation [DBI-0619207, DBI-1725855]
  3. James Madison University Light Microscopy and Imaging Facility

向作者/读者索取更多资源

Microglial cells are recruited to modular compartments within the lateral cortex of the inferior colliculus during early postnatal development, with this recruitment being dependent on fractalkine signaling. This process is crucial in sculpting multisensory maps in the LCIC during the critical period.
Microglial cells (MGCs) are highly dynamic and have been implicated in shaping discrete neural maps in several unimodal systems. MGCs respond to numerous cues in their microenvironment, including the neuronally expressed chemokine, fractalkine (CX3CL1), via interactions with its corresponding fractalkine receptor (CX3CR1). The present study examines microglial and CX3CL1 patterns with regard to the emerging modular-extramodular matrix organization within the lateral cortex of the inferior colliculus (LCIC). The LCIC is a multisensory shell region of the midbrain inferior colliculus where discrete compartments receive modality-specific connections. Somatosensory inputs terminate within modular confines, while auditory inputs target the surrounding matrix. Glutamic acid decarboxylase (GAD) is an established marker of LCIC modules in developing mouse. During early postnatal development, multimodal LCIC afferents segregate into discrete, neurochemically defined compartments. Here, we analyzed neonatal GAD67-GFP (GFP is defined as green fluorescent protein) and CX3CR1-GFP mice to assess: (1) whether MGCs are recruited to distinct LCIC compartments known to be undergoing active circuit assembly, and (2) if such behaviors are fractalkine signaling-dependent. MGCs colonize the nascent LCIC by birth and increase in density until postnatal day 12 (P12). At the peak critical period (P4-P8), MGCs conspicuously border emerging LCIC modules, prior to their subsequent invasion by P12. CX3CL1 expression becomes distinctly modular at P12, in keeping with the notion of fractalkine-mediated recruitment of microglia to modular centers. In CX3CR1(GFP/GFP) mice with compromised fractalkine signaling, microglial recruitment into modules is delayed. Taken together, these results suggest a potential role for microglia and fractalkine signaling in sculpting multisensory LCIC maps during an early critical period.

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