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A novel suite of cyclotides from Viola odorata: sequence variation and the implications for structure function and stability

机译:一套来自中提琴的新型环氧化物:序列变异及其对结构功能和稳定性的影响

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摘要

Cyclotides are a fascinating family of plant-derived peptides characterized by their head-to-tail cyclized backbone and knotted arrangement of three disulfide bonds. This conserved structural architecture, termed the CCK (cyclic cystine knot), is responsible for their exceptional resistance to thermal, chemical and enzymatic degradation. Cyclotides have a variety of biological activities, but their insecticidal activities suggest that their primary function is in plant defence. In the present study, we determined the cyclotide content of the sweet violet Viola odorata, a member of the Violaceae family. We identified 30 cyclotides from the aerial parts and roots of this plant, 13 of which are novel sequences. The new sequences provide information about the natural diversity of cyclotides and the role of particular residues in defining structure and function. As many of the biological activities of cyclotides appear to be associated with membrane interactions, we used haemolytic activity as a marker of bioactivity for a selection of the new cyclotides. The new cyclotides were tested for their ability to resist proteolysis by a range of enzymes and, in common with other cyclotides, were completely resistant to trypsin, pepsin and thermolysin. The results show that while biological activity varies with the sequence, the proteolytic stability of the framework does not, and appears to be an inherent feature of the cyclotide framework. The structure of one of the new cyclotides, cycloviolacin O14, was determined and shown to contain the CCK motif. This study confirms that cyclotides may be regarded as a natural combinatorial template that displays a variety of peptide epitopes most likely targeted to a range of plant pests and pathogens.
机译:环肽是植物引人入胜的肽的一个引人入胜的家族,其特征在于它们的头到尾环化的骨架和三个二硫键的打结排列。这种保守的结构体系称为CCK(环状胱氨酸结),是由于它们对热,化学和酶促降解具有出色的抵抗力。环磷酰胺具有多种生物活性,但其杀虫活性表明它们的主要功能是防御植物。在本研究中,我们确定了紫罗兰科植物堇菜紫罗兰的甜味中提琴中的环化物含量。我们从该植物的地上部分和根部鉴定出30个环环素,其中13个是新序列。新的序列提供了有关环核苷酸天然多样性以及特定残基在定义结构和功能中的作用的信息。由于环磷酰胺的许多生物活性似乎与膜相互作用有关,因此我们使用溶血活性作为生物活性的标志物来选择新的环磷酰胺。测试了新的环类化合物对多种酶的抵抗蛋白水解的能力,并且与其他环类化合物一样,它们对胰蛋白酶,胃蛋白酶和嗜热菌素完全具有抗性。结果表明,尽管生物活性随序列而变化,但是框架的蛋白水解稳定性没有变化,并且似乎是环化物框架的固有特征。确定了一种新的环化物,即环紫胶O14的结构,并显示其含有CCK基序。这项研究证实,环肽可以被视为天然的组合模板,可以显示出各种肽表位,最有可能针对一系列植物害虫和病原体。

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