Clinical Research Division, Fred Hutchinson Cancer Research Center, Seattle, WA, USA.
Basic Sciences Division, Fred Hutchinson Cancer Research Center, Seattle, WA, USA.
Nat Struct Mol Biol. 2018 Mar;25(3):270-278. doi: 10.1038/s41594-018-0033-9. Epub 2018 Feb 26.
Peptides folded through interwoven disulfides display extreme biochemical properties and unique medicinal potential. However, their exploitation has been hampered by the limited amounts isolatable from natural sources and the expense of chemical synthesis. We developed reliable biological methods for high-throughput expression, screening and large-scale production of these peptides: 46 were successfully produced in multimilligram quantities, and >600 more were deemed expressible through stringent screening criteria. Many showed extreme resistance to temperature, proteolysis and/or reduction, and all displayed inhibitory activity against at least 1 of 20 ion channels tested, thus confirming their biological functionality. Crystal structures of 12 confirmed proper cystine topology and the utility of crystallography to study these molecules but also highlighted the need for rational classification. Previous categorization attempts have focused on limited subsets featuring distinct motifs. Here we present a global definition, classification and analysis of >700 structures of cystine-dense peptides, providing a unifying framework for these molecules.
通过交错二硫键折叠的肽具有极端的生化特性和独特的药用潜力。然而,由于从天然来源可分离的数量有限,以及化学合成的成本高昂,它们的开发受到了限制。我们开发了可靠的生物学方法,用于这些肽的高通量表达、筛选和大规模生产:46 种肽成功地以毫克级的量生产,并且通过严格的筛选标准,还有超过 600 种被认为可表达。许多肽表现出对温度、蛋白水解和/或还原的极端抗性,并且所有肽都显示出对至少 20 种测试离子通道中的 1 种的抑制活性,从而证实了它们的生物学功能。12 个晶体结构证实了正确的半胱氨酸拓扑结构,并且晶体学对于研究这些分子是有用的,但也突出了需要进行合理分类的必要性。以前的分类尝试集中在具有独特基序的有限子集上。在这里,我们提出了对 700 多种胱氨酸密集肽的结构的全面定义、分类和分析,为这些分子提供了一个统一的框架。