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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Neuropeptidomics Mass Spectrometry Reveals Signaling Networks Generated by Distinct Protease Pathways in Human Systems
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Neuropeptidomics Mass Spectrometry Reveals Signaling Networks Generated by Distinct Protease Pathways in Human Systems

机译:神经肽组学质谱揭示了人类系统中不同蛋白酶途径产生的信号网络

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摘要

Neuropeptides regulate intercellular signaling as neurotransmitters of the central and peripheral nervous systems, and as peptide hormones in the endocrine system. Diverse neuropeptides of distinct primary sequences of various lengths, often with post-translational modifications, coordinate and integrate regulation of physiological functions. Mass spectrometry-based analysis of the diverse neuropeptide structures in neuropeptidomics research is necessary to define the full complement of neuropeptide signaling molecules. Human neuropeptidomics has notable importance in defining normal and dysfunctional neuropeptide signaling in human health and disease. Neuropeptidomics has great potential for expansion in translational research opportunities for defining neuropeptide mechanisms of human diseases, providing novel neuropeptide drug targets for drug discovery, and monitoring neuropeptides as biomarkers of drug responses. In consideration of the high impact of human neuropeptidomics for health, an observed gap in this discipline is the few published articles in human neuropeptidomics compared with, for example, human proteomics and related mass spectrometry disciplines. Focus on human neuropeptidomics will advance new knowledge of the complex neuropeptide signaling networks participating in the fine control of neuroendocrine systems. This commentary review article discusses several human neuropeptidomics accomplishments that illustrate the rapidly expanding diversity of neuropeptides generated by protease processing of pro-neuropeptide precursors occurring within the secretory vesicle proteome. Of particular interest is the finding that human-specific cathepsin V participates in producing enkephalin and likely other neuropeptides, indicating unique proteolytic mechanisms for generating human neuropeptides. The field of human neuropeptidomics has great promise to solve new mechanisms in disease conditions, leading to new drug targets and therapeutic agents for human diseases.
机译:神经肽调节细胞间信号传导,作为中枢神经系统和周围神经系统的神经递质,以及内分泌系统中的肽激素。通常具有翻译后修饰的不同长度的不同初级序列的不同神经肽可协调和整合生理功能的调节。基于质谱的神经肽组学研究中各种神经肽结构的分析对于定义神经肽信号分子的完整互补是必要的。人类神经肽组学在定义人类健康和疾病中正常和功能异常的神经肽信号传导方面具有重要意义。神经肽组学在定义人类疾病的神经肽机制,为药物发现提供新的神经肽药物靶标以及监测神经肽作为药物反应的生物标志物的转化研究机会方面具有巨大的潜力。考虑到人类神经肽组学对健康的巨大影响,与例如人类蛋白质组学和相关的质谱学学科相比,该学科中观察到的差距是在人类神经肽组学上发表的文章很少。专注于人类神经肽组学将促进参与神经内分泌系统精细控制的复杂神经肽信号网络的新知识。这篇评论性评论文章讨论了几种人类神经肽组学的成就,这些成就说明了由分泌性囊泡蛋白质组中发生的前神经肽前体的蛋白酶处理所产生的神经肽的多样性迅速扩展。特别感兴趣的是发现人特异性组织蛋白酶V参与脑啡肽和其他可能的神经肽的产生,这表明产生人神经肽的独特蛋白水解机制。人类神经肽组学领域有望解决疾病中的新机制,从而为人类疾病带来新的药物靶点和治疗剂。

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