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Recovery of synaptic loss and depressive-like behavior induced by GATA1 through blocking of the neuroinflammatory response.open access

Authors
Choi, KoeulLee, JoonheeKim, GukdoLim, YounghyunKang, Hyo Jung
Issue Date
May-2024
Publisher
Frontiers Media SA
Keywords
GATA1; depression; inflammation; microglia; multi-omics
Citation
Frontiers in cellular neuroscience, v.18
Journal Title
Frontiers in cellular neuroscience
Volume
18
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/74177
DOI
10.3389/fncel.2024.1369951
ISSN
1662-5102
1662-5102
Abstract
GATA1, a member of the GATA transcription factor family, is a critical factor in hematopoietic system development. In a previous study, we demonstrated the increased expression of GATA1 in the dorsolateral prefrontal cortex (dlPFC) of patients suffering from depression and described its role as a transcriptional repressor of synapse-related genes. In this study, we investigated how GATA1 globally altered gene expression using multi-omics approaches. Through the combined analyses of ChIPseq, mRNAseq, and small RNAseq, we profiled genes that are potentially affected by GATA1 in cultured cortical neurons, and Gene Ontology (GO) analysis revealed that GATA1 might be associated with immune-related functions. We hypothesized that GATA1 induces immune activation, which has detrimental effects including synapse loss and depressive-like behavior. To test this hypothesis, we first performed a microglial morphometric analysis of a brain having overexpression of GATA1 because microglia are the resident immune cells of the central nervous system. Fractal analysis showed that the ramification and process length of microglia decreased in brains having GATA1 overexpression compared to the control, suggesting that GATA1 overexpression increases the activation of microglia. Through flow cytometry and immunohistochemical analysis, we found that activated microglia showed pro-inflammatory phenotypes characterized by the expression of CD86 and CD68. Finally, we demonstrated that the effects of GATA1 overexpression including synapse loss and depressive-like behavior could be blocked by inhibiting microglial activation using minocycline. These results will elucidate the regulatory mechanisms of GATA1 that affect pathophysiological conditions such as depression and provide a potential target for the treatment of depression. Copyright © 2024 Choi, Lee, Kim, Lim and Kang.
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자연과학대학 (생명과학과)
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