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植物环肽是否有作为免疫抑制剂肽的潜力?

Do plant cyclotides have potential as immunosuppressant peptides?

机构信息

Center for Complementary Medicine, Department of Environmental Health Sciences, University Medical Center Freiburg, Breisacher Straße 115B, D-79111 Freiburg, Germany.

出版信息

J Nat Prod. 2012 Feb 24;75(2):167-74. doi: 10.1021/np200722w. Epub 2012 Jan 24.

Abstract

Cyclotides are an abundant and diverse group of ribosomally synthesized plant peptides containing a cyclic cystine-knotted structure that confers them with remarkable stability. They are explored for their distribution in plants, although little is known about the individual peptide content of a single species. Therefore, we chemically analyzed the crude extract of the coffee-family plant Oldenlandia affinis using a rapid peptidomics workflow utilizing nano-LC-MS, peptide reconstruct with database identification, and MS/MS automated sequence analysis to determine its cyclotide content. Biologically, cyclotides are mainly explored for applications in agriculture and drug design; here we report their growth-inhibiting effects on primary cells of the human immune system using biological and immunological end points in cell-based test systems. LC-MS quantification of the active O. affinis plant extract triggered the characterization of the antiproliferative activity of kalata B1, one of the most abundant cyclotides in this extract, on primary activated human lymphocytes. The effect has a defined concentration range and was not due to cytotoxicity, thus opening a new avenue to utilize native and synthetically optimized plant cyclotides for applications in immune-related disorders and as immunosuppressant peptides.

摘要

环肽是一类丰富多样的核糖体合成植物肽,含有环状半胱氨酸结结构,赋予它们显著的稳定性。它们的分布在植物中得到了探索,尽管对于单一物种的单个肽含量知之甚少。因此,我们使用快速肽组学工作流程,利用纳升液相色谱-质谱、数据库鉴定的肽重构和 MS/MS 自动序列分析,对咖啡科植物 Oldenlandia affinis 的粗提物进行了化学分析,以确定其环肽含量。在生物学上,环肽主要用于农业和药物设计的应用;在这里,我们报告了它们在基于细胞的测试系统中使用生物和免疫学终点对人免疫系统原代细胞的生长抑制作用。LC-MS 对活性 O. affinis 植物提取物的定量分析触发了对该提取物中含量最丰富的环肽之一 kalata B1 的抗增殖活性的表征,该活性在原代激活的人淋巴细胞上具有明确的浓度范围,且不是由于细胞毒性,因此为利用天然和合成优化的植物环肽在免疫相关疾病中的应用和作为免疫抑制肽开辟了新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbbe/3399773/4e55403d9d94/ukmss-49012-f0002.jpg

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