DAP12缺失减少神经元SLIT2和脱髓鞘并增强雌性tau蛋白病小鼠的大脑韧性

DAP12 deletion reduces neuronal SLIT2 and demyelination and enhances brain resilience in female tauopathy mice

作者信息Hao Chen, Li Fan, Qi Guo, Man Ying Wong, Jingjie Zhu, Nessa Foxe, Winston Wang, Aviram Nessim, Gillian Carling, Bangyan Liu, Chloe Lopez-Lee, Yige Huang, Sadaf Amin, Tark Patel, Sue-Ann Mok, Won-Min Song, Bin Zhang, Shiaoching Gong, Qin Ma, Hongjun Fu, Li Gan, Wenjie Luo
PMID41331787
发布时间2025-12
DOI10.1186/s13024-025-00903-3

实验完整度

包括tau蛋白病小鼠模型和人类AD脑样本,涉及体外原代小胶质细胞实验、行为学、单核RNA测序、空间转录组和病毒介导的基因过表达等功能验证。

主要模型

人Tau P301S转基因小鼠 Dap12敲除小鼠 原代小胶质细胞 人类AD脑组织

重点核对

验证DAP12缺失对tau蛋白加工的影响(体外原代小胶质细胞) 验证DAP12缺失对tau病理和神经炎症的影响(体内小鼠模型) 验证DAP12缺失对单细胞转录组的影响(snRNA-seq) 验证SLIT2信号在神经元-少突胶质细胞相互作用中的作用(CellChat和免疫共染) 验证SLIT2过表达对髓鞘的影响(慢病毒注射)

摘要

Background: Pathogenic tau accumulation drives neurodegeneration in Alzheimer's disease (AD). Enhancing the aging brain's resilience to tau pathology would lead to novel therapeutic strategies. DAP12 (DNAX-activation protein 12), highly and selectively expressed by microglia, plays a crucial role in microglial immune responses. Previous studies have shown that tauopathy mice lacking DAP12 exhibit higher tau pathology but are protected from tau pathology-induced cognitive deficits. However, the exact mechanism behind this resilience remains elusive. Methods: We investigated the effects of DAP12 deletion on tau pathology, as well as tau-induced brain inflammation and neurodegeneration, in homozygous human Tau P301S transgenic mice. In addition, we conducted single-nucleus RNA sequencing of hippocampal tissues to examine cell type-specific transcriptomic changes at the single-cell level. Furthermore, we utilized the CellChat package to profile cell-cell communication in the mouse brain and investigated how these interactions are affected by tau pathology and Dap12 deletion. Results: We demonstrated that Dap12 deletion reduced tau processing in primary microglia and increased tau pathology in female tauopathy mice, with minimal effects on males. Despite this, Dap12 deletion markedly reduced brain inflammation, synapse loss, and demyelination, indicating enhanced resilience to tau toxicity. Single-cell transcriptomic profiling revealed that Dap12 deletion blocked tau-induced alterations in microglia, neurons, and oligodendrocytes. CellChat analysis identified aberrant tau-induced SLIT2 signaling from excitatory neurons to oligodendrocytes. Dap12 deletion suppressed Slit2 upregulation and mitigated demyelination, while lentiviral-Slit2 overexpression induced myelin loss in tauopathy mice. Elevated SLIT2 levels were associated with demyelination in tauopathy mouse model and human AD brains. Spatial transcriptomics revealed a spatial correlation of SLIT2 expression and tau pathology in AD brain tissue. Conclusions: Our study identifies a novel DAP12-dependent mechanistic link between upregulated Slit2 expression in excitatory neurons and oligodendrocyte-dependent myelination loss in tauopathy. Despite elevating tau load, the absence of microglial Dap12 ameliorates neuroinflammation and improves brain functions in tauopathy mice. Our study suggests that selectively targeting the toxic aspects of DAP12 signaling while preserving its beneficial functions may be a promising strategy to enhance brain resilience in AD.

实验结论

提炼研究问题、关键发现与证据,快速把握文章的核心贡献。

研究问题
DAP12缺失如何增强tau蛋白病小鼠大脑的韧性,其潜在机制是什么?
核心机制
DAP12通过上调兴奋性神经元中SLIT2的表达,进而通过SLIT2-ROBO1信号破坏少突胶质细胞介导的髓鞘形成,导致脱髓鞘。
主要证据
体外小胶质细胞实验表明DAP12缺失减少tau加工;体内小鼠模型显示DAP12缺失增加tau病理但减轻炎症和脱髓鞘;单核RNA测序和CellChat分析揭示DAP12依赖性SLIT2信号;慢病毒过表达SLIT2诱导髓鞘丢失。
研究意义
该研究揭示了DAP12在tau蛋白病中介导神经元-小胶质细胞-少突胶质细胞相互作用的新机制,为靶向DAP12信号以增强大脑韧性提供了潜在策略。

研究路径

按研究推进顺序梳理实验设计、验证步骤与关键观察。

1

体外小胶质细胞tau加工实验

研究DAP12在小胶质细胞对tau纤维的摄取和加工中的作用

从新生Dap12+/+和Dap12-/-小鼠分离原代小胶质细胞,用0N4R tau纤维处理,通过免疫染色和定量分析tau的摄取和加工。

2

体内tau病理和小胶质细胞增生分析

评估DAP12缺失对tau病理和神经炎症的影响

使用6月龄雌性P301S tau转基因小鼠(Dap12+/+或Dap12-/-),通过免疫组化检测AT8、MC1、IBA1、CD68、GFAP等标记物。

3

神经炎症信号通路分析

研究DAP12缺失对tau诱导的炎症信号通路的影响

利用多重免疫分析检测皮层裂解物中AKT、ERK、JNK、p38、STAT3、NF-κB的磷酸化水平,并用Western blot验证。

4

批量RNA测序和转录组分析

揭示Dap12缺失对tau诱导的转录组变化的影响

对皮层组织进行批量RNA测序,分析差异表达基因和富集通路。

5

单核RNA测序(snRNA-seq)

在单细胞水平解析DAP12缺失对各细胞类型转录组的影响

对海马组织进行单核RNA测序,聚类分析微胶质细胞、兴奋性神经元、少突胶质细胞等细胞类型。

6

细胞间通讯分析

识别tau病理和Dap12缺失影响的关键细胞间信号通路

利用CellChat包分析snRNA-seq数据,预测细胞间配体-受体相互作用。

7

SLIT2和髓鞘染色

验证SLIT2表达与脱髓鞘的关系

通过免疫共染检测SLIT2和MBP在tau蛋白病小鼠和人类AD脑中的表达和共定位。

8

慢病毒介导的SLIT2过表达

检验SLIT2过表达是否导致脱髓鞘

向3-4月龄雌性tau蛋白病小鼠海马注射对照或Slit2过表达慢病毒,4周后分析髓鞘变化。

研究方法

按研究目的归类文中使用的方法,便于定位所需技术。

产品清单

实验环节名称品牌货号
杜氏磷酸盐缓冲液----
0.05%胰蛋白酶----
胎牛血清----
杜氏改良Eagle培养基----
多聚D-赖氨酸----
粒细胞-巨噬细胞集落刺激因子----
0N4R tau纤维----
兔抗人tau抗体(Dako, A0024)DakoA0024
Alexa Fluor 568偶联山羊抗兔IgG(Invitrogen, A-11004)InvitrogenA-11004
DAPI----
蔡司显微镜ZEISS--
ImageJ(美国国立卫生研究院)NIH--
PureLink™ RNA小提试剂盒Thermo Fisher--
NovaSeq测序平台Illumina--
nuclei PURE裂解缓冲液(Sigma, NUC201-1KT)SigmaNUC201-1KT
Dounce组织研磨器(Sigma, D8938-1SET)SigmaD8938-1SET
Chromium Single Cell 3'试剂盒v3(10× Genomics, PN-1000075)10x GenomicsPN-1000075
Agilent片段分析仪系统Agilent--
抗IBA1抗体(Fujifilm Wako, Cat # 019-19741)Fujifilm Wako019-19741
抗MC1抗体----
抗OLIG2抗体(Sigma, Cat # ZMS1019)SigmaZMS1019
抗MBP抗体(Sigma, Cat # MAB386)SigmaMAB386
抗GFAP抗体(Abcam, Cat # ab7260)Abcamab7260
抗磷酸化Tau抗体(AT8)(ThermoFisher Scientific, Cat # MN1020)ThermoFisher ScientificMN1020
抗P2RY12抗体(Biolegend, Cat # 848002)Biolegend848002
抗CD68抗体(BioRad, Cat # MCA1957GA)BioRadMCA1957GA
抗GFP抗体(Abcam, Cat # ab6673)Abcamab6673
抗SLIT2抗体(ThermoFisher Scientific, Cat # PA5-31133)ThermoFisher ScientificPA5-31133
山羊抗兔488(Invitrogen, Cat # A11070)InvitrogenA11070
山羊抗兔568(Invitrogen, Cat # A11036)InvitrogenA11036
山羊抗小鼠568(Invitrogen, Cat # A11031)InvitrogenA11031
山羊抗大鼠568(Invitrogen, Cat # A11077)InvitrogenA11077
驴抗山羊488(Invitrogen, Cat # A11055)InvitrogenA11055
ProLong Gold抗淬灭封片剂----
柠檬酸盐缓冲液(Electron Microscopy Sciences, Cat # 64142-08)Electron Microscopy Sciences64142-08
TrueBlack(Biotium)Biotium--
Hoechst 33,342(Thermo Fisher Scientific, Cat # 62249)Thermo Fisher Scientific62249
不含DAPI的Vectashield封片剂(Vector Laboratories, Cat # H-1000-10)Vector LaboratoriesH-1000-10
蔡司Apotome 3显微镜Zeiss--
Opti-MEM I减血清培养基(Thermo Fisher Scientific, Cat. No. 31985070)Thermo Fisher Scientific31985070
TransIT-LT1转染试剂(Mirus Bio, Cat. No. MIR6600)Mirus BioMIR6600
Lipofectamine 3000转染试剂(Thermo Fisher Scientific, Cat. No. L3000015)Thermo Fisher ScientificL3000015
Lenti-X浓缩试剂(Takara Bio, Cat. No. 631232)Takara Bio631232
兔抗磷酸化AKT (Ser473)(Cell Signaling Technology, Cat # 4060)Cell Signaling Technology4060
兔抗总AKT(Cell Signaling Technology, Cat # 4691)Cell Signaling Technology4691
兔抗磷酸化STAT3 (Ser727)(Cell Signaling Technology, Cat # 9134)Cell Signaling Technology9134
小鼠抗总STAT3(Cell Signaling Technology, Cat # 9139)Cell Signaling Technology9139
兔抗磷酸化ERK1/2 (Thr202/204)(Cell Signaling Technology, Cat # 4370)Cell Signaling Technology4370
兔抗总ERK1/2(Cell Signaling Technology, Cat # 9102)Cell Signaling Technology9102
兔抗GAPDH(GeneTex, Cat # GTX100118)GeneTexGTX100118
小鼠抗PSD95(Abcam, Cat # ab2723)Abcamab2723
兔抗GAPDH(Cell Signaling Technology, Cat # 2118)Cell Signaling Technology2118
兔抗Beta3-微管蛋白(Cell Signaling Technology, Cat # 5568)Cell Signaling Technology5568
HRP标记山羊抗小鼠IgG(Jackson, Cat # 115-035-146)Jackson115-035-146
HRP标记山羊抗兔IgG(Jackson, Cat # 111-035-144)Jackson111-035-144
MILLIPLEX MAP小鼠磷酸化和总多通路9重磁珠试剂盒(Millipore, Cat.# 48-680MAG)Millipore48-680MAG
MagPix系统Luminex--
MILLIPLEX MAP小鼠细胞因子/趋化因子磁珠试剂盒(Millipore, MCYTMAG-70K-PX32)MilliporeMCYTMAG-70K-PX32

关键环节

汇总复现实验时建议重点确认的条件及原文阅读提示。

环节核对要点
体外小胶质细胞tau加工实验
小鼠基因型、tau纤维浓度、处理时间、追踪时间
阅读提示:见Methods: Primary microglial culture和Tau fibril uptake and retention after processing by cultured microglia
体内tau病理分析
小鼠年龄、性别(雌性)、基因型、组织处理
阅读提示:见Methods: Animals和Mouse and human brain immunohistochemistry and imaging
神经炎症信号分析
皮层裂解物的制备方法、抗体浓度、样本量
阅读提示:见Methods: Multiplex bead-based immunoassay和Western blotting
单核RNA测序
海马组织分离、细胞核提取、测序平台、质量控制阈值
阅读提示:见Methods: Isolation of nuclei from frozen mouse brain tissue和Droplet-based single-nuclei RNA-seq