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定量神经蛋白质组学:研究神经分化和功能的经典和新型工具。

Quantitative neuroproteomics: classical and novel tools for studying neural differentiation and function.

机构信息

Dipartimento di Scienze della Vita, Seconda Università di Napoli, Via Vivaldi 43, 81100 Caserta, Italy.

出版信息

Stem Cell Rev Rep. 2011 Mar;7(1):77-93. doi: 10.1007/s12015-010-9136-3.

Abstract

Mechanisms underlying neural stem cell proliferation, differentiation and maturation play a critical role in the formation and wiring of neuronal connections. This process involves the activation of multiple serial events, which guide the undifferentiated cells to different lineages via distinctive developmental programs, forming neuronal circuits and thus shaping the adult nervous system. Furthermore, alterations within these strictly regulated pathways can lead to severe neurological and psychiatric diseases. In this framework, the investigation of the high dynamic protein expression changes and other factors affecting protein functions, for example post-translational modifications, the alterations of protein interaction networks, is of pivotal importance for the understanding of the molecular mechanisms responsible for cell differentiation. More recently, proteomic studies in neuroscience ("neuroproteomics") are receiving increased interest for the primary understanding of the regulatory networks underlying neuronal differentiation processes. Besides the classical two-dimensional-based proteomic strategies, the emerging platforms for LC-MS shotgun proteomic analysis hold great promise in unraveling the molecular basis of neural stem cell differentiation. In this review, recent advancements in label-free LC-MS quantitative neuroproteomics are highlighted as a new tool for the study of neural differentiation and functions, in comparison to mass spectrometry-based labeling approaches. The more commonly used protein profiling strategies and model systems for the analysis of neural differentiation are also discussed, along with the challenging proteomic approaches aimed to analyze the nervous system-specific organelles, the neural cells secretome and the specific protein interaction networks.

摘要

神经干细胞增殖、分化和成熟的机制在神经元连接的形成和布线中起着关键作用。这个过程涉及多个连续事件的激活,这些事件通过独特的发育程序引导未分化细胞向不同的谱系分化,形成神经元回路,从而塑造成年神经系统。此外,这些严格调控途径中的改变可能导致严重的神经和精神疾病。在这种情况下,研究高动态蛋白表达变化和其他影响蛋白功能的因素(例如翻译后修饰、蛋白相互作用网络的改变)对于理解负责细胞分化的分子机制至关重要。最近,神经科学中的蛋白质组学研究(“神经蛋白质组学”)越来越受到关注,主要是为了了解神经元分化过程中的调控网络。除了经典的二维蛋白质组学策略外,新兴的 LC-MS shotgun 蛋白质组学分析平台在揭示神经干细胞分化的分子基础方面具有很大的潜力。在这篇综述中,我们强调了无标记 LC-MS 定量神经蛋白质组学的最新进展,它是研究神经分化和功能的新工具,与基于质谱的标记方法相比。还讨论了更常用的蛋白质谱分析策略和神经分化分析的模型系统,以及旨在分析神经特异性细胞器、神经细胞分泌组和特定蛋白相互作用网络的具有挑战性的蛋白质组学方法。

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