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Loss of P2Y12 Has Behavioral Effects in the Adult Mouse
Rebecca L Lowery1, Monique S Mendes1,2, Brandon T Sanders1
1Center for Visual Science, Department of Neuroscience, University of Rochester, Rochester, NY 14642, USA.
Abstract:
While microglia have been established as critical mediators of synaptic plasticity, the molecular signals underlying this process are still being uncovered. Increasing evidence suggests that microglia utilize these signals in a temporally and regionally heterogeneous manner. Subsequently, it is necessary to understand the conditions under which different molecular signals are employed by microglia to mediate the physiological process of synaptic remodeling in development and adulthood. While the microglial purinergic receptor P2Y12 is required for ocular dominance plasticity, an adolescent form of experience-dependent plasticity, it remains unknown whether P2Y12 functions in other forms of plasticity at different developmental time points or in different brain regions. Using a combination of ex vivo characterization and behavioral testing, we examined how the loss of P2Y12 affects developmental processes and behavioral performance in adulthood in mice. We found P2Y12 was not required for an early form of plasticity in the developing visual thalamus and did not affect microglial migration into barrels in the developing somatosensory cortex. In adult mice, however, the loss of P2Y12 resulted in alterations in recognition and social memory, as well as anxiety-like behaviors, suggesting that while P2Y12 is not a universal regulator of synaptic plasticity, the loss of P2Y12 is sufficient to cause functional defects.
Insights
Microglia use molecular signals for brain plasticity, but P2Y12 receptor is not universally required. Its absence impacts adult memory and anxiety, showing specific functional roles.
Area of Science:
- Neuroscience
- Cell Biology
- Developmental Biology
Background:
- Microglia are key players in synaptic plasticity, utilizing diverse molecular signals.
- Microglial signaling is temporally and regionally heterogeneous, necessitating investigation into specific contexts.
- The role of the microglial purinergic receptor P2Y12 in various forms of plasticity remains largely unexplored.
Purpose of the Study:
- To investigate the role of microglial P2Y12 in different forms of synaptic plasticity across developmental stages and brain regions.
- To determine the impact of P2Y12 loss on developmental processes and adult behavior in mice.
Main Methods:
- Ex vivo characterization of microglial function.
- Behavioral testing in mice lacking P2Y12.
- Analysis of synaptic plasticity in developing and adult brain regions.
Main Results:
- P2Y12 is not essential for early visual thalamus plasticity or microglial migration in the somatosensory cortex.
- Loss of P2Y12 in adult mice leads to deficits in recognition and social memory.
- Absence of P2Y12 results in increased anxiety-like behaviors in adult mice.
Conclusions:
- Microglial P2Y12 is not a universal regulator of all synaptic plasticity.
- P2Y12 plays a critical role in specific forms of plasticity and cognitive functions in adulthood.
- Disruption of P2Y12 signaling leads to significant functional behavioral deficits.
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