首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Discovery of Linear Cyclotides in Monocot Plant Panicum laxum of Poaceae Family Provides New Insights into Evolution and Distribution of Cyclotides in Plants
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Discovery of Linear Cyclotides in Monocot Plant Panicum laxum of Poaceae Family Provides New Insights into Evolution and Distribution of Cyclotides in Plants

机译:在禾本科单子叶植物Panicum laxum中发现线性环氧化物为植物中环氧化物的进化和分布提供了新见解

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摘要

Cyclotides are disulfide-rich macrocyclic peptides that display a wide range of bioactivities and represent an important group of plant defense peptide biologics. A few linear variants of cyclotides have recently been identified. They share a high sequence homology with cyclotides but are biosynthetically unable to cyclize from their precursors. All hitherto reported cyclotides and their acyclic variants were isolated from dicot plants of the Rubiaceae, Violaceae, Cucurbitaceae, and recently the Fabaceae and Solanaceae families. Although several cyclotide-like genes in the Poaceae family were known from the data mining of the National Center for Biotechnology Information (NCBI) nucleotide database, their expression at the protein level has yet to be proven. Here, we report the discovery and characterization of nine novel linear cyclotides, designated as panitides L1–9, from the Panicum laxum of the Poaceae family and provide the first evidence of linear cyclotides at the protein level in a monocot plant. Disulfide mapping of panitide L3 showed that it possesses a cystine knot arrangement similar to cyclotides. Several panitides were shown to be active against Escherichia coli and cytotoxic to HeLa cells. They also displayed a high stability against heat and proteolytic degradation. Oxidative folding of the disulfide-reduced panitide L1 showed that it can fold efficiently into its native form. The presence of linear cyclotides in both dicots and monocots suggests their ancient origin and existence before the divergence of these two groups of flowering plants. Moreover, the Poaceae family contains many important food crops, and our discovery may open up new avenues of research using cyclotides and their acyclic variants in crop protection.
机译:环氧化物是富含二硫键的大环肽,具有广泛的生物活性,是植物防御肽生物学的重要组成部分。最近已经鉴定出环氧化物的一些线性变体。它们与环核苷酸具有高度的序列同源性,但是在生物合成上不能从其前体环化。迄今报道的所有环氧化物及其无环变体均从茜草科,堇菜科,葫芦科以及最近的豆科和茄科双子叶植物中分离得到。尽管从国家生物技术信息中心(NCBI)核苷酸数据库的数据挖掘中知道了禾本科的几个类环肽样基因,但它们在蛋白质水平的表达尚待证实。在这里,我们报道了禾本科植物Panicum laxum的9种新型线性环氧化物的发现和表征,命名为panitides L1-9,并为单子叶植物中蛋白质水平的线性环氧化物提供了第一个证据。 Panitide L3的二硫键作图表明,它具有类似于环氧化物的胱氨酸结排列。已显示几种Panideides对大肠杆菌具有活性,并对HeLa细胞具有细胞毒性。它们还显示出对热和蛋白水解降解的高稳定性。二硫化物还原的Panitide L1的氧化折叠表明它可以有效折叠成其天然形式。在双子叶植物和单子叶植物中都存在线性环氧化物,这表明它们的古老起源和存在是在这两类开花植物分化之前。此外,禾本科家族还包含许多重要的粮食作物,我们的发现可能会为在作物保护中使用环线虫及其无环变异体开辟新的研究途径。

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