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首页> 外文期刊>The Journal of biological chemistry >Discovery and Characterization of Novel Cyclotides Originated from Chimeric Precursors Consisting of Albumin-1 Chain a and Cyclotide Domains in the Fabaceae Family
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Discovery and Characterization of Novel Cyclotides Originated from Chimeric Precursors Consisting of Albumin-1 Chain a and Cyclotide Domains in the Fabaceae Family

机译:新型循环酯的发现和表征源自嵌合前体,由Fabaceae家族中的白蛋白-1链A和旋肽域组成

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The tropical plant Clitoria ternatea is a member of the Fabaceae family well known for its medicinal values. Heat extraction of C. ternatea revealed that the bioactive fractions contained heat-stable cysteine-rich peptides (CRPs). The CRP family of A1b (Albumin-1 chain b/leginsulins), which is a linear cystine knot CRP, has been shown to present abundantly in the Fabaceae. In contrast, the cyclotide family, which also belongs to the cystine knot CRPs but with a cyclic structure, is commonly found in the Rubiaceae, Violaceae, and Cucurbitaceae families. In this study, we report the discovery of a panel of 15 heat-stable CRPs, of which 12 sequences (cliotide T1–T12) are novel. We show unambiguously that the cliotides are cyclotides and not A1bs, as determined by their sequence homology, disulfide connectivity, and membrane active properties indicated by their antimicrobial activities against Escherichia coli and cytotoxicities to HeLa cells. We also show that cliotides are prevalent in C. ternatea and are found in every plant tissue examined, including flowers, seeds, and nodules. In addition, we demonstrate that their precursors are chimeras, half from cyclotide and the other half from Albumin-1, with the cyclotide domain displacing the A1b domain in the precursor. Their chimeric structures likely originate from either horizontal gene transfer or convergent evolution in plant nuclear genomes, which are exceedingly rare events. Such atypical genetic arrangement also implies a different mechanism of biosynthetic processing of cyclotides in the Fabaceae and provides new understanding of their evolution in plants.
机译:热带植物Clitoria Ternatea是伪造物体家族的成员,其药物价值是众所周知的。 C. Ternatea的热萃取显示,生物活性级分含有热稳定的半胱氨酸富含肽(CRP)。 A1B(白蛋白-1链B / leginsilins)的CRP系列是线性胱氨酸结CRP的,已被证明在FABACEAE中呈现大量。相反,循环族家族,其属于胱氨酸结束但具有循环结构,通常在Rubiaceae,Violaceae和Cucurbitaceae家族中发现。在这项研究中,我们报告了一个41个热稳定CRP的发现,其中12个序列(酸脱硫T1-T12)是新的。我们明确地展示了脱硅酸酯,而不是通过其序列同源性,二硫化物连接和由其抗菌性大肠杆菌和细胞毒性指示的序列同源性,二硫化物连接和膜活性特性来确定的循环剂。我们还表明,辛酸族在C. Ternatea中普遍,并被发现在每个植物组织中,包括花,种子和结节。此外,我们证明它们的前体是嵌合体,从循环苷和来自白蛋白-1的另一个半部的一半,用循环结构域移位前体中的A1B结构域。它们的嵌合结构可能来自植物核基因组的水平基因转移或会聚演化,这是非常罕见的事件。这种非典型遗传布置还暗示了对Fabaceae中旋流剂的生物合成处理的不同机制,并对他们在植物中的演变提供了新的认识。

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