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Discovery of a Linear Cyclotide from the Bracelet Subfamily and Its Disulfide Mapping by Top-down Mass Spectrometry

机译:从手链亚家族中发现线性环氧化物及其通过自上而下的质谱图进行二硫键定位

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摘要

Cyclotides are heat-stable macrocyclic peptides from plants that display a wide range of biological activities. They can be divided into two subfamilies: Möbius or bracelet, based on the presence or absence of a cis-proline residue in loop 5, respectively. Currently, over 150 cyclotides have been discovered, but only four linear variants of the Möbius subfamily have been hitherto isolated. In this study, we report the discovery of two novel cyclotides, hedyotide B1 and hedyotide B2, from the aerial parts of Hedyotis biflora. Hedyotide B1 has a cyclic cystine knot structure typical of cyclotides. Interestingly, hedyotide B2 possesses a linear backbone and is the first linear representative of the bracelet subfamily. Disulfide mapping of hedyotide B2 by a top-down MS/MS approach showed that it shares the same knotted disulfide arrangement as conventional cyclotides. Its unfolding pathway also showed that the penetrating disulfide bond Cys III–VI is the most stable disulfide linkage. Cloning of the gene encoding hedyotide B2 revealed a nonsense mutation that introduces a premature stop codon at the conserved Asn residue position, which is essential for an end-to-end backbone ligation. Biophysical characterization showed that hedyotide B2 was more susceptible to exopeptidase degradation as compared with hedyotide B1. Hedyotide B2 was also inactive against all four tested bacterial strains, whereas hedyotide B1 was bactericidal to Escherichia coli and Streptococcus salivarius at low micromolar concentration. Our results provide a deeper understanding of the structures, functions, and biosynthetic processing of cyclotides and uncyclotides in plants.
机译:环肽是来自植物的热稳定的大环肽,具有广泛的生物活性。根据第5环中是否存在顺式脯氨酸残基,可以将它们分为两个亚家族:Möbius或手镯。目前,已经发现了150个以上的环线虫,但是迄今为止,仅分离了莫比乌斯亚家族的四个线性变体。在这项研究中,我们报告了从双花萱草的空中部分发现了两个新型环氧化物,即七肽B1和七肽B2。七肽B1具有典型的环糊精的环状胱氨酸结结构。有趣的是,七肽B2具有线性骨架,是手链亚家族的第一个线性代表。通过自上而下的MS / MS方法对七肽B2进行二硫键作图,结果表明它与常规环氧化物具有相同的打结二硫键排列。它的展开路径还表明,穿透的二硫键Cys III-VI是最稳定的二硫键。编码七肽B2的基因的克隆揭示了一个无意义的突变,该突变在保守的Asn残基位置引入了过早的终止密码子,这对于端到端骨架连接至关重要。生物物理特征表明,与七肽B1相比,七肽B2对肽肽酶的降解更敏感。七肽B2对所有四个测试的细菌菌株也无活性,而七肽B1在低微摩尔浓度下对大肠杆菌和唾液链球菌具有杀菌作用。我们的结果提供了对植物中环氧化物和环环化合物的结构,功能和生物合成过程的更深入了解。

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