质谱法增强了神经肽的发现和治疗。

IF 19.3 1区 医学 Q1 PHARMACOLOGY & PHARMACY Pharmacological Reviews Pub Date : 2022-07-01 DOI:10.1124/pharmrev.121.000423
Krishna D B Anapindi, Elena V Romanova, James W Checco, Jonathan V Sweedler
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引用次数: 4

摘要

20世纪初胰岛素的发现开启了多肽作为激素和神经调节剂以及其他调节作用的研究时代。从最原始的生物到最进化的生物,所有生物体中都存在这些必需的基因产物,它们携带重要的生物信息,协调复杂的生理和行为;它们的失调与多种疾病有关。至少有30种神经肽信号系统的进化起源可以追溯到原口动物和后口动物的共同祖先。利用相关的动物模型和现代技术,我们可以获得对同源和旁系内源性肽的机制洞察,并将这些知识转化为医学相关的见解和新的治疗方法。医学和基础科学的突破性进展影响着今天如何定义信号肽。哺乳动物体内超过100种内源性肽的精确机制通路现已被发现,并为多种药物开发管道奠定了基础。肽生物制剂由于其独特的特异性和生物活性、缺乏毒性代谢物和最小的不良相互作用而成为有价值的药物。本综述概述了使神经肽发现和表征成为可能的现代技术,并强调了制药工业正在采用的相关动物模型中神经肽研究从自然界获得的经验教训。最后,我们简要概述了有效开发多肽作为药物的方法/策略。意义声明:神经肽是一类重要的细胞信号分子,参与维持一系列生理功能。自发现胰岛素活性以来,已有100多种生物活性肽和肽类似物被用作治疗药物。由于这些复杂的分子不容易从基因组中预测,并且它们的活性可以随着细微的化学修饰而改变,质谱(MS)极大地增强了肽的发现和表征。本文综述了基于质谱的研究对治疗肽开发的贡献。
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Mass Spectrometry Approaches Empowering Neuropeptide Discovery and Therapeutics.

The discovery of insulin in the early 1900s ushered in the era of research related to peptides acting as hormones and neuromodulators, among other regulatory roles. These essential gene products are found in all organisms, from the most primitive to the most evolved, and carry important biologic information that coordinates complex physiology and behavior; their misregulation has been implicated in a variety of diseases. The evolutionary origins of at least 30 neuropeptide signaling systems have been traced to the common ancestor of protostomes and deuterostomes. With the use of relevant animal models and modern technologies, we can gain mechanistic insight into orthologous and paralogous endogenous peptides and translate that knowledge into medically relevant insights and new treatments. Groundbreaking advances in medicine and basic science influence how signaling peptides are defined today. The precise mechanistic pathways for over 100 endogenous peptides in mammals are now known and have laid the foundation for multiple drug development pipelines. Peptide biologics have become valuable drugs due to their unique specificity and biologic activity, lack of toxic metabolites, and minimal undesirable interactions. This review outlines modern technologies that enable neuropeptide discovery and characterization, and highlights lessons from nature made possible by neuropeptide research in relevant animal models that is being adopted by the pharmaceutical industry. We conclude with a brief overview of approaches/strategies for effective development of peptides as drugs. SIGNIFICANCE STATEMENT: Neuropeptides, an important class of cell-cell signaling molecules, are involved in maintaining a range of physiological functions. Since the discovery of insulin's activity, over 100 bioactive peptides and peptide analogs have been used as therapeutics. Because these are complex molecules not easily predicted from a genome and their activity can change with subtle chemical modifications, mass spectrometry (MS) has significantly empowered peptide discovery and characterization. This review highlights contributions of MS-based research towards the development of therapeutic peptides.

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来源期刊
Pharmacological Reviews
Pharmacological Reviews 医学-药学
CiteScore
34.70
自引率
0.50%
发文量
40
期刊介绍: Pharmacological Reviews is a highly popular and well-received journal that has a long and rich history of success. It was first published in 1949 and is currently published bimonthly online by the American Society for Pharmacology and Experimental Therapeutics. The journal is indexed or abstracted by various databases, including Biological Abstracts, BIOSIS Previews Database, Biosciences Information Service, Current Contents/Life Sciences, EMBASE/Excerpta Medica, Index Medicus, Index to Scientific Reviews, Medical Documentation Service, Reference Update, Research Alerts, Science Citation Index, and SciSearch. Pharmacological Reviews offers comprehensive reviews of new pharmacological fields and is able to stay up-to-date with published content. Overall, it is highly regarded by scholars.
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