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PARK7/DJ-1基因缺陷会损害小胶质细胞对脂多糖诱导的炎症反应的激活。

PARK7/DJ-1 deficiency impairs microglial activation in response to LPS-induced inflammation.

作者信息

Lind-Holm Mogensen Frida, Sousa Carole, Ameli Corrado, Badanjak Katja, Pereira Sandro L, Muller Arnaud, Kaoma Tony, Coowar Djalil, Scafidi Andrea, Poovathingal Suresh K, Tziortziou Maria, Antony Paul M A, Nicot Nathalie, Ginolhac Aurélien, Vogt Weisenhorn Daniela M, Wurst Wolfgang, Poli Aurélie, Nazarov Petr V, Skupin Alexander, Grünewald Anne, Michelucci Alessandro

机构信息

Neuro-Immunology Group, Department of Cancer Research, Luxembourg Institute of Health, 6A, rue Nicolas-Ernest Barblé, L-1210, Luxembourg, Luxembourg.

Faculty of Science, Technology and Medicine, University of Luxembourg, L-4365, Esch-sur-Alzette, Luxembourg.

出版信息

J Neuroinflammation. 2024 Jul 16;21(1):174. doi: 10.1186/s12974-024-03164-x.

Abstract

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.

摘要

背景

特定的小胶质细胞反应被认为有助于神经退行性疾病(包括帕金森病,PD)的发生和发展。然而,小胶质细胞的表型获得及其在潜在神经炎症过程中的作用在很大程度上仍不清楚。在这里,根据多打击假说(该假说规定PD病因由遗传和各种环境风险因素共同决定),我们研究了在脂多糖(LPS)诱导的炎症过程中,PARK7/DJ-1缺陷(一种PD的遗传病因)条件下小胶质细胞的转录程序和形态适应。

方法

通过结合单细胞RNA测序、批量RNA测序、多色流式细胞术和免疫荧光分析,我们全面比较了在腹腔注射LPS 6小时或24小时后,PARK7/DJ-1基因敲除(KO)小鼠与野生型同窝小鼠中小胶质细胞的表型特征。从转化医学的角度,我们在人PARK7/DJ-1突变诱导多能干细胞(iPSC)衍生的小胶质细胞和小鼠骨髓来源的巨噬细胞(BMDM)中进行了相应分析。

结果

通过排除其他脑内常驻免疫细胞和外周细胞的影响,我们发现,与野生型小胶质细胞相比,从PARK7/DJ-1 KO小鼠中急性分离出的小胶质细胞在对LPS的反应中表现出一种独特的表型,特别是与II型干扰素和DNA损伤反应信号相关。我们还在人PARK7/DJ-1突变iPSC衍生的小胶质细胞和PARK7/DJ-1 KO小鼠的BMDM中检测到了离散的特征。这些特定的转录特征在形态水平上得到了体现,在急性炎症后6小时和24小时,LPS处理的PARK7/DJ-1 KO小鼠中的小胶质细胞与野生型小鼠相比,呈现出较少的阿米巴样细胞形态,在BMDM中也观察到了类似现象。

结论

综上所述,我们的结果表明,在炎症条件下,PARK7/DJ-1缺陷使小胶质细胞向一种独特的表型倾斜,其特征是参与II型干扰素信号传导的基因下调,与野生型小胶质细胞相比,阿米巴样形态不那么突出。这些发现表明,与缺乏PARK7/DJ-1相关的潜在氧化应激会影响小胶质细胞的神经炎症反应,这可能在PD的发病和进展中起致病作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e3f/11253405/92ecd7e8d4a6/12974_2024_3164_Fig1_HTML.jpg

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