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首页> 外文期刊>Amino acids >Incorporation of post-translational modified amino acids as an approach to increase both chemical and biological diversity of conotoxins and conopeptides
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Incorporation of post-translational modified amino acids as an approach to increase both chemical and biological diversity of conotoxins and conopeptides

机译:整合翻译后修饰氨基酸作为增加芋螺毒素和肽的化学和生物学多样性的方法

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摘要

Bioactive peptides from Conus venom contain a natural abundance of post-translational modifications that affect their chemical diversity, structural stability, and neuroactive properties. These modifications have continually presented hurdles in their identification and characterization. Early endeavors in their analysis relied on classical biochemical techniques that have led to the progressive development and use of novel proteomic-based approaches. The critical importance of these post-translationally modified amino acids and their specific assignment cannot be understated, having impact on their folding, pharmacological selectivity, and potency. Such modifications at an amino acid level may also provide additional insight into the advancement of conopeptide drugs in the quest for precise pharmacological targeting. To achieve this end, a concerted effort between the classical and novel approaches is needed to completely elucidate the role of post-translational modifications in conopeptide structure and dynamics. This paper provides a reflection in the advancements observed in dealing with numerous and multiple post-translationally modified amino acids within conotoxins and conopeptides and provides a summary of the current techniques used in their identification.
机译:来自Conus毒液的生物活性肽包含自然丰富的翻译后修饰,影响其化学多样性,结构稳定性和神经活性。这些修改在识别和表征方面一直存在障碍。他们在分析中的早期努力依赖于经典的生化技术,这些技术已导致逐步开发和使用基于蛋白质组学的新方法。这些翻译后修饰的氨基酸及其具体分配的至关重要性不可低估,这会影响其折叠,药理选择性和效能。在氨基酸水平上的此类修饰还可在寻求精确药理学靶向中提供对肽蛋白药物进展的更多了解。为了达到这个目的,需要在经典方法和新颖方法之间共同努力,以彻底阐明翻译后修饰在conopeptept结构和动力学中的作用。这篇论文反映了在处理芋螺毒素和芋螺肽中大量和多个翻译后修饰的氨基酸时所观察到的进展,并概述了目前用于鉴定它们的技术。

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