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在植物细胞中生产重组阳离子α-螺旋抗菌肽会诱导内质网衍生的蛋白体的形成。

The production of recombinant cationic α-helical antimicrobial peptides in plant cells induces the formation of protein bodies derived from the endoplasmic reticulum.

机构信息

Institute for Food and Agricultural Technology (INTEA), University of Girona, Girona, Spain.

出版信息

Plant Biotechnol J. 2014 Jan;12(1):81-92. doi: 10.1111/pbi.12119. Epub 2013 Sep 17.

Abstract

Synthetic linear antimicrobial peptides with cationic α-helical structures, such as BP100, are valuable as novel therapeutics and preservatives. However, they tend to be toxic when expressed at high levels as recombinant peptides in plants, and they can be difficult to detect and isolate from complex plant tissues because they are strongly cationic and display low extinction coefficient and extremely limited immunogenicity. We therefore expressed BP100 with a C-terminal tag which preserved its antimicrobial activity and demonstrated significant accumulation in plant cells. We used a fluorescent tag to trace BP100 following transiently expression in Nicotiana benthamiana leaves and showed that it accumulated in large vesicles derived from the endoplasmic reticulum (ER) along with typical ER luminal proteins. Interestingly, the formation of these vesicles was induced by BP100. Similar vesicles formed in stably transformed Arabidopsis thaliana seedlings, but the recombinant peptide was toxic to the host during latter developmental stages. This was avoided by selecting active BP100 derivatives based on their low haemolytic activity even though the selected peptides remained toxic to plant cells when applied exogenously at high doses. Using this strategy, we generated transgenic rice lines producing active BP100 derivatives with a yield of up to 0.5% total soluble protein.

摘要

具有阳离子α-螺旋结构的合成线性抗菌肽,如 BP100,作为新型治疗剂和防腐剂具有很高的价值。然而,当它们作为重组肽在植物中高水平表达时,往往具有毒性,并且由于它们是强阳离子的,并且表现出低消光系数和极其有限的免疫原性,因此很难从复杂的植物组织中检测和分离出来。因此,我们用一个保留其抗菌活性的 C 端标签表达 BP100,并证明其在植物细胞中有明显的积累。我们使用荧光标记物来追踪 BP100 在 Nicotiana benthamiana 叶片中的瞬时表达,并表明它与典型的内质网腔蛋白一起在内质网(ER)衍生的大囊泡中积累。有趣的是,这些囊泡的形成是由 BP100 诱导的。类似的囊泡在稳定转化的拟南芥幼苗中形成,但重组肽在宿主后期发育阶段对宿主有毒。通过基于其低溶血活性选择活性 BP100 衍生物来避免这种情况,尽管选择的肽在高剂量外用时仍对植物细胞有毒。使用这种策略,我们生成了产生具有高达 0.5%总可溶性蛋白的活性 BP100 衍生物的转基因水稻品系。

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