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基于纳米抗体的邻近连接分析检测海马神经元树突中组成型和刺激调节型天然Arc/Arg3.1寡聚体。

A Nanobody-Based Proximity Ligation Assay Detects Constitutive and Stimulus-Regulated Native Arc/Arg3.1 Oligomers in Hippocampal Neuronal Dendrites.

作者信息

Baldinotti Rodolfo, Pauzin Francois P, Fevang Hauk, Ishizuka Yuta, Bramham Clive R

机构信息

Department of Biomedicine, University of Bergen, Jonas Lies 91, 5009, Bergen, Norway.

Mohn Research Center for the Brain, University of Bergen, Bergen, Norway.

出版信息

Mol Neurobiol. 2025 Apr;62(4):3973-3990. doi: 10.1007/s12035-024-04508-7. Epub 2024 Oct 5.

Abstract

Activity-regulated cytoskeleton-associated protein (Arc), the product of an immediate early gene, plays critical roles in synaptic plasticity and memory. Evidence suggests that Arc function is determined by its oligomeric state; however, methods for localization of native Arc oligomers are lacking. Here, we developed a nanobody-based proximity ligation assay (PLA) for detection, localization, and quantification of Arc-Arc complexes in primary rat hippocampal neuronal cultures. We used nanobodies with single, structurally defined epitopes in the bilobar Arc capsid domain. Nanobody H11 binds inside the N-lobe ligand pocket, while nanobody C11 binds to the C-lobe surface. For each nanobody, ALFA- and FLAG-epitope tags created a platform for antibody binding and PLA. Surprisingly, PLA puncta in neuronal dendrites revealed widespread constitutive Arc-Arc complexes. Treatment of cultures with tetrodotoxin or cycloheximide had no effect, suggesting stable complexes that are independent of recent neuronal activity and protein synthesis. To assess detection of oligomers, cultures were exposed to a cell-penetrating peptide inhibitor of the Arc oligomerization motif (OligoOFF). Arc-Arc complexes detected by H11 PLA were inhibited by OligoOff but not by control peptide. Notably, Arc complexes detected by C11 were unaffected by OligoOFF. Furthermore, we evaluated Arc complex formation after chemical stimuli that increase Arc synthesis. Brain-derived neurotrophic factor increased Arc-Arc signal detected by C11, but not H11. Conversely, dihydroxyphenylglycine (DHPG) treatment selectively enhanced H11 PLA signals. In sum, nanobody-based PLA reveals constitutive and stimulus-regulated Arc oligomers in hippocampal neuronal dendrites. A model is proposed based on detection of Arc dimer by C11 and higher-order oligomer by H11 nanobody.

摘要

活性调节细胞骨架相关蛋白(Arc)是一种即早基因的产物,在突触可塑性和记忆中发挥关键作用。有证据表明,Arc的功能由其寡聚状态决定;然而,目前缺乏定位天然Arc寡聚体的方法。在此,我们开发了一种基于纳米抗体的邻近连接分析(PLA),用于检测、定位和定量原代大鼠海马神经元培养物中的Arc-Arc复合物。我们使用了在双叶Arc衣壳结构域中具有单一、结构明确表位的纳米抗体。纳米抗体H11结合在N叶配体口袋内部,而纳米抗体C11结合在C叶表面。对于每个纳米抗体,ALFA和FLAG表位标签为抗体结合和PLA创建了一个平台。令人惊讶的是,神经元树突中的PLA斑点显示出广泛存在的组成型Arc-Arc复合物。用河豚毒素或放线菌酮处理培养物没有效果,这表明这些复合物是稳定的,与近期的神经元活动和蛋白质合成无关。为了评估寡聚体的检测情况,将培养物暴露于Arc寡聚化基序的细胞穿透肽抑制剂(OligoOFF)。H11 PLA检测到的Arc-Arc复合物被OligoOff抑制,但不受对照肽的影响。值得注意的是,C11检测到的Arc复合物不受OligoOFF的影响。此外,我们评估了增加Arc合成的化学刺激后Arc复合物的形成情况。脑源性神经营养因子增加了C11检测到的Arc-Arc信号,但H11未检测到。相反,二羟基苯甘氨酸(DHPG)处理选择性增强了H11 PLA信号。总之,基于纳米抗体的PLA揭示了海马神经元树突中组成型和刺激调节型的Arc寡聚体。基于C11对Arc二聚体和H11纳米抗体对高阶寡聚体的检测,提出了一个模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd50/11880080/107079c49415/12035_2024_4508_Fig1_HTML.jpg

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