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Isolation of Cortical Microglia with Preserved Immunophenotype and Functionality From Murine Neonates
Published on: January 30, 2014
PARK7/DJ-1 deficiency impairs microglial activation in response to LPS-induced inflammation
Frida Lind-Holm Mogensen1,2, Carole Sousa1,3, Corrado Ameli4
1Neuro-Immunology Group, Department of Cancer Research, Luxembourg Institute of Health, 6A, rue Nicolas-Ernest Barblé, L-1210, Luxembourg, Luxembourg.
Background:
Specific microglia responses are thought to contribute to the development and progression of neurodegenerative diseases, including Parkinson's disease (PD). However, the phenotypic acquisition of microglial cells and their role during the underlying neuroinflammatory processes remain largely elusive. Here, according to the multiple-hit hypothesis, which stipulates that PD etiology is determined by a combination of genetics and various environmental risk factors, we investigate microglial transcriptional programs and morphological adaptations under PARK7/DJ-1 deficiency, a genetic cause of PD, during lipopolysaccharide (LPS)-induced inflammation.
Methods:
Using a combination of single-cell RNA-sequencing, bulk RNA-sequencing, multicolor flow cytometry and immunofluorescence analyses, we comprehensively compared microglial cell phenotypic characteristics in PARK7/DJ-1 knock-out (KO) with wildtype littermate mice following 6- or 24-h intraperitoneal injection with LPS. For translational perspectives, we conducted corresponding analyses in human PARK7/DJ-1 mutant induced pluripotent stem cell (iPSC)-derived microglia and murine bone marrow-derived macrophages (BMDMs).
Results:
By excluding the contribution of other immune brain resident and peripheral cells, we show that microglia acutely isolated from PARK7/DJ-1 KO mice display a distinct phenotype, specially related to type II interferon and DNA damage response signaling, when compared with wildtype microglia, in response to LPS. We also detected discrete signatures in human PARK7/DJ-1 mutant iPSC-derived microglia and BMDMs from PARK7/DJ-1 KO mice. These specific transcriptional signatures were reflected at the morphological level, with microglia in LPS-treated PARK7/DJ-1 KO mice showing a less amoeboid cell shape compared to wildtype mice, both at 6 and 24 h after acute inflammation, as also observed in BMDMs.
Conclusions:
Taken together, our results show that, under inflammatory conditions, PARK7/DJ-1 deficiency skews microglia towards a distinct phenotype characterized by downregulation of genes involved in type II interferon signaling and a less prominent amoeboid morphology compared to wildtype microglia. These findings suggest that the underlying oxidative stress associated with the lack of PARK7/DJ-1 affects microglia neuroinflammatory responses, which may play a causative role in PD onset and progression.
Insights
PARK7/DJ-1 deficiency in mice and humans alters microglia responses to inflammation, affecting type II interferon signaling and cell shape. This suggests a role for oxidative stress in Parkinson's disease pathogenesis.
Area of Science:
- Neuroimmunology
- Neuroinflammation
- Parkinson's Disease Pathogenesis
Background:
- Microglia play a critical role in neurodegenerative diseases like Parkinson's disease (PD).
- The precise microglial responses and phenotypic changes during neuroinflammation remain unclear.
- PARK7/DJ-1 deficiency is a genetic factor implicated in PD etiology.
Purpose of the Study:
- To investigate microglial transcriptional and morphological changes in PARK7/DJ-1 deficient models under inflammatory conditions.
- To explore the impact of PARK7/DJ-1 deficiency on microglial responses during lipopolysaccharide (LPS)-induced inflammation.
- To assess translational relevance in human induced pluripotent stem cell (iPSC)-derived microglia.
Main Methods:
- Single-cell and bulk RNA-sequencing, flow cytometry, and immunofluorescence were employed.
- Microglial phenotypes were compared between PARK7/DJ-1 knock-out (KO) and wildtype mice after LPS injection.
- Human PARK7/DJ-1 mutant iPSC-derived microglia and murine bone marrow-derived macrophages (BMDMs) were analyzed.
Main Results:
- Microglia from PARK7/DJ-1 KO mice exhibited distinct phenotypes, notably altered type II interferon and DNA damage response signaling upon LPS exposure.
- Specific transcriptional signatures were observed in human iPSC-derived microglia and murine BMDMs from PARK7/DJ-1 KO models.
- LPS-treated microglia in PARK7/DJ-1 KO mice displayed a less amoeboid morphology compared to wildtype controls.
Conclusions:
- PARK7/DJ-1 deficiency induces a unique microglial phenotype under inflammation, characterized by reduced type II interferon signaling and altered cell shape.
- Oxidative stress associated with PARK7/DJ-1 deficiency impacts microglial neuroinflammatory responses.
- These altered microglial responses may contribute to the onset and progression of Parkinson's disease.

