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解码神经肽的复杂性:从进化角度推进从无脊椎动物到脊椎动物的神经生物学见解。

Decoding Neuropeptide Complexity: Advancing Neurobiological Insights from Invertebrates to Vertebrates through Evolutionary Perspectives.

作者信息

Fields Lauren, Dang Tina C, Tran Vu Ngoc Huong, Ibarra Angel E, Li Lingjun

机构信息

Department of Chemistry, University of Wisconsin-Madison, 1101 University Avenue, Madison, Wisconsin 53706, United States.

School of Pharmacy, University of Wisconsin-Madison, 777 Highland Avenue, Madison, Wisconsin 53705, United States.

出版信息

ACS Chem Neurosci. 2025 May 7;16(9):1662-1679. doi: 10.1021/acschemneuro.5c00053. Epub 2025 Apr 22.

Abstract

Neuropeptides are vital signaling molecules involved in neural communication, hormonal regulation, and stress response across diverse taxa. Despite their critical roles, neuropeptide research remains challenging due to their low abundance, complex post-translational modifications (PTMs), and dynamic expression patterns. Mass spectrometry (MS)-based neuropeptidomics has revolutionized peptide identification and quantification, enabling the high-throughput characterization of neuropeptides and their PTMs. However, the complexity of vertebrate neural networks poses significant challenges for functional studies. Invertebrate models, such as , , and , offer simplified neural circuits, well-characterized systems, and experimental tools for elucidating the functional roles of neuropeptides. These models have revealed conserved neuropeptide families, including allatostatins, RFamides, and tachykinin-related peptides, whose vertebrate homologues regulate analogous physiological functions. Recent advancements in MS techniques, including ion mobility spectrometry and MALDI MS imaging, have further enhanced the spatial and temporal resolution of neuropeptide analysis, allowing for insights into peptide signaling systems. Invertebrate neuropeptide research not only expands our understanding of conserved neuropeptide functions but also informs translational applications including the development of peptide-based therapeutics. This review highlights the utility of invertebrate models in neuropeptide discovery, emphasizing their contributions to uncovering fundamental biological principles and their relevance to vertebrate systems.

摘要

神经肽是重要的信号分子,参与不同生物类群中的神经通讯、激素调节和应激反应。尽管它们具有关键作用,但由于其丰度低、复杂的翻译后修饰(PTM)和动态表达模式,神经肽研究仍然具有挑战性。基于质谱(MS)的神经肽组学彻底改变了肽的鉴定和定量,能够对神经肽及其PTM进行高通量表征。然而,脊椎动物神经网络的复杂性给功能研究带来了重大挑战。诸如果蝇、秀丽隐杆线虫和海兔等无脊椎动物模型提供了简化的神经回路、特征明确的系统以及用于阐明神经肽功能作用的实验工具。这些模型揭示了保守的神经肽家族,包括抑咽侧体素、RF酰胺和速激肽相关肽,其脊椎动物同源物调节类似的生理功能。包括离子淌度光谱法和基质辅助激光解吸电离质谱成像在内的MS技术的最新进展进一步提高了神经肽分析的空间和时间分辨率,从而有助于深入了解肽信号系统。无脊椎动物神经肽研究不仅扩展了我们对保守神经肽功能的理解,还为包括基于肽的治疗药物开发在内的转化应用提供了信息。本综述强调了无脊椎动物模型在神经肽发现中的实用性,强调了它们在揭示基本生物学原理方面的贡献以及与脊椎动物系统的相关性。

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