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通过质谱法进行神经肽定量分析:推动生物学发现的方法进展

Quantitative neuropeptide analysis by mass spectrometry: advancing methodologies for biological discovery.

作者信息

Ibarra Angel Erbey, Wu Wenxin, Zhang Haoran, Li Lingjun

机构信息

Department of Chemistry, University of Wisconsin-Madison Madison WI 53706 USA

School of Pharmacy, University of Wisconsin-Madison 777 Highland Ave Madison WI 53705 USA +1-608-262-5345 +1-608-265-8491.

出版信息

RSC Chem Biol. 2025 Jun 12. doi: 10.1039/d5cb00082c.

Abstract

Neuropeptides are critical endogenous signaling molecules involved in a wide range of biological processes, including neurotransmission, hormonal regulation, immune responses, and stress management. Despite their importance, the field of neuropeptide research has been historically hampered by significant technical challenges. These include their low abundance in biological systems, diverse and complex post-translational modifications, dynamic expression patterns, and susceptibility to degradation. As such, traditional proteomics approaches often fall short of accurately characterizing neuropeptides, underscoring the need for specialized methodologies to unlock their biological and translational potential. This review evaluates state-of-the-art quantitative mass spectrometry (MS)-based peptidomics, emphasizing their impact on neuropeptide analysis. We highlight how strategies in label-free and label-based quantitation, tandem MS acquisition, and mass spectrometry imaging provide unprecedented sensitivity and throughput for capturing the landscape of neuropeptides and their modifications. Importantly, the review bridges technological innovation with practical applications, highlighting how these approaches have been utilized to uncover novel neuropeptides and elucidate their roles in systems biology and disease pathways.

摘要

神经肽是关键的内源性信号分子,参与广泛的生物过程,包括神经传递、激素调节、免疫反应和应激管理。尽管它们很重要,但神经肽研究领域在历史上一直受到重大技术挑战的阻碍。这些挑战包括它们在生物系统中的低丰度、多样且复杂的翻译后修饰、动态表达模式以及易降解性。因此,传统的蛋白质组学方法往往无法准确表征神经肽,这凸显了需要专门的方法来挖掘它们的生物学和转化潜力。本综述评估了基于定量质谱(MS)的肽组学的最新技术,强调了它们对神经肽分析的影响。我们强调了无标记和基于标记的定量、串联质谱采集以及质谱成像策略如何为捕捉神经肽及其修饰的全貌提供了前所未有的灵敏度和通量。重要的是,本综述将技术创新与实际应用联系起来,突出了这些方法如何被用于发现新型神经肽并阐明它们在系统生物学和疾病途径中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a83/12309275/d13efaf6939d/d5cb00082c-f1.jpg

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