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首页> 外文期刊>ACS Chemical Biology >Discovery of cyclotides in the Fabaceae plant family provides new insights into the cyclization, evolution, and distribution of circular proteins
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Discovery of cyclotides in the Fabaceae plant family provides new insights into the cyclization, evolution, and distribution of circular proteins

机译:Fabaceae植物家族中环氧化物的发现为环状蛋白的环化,进化和分布提供了新见解

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Cyclotides are plant proteins whose defining struc-tural features are a head-to-tail cyclized backbone and three interlocking disulfide bonds, which in combination are known as a cyclic cystine knot. This unique structural motif confers cyclotides with exceptional resistance to proteolysis. Their endogenous function is thought to be as plant defense agents, associated with their insecticidal and larval growth-inhibitory properties. However, in addition, an array of pharmaceutically relevant biological activities has been ascribed to cyclotides, including anti-HIV, anthelmintic, uterotonic, and antimicrobial effects. So far, >150 cyclotides have been elucidated from members of the Rubiaceae, Violaceae, and Cucurbitaceae plant families, but their wider distribution among other plant families remains unclear. Clitoria ternatea (Butterfly pea) is a member of plant family Fabaceae and through its usage in traditional medicine to aid childbirth bears similarity to Oldenlandia affinis, from which many cyclotides have been isolated. Using a combination of nanospray and matrix-assisted laser desorption ionization-time-of-flight (MALDI-TOF) analyses, we examined seed extracts of C. ternatea and discovered cyclotides in the Fabaceae, the third-largest family of flowering plants. We characterized 12 novel cyclotides, thus expanding knowledge of cyclotide distribution and evolution within the plant kingdom. The discovery of cyclotides containing novel sequence motifs near the in planta cyclization site has provided new insights into cyclotide biosynthesis. In particular, MS analyses of the novel cyclotides from C. ternatea suggest that Asn to Asp variants at the cyclization site are more common than previously recognized. Moreover, this study provides impetus for the examination of other economically and agriculturally significant species within Fabaceae, now the largest plant family from which cyclotides have been described.
机译:环肽是植物蛋白,其定义的结构特征是从头到尾的环化骨架和三个互锁的二硫键,它们合起来被称为环状胱氨酸结。这种独特的结构基序赋予环类化合物以出色的抗蛋白水解性。它们的内源性功能被认为是植物防御剂,与其杀虫和幼虫的生长抑制特性有关。但是,此外,一系列与药物相关的生物学活性也归因于环氧化物,包括抗HIV,驱虫,子宫收缩和抗微生物作用。到目前为止,已从茜草科,堇菜科和葫芦科植物科的成员中阐明了> 150种环化剂,但尚不清楚它们在其他植物科中的广泛分布。 Clitoria ternatea(蝴蝶豌豆)是Fabaceae植物家族的一员,通过在传统医学中的使用来辅助分娩,它与Oldenlandia affinis具有相似之处,从中分离出许多环氧化物。通过结合使用纳米喷雾和基质辅助激光解吸电离飞行时间(MALDI-TOF)分析,我们检查了C. ternatea的种子提取物,并在Fabaceae(开花植物的第三大家族)中发现了环氧化物。我们表征了12种新型环磷酰胺,从而扩展了植物界中环磷酰胺分布和进化的知识。在植物体内环化位点附近发现含有新型序列基序的环氧化物,为环氧化物的生物合成提供了新见识。尤其是,对来自C. ternatea的新型环化物的MS分析表明,环化位点的Asn至Asp变体比以前公认的更为普遍。此外,这项研究为检查豆科(Fabaceae)内其他具有经济和农业意义的物种提供了动力,而豆科现在已是最大的植物科,其中已描述了环氧化物。

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