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Differential Protein Expression in Striatal D1- and D2-Dopamine Receptor-Expressing Medium Spiny Neurons

机译:在纹状体D1和D2-多巴胺受体表达中等刺神经元中的差异蛋白质表达

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摘要

Many neurological disorders and diseases including drug addiction are associated with specific neuronal cell types in the brain. The striatum, a region that plays a critically important role in the development of addictive drug-related behavior, provides a good example of the cellular heterogeneity challenges associated with analyses of specific neuronal cell types. Such studies are needed to identify the adaptive changes in neuroproteomic signaling that occur in response to diseases such as addiction. The striatum contains two major cell types, D1 and D2 type dopaminoceptive medium spiny neurons (MSNs), whose cell bodies and processes are intermingled throughout this region. Since little is known about the proteomes of these two neuronal cell populations, we have begun to address this challenge by using fluorescence-activated nuclear sorting (FANS) to isolate nuclei-containing fractions from striatum from D1 and D2 “Translating Ribosome Affinity Purification” (TRAP) mice. This approach enabled us to devise and implement a robust and reproducible workflow for preparing samples from specific MSN cell types for mass spectrometry analyses. These analyses quantified at least 685 proteins in each of four biological replicates of 50 K sorted nuclei from two D1 mice/replicate and from each of four biological replicates of 50 K sorted nuclei from two D2 mice/replicate. Proteome analyses identified 87 proteins that were differentially expressed in D1 versus D2 MSN nuclei and principal component analysis (PCA) of these proteins separated the 8 biological replicates into specific cell types. Central network analysis of the 87 differentially expressed proteins identified Hnrnpd and Hnmpa2b1 in D1 and Cct2 and Cct7 in D2 as potential central interactors. This workflow can now be used to improve our understanding of many neurological diseases including characterizing the short and long-term impact of drugs of abuse on the proteomes of these two dopaminoceptive neuronal populations.
机译:许多神经系统疾病和包括药物成瘾的疾病与大脑中的特异性神经细胞类型相关。纹状体,在令人痛苦的药物相关行为发展中发挥着批判性重要作用的区域提供了与特定神经元细胞类型的分析相关的细胞异质性挑战的良好举例。需要这些研究来鉴定响应于诸如成瘾的疾病而发生的神经药物信号传导的适应性变化。纹状体含有两种主要细胞类型,D1和D2型多巴氨酰胺培养基刺神经元(MSN),其细胞体和过程在整个区域中融入。从这两个神经元细胞群的蛋白质群众众所周知,我们已经开始通过使用荧光激活的核分选(风扇)来解决从D1和D2“翻译核糖体亲和纯化”(陷阱)小鼠。该方法使我们能够设计和实现鲁棒和可重复的工作流程,用于制备来自特定MSN细胞类型的样本进行质谱分析。这些分析在50k小鼠/复制的50k分选核中的四个生物学复制中的每一个中量化了至少685个蛋白质,并从两种小鼠/复制中的四个生物重复中的每一个。蛋白质组分析鉴定了在D1的D1与D2 MSN核中差异表达的87个蛋白质和这些蛋白质的主要成分分析(PCA)将8个生物学重复分离成特定细胞类型。 87差异表达蛋白的中央网络分析鉴定了D2中的D1和CCT2和CCT7中的HNRNPD和HNMPA2B1,作为潜在的中央交流器。现在可以使用这种工作流程来改善我们对许多神经系统疾病的理解,包括表征滥用滥用药物对这两种多巴胺基神经元群的蛋白质蛋白质的短期和长期影响。

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