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叶绿体基因组中高表达 HIV 进入抑制剂 griffithsin 并在干燥烟叶中保持生物活性。

High-level expression of the HIV entry inhibitor griffithsin from the plastid genome and retention of biological activity in dried tobacco leaves.

机构信息

Max-Planck-Institut für Molekulare Pflanzenphysiologie, Am Mühlenberg 1, 14476, Potsdam-Golm, Germany.

Leibniz Universität Hannover, Herrenhäuser Straße 2, 30419, Hannover, Germany.

出版信息

Plant Mol Biol. 2018 Jul;97(4-5):357-370. doi: 10.1007/s11103-018-0744-7. Epub 2018 Jun 9.

Abstract

The potent anti-HIV microbicide griffithsin was expressed to high levels in tobacco chloroplasts, enabling efficient purification from both fresh and dried biomass, thus providing storable material for inexpensive production and scale-up on demand. The global HIV epidemic continues to grow, with 1.8 million new infections occurring per year. In the absence of a cure and an AIDS vaccine, there is a pressing need to prevent new infections in order to curb the disease. Topical microbicides that block viral entry into human cells can potentially prevent HIV infection. The antiviral lectin griffithsin has been identified as a highly potent inhibitor of HIV entry into human cells. Here we have explored the possibility to use transplastomic plants as an inexpensive production platform for griffithsin. We show that griffithsin accumulates in stably transformed tobacco chloroplasts to up to 5% of the total soluble protein of the plant. Griffithsin can be easily purified from leaf material and shows similarly high virus neutralization activity as griffithsin protein recombinantly expressed in bacteria. We also show that dried tobacco provides a storable source material for griffithsin purification, thus enabling quick scale-up of production on demand.

摘要

强效抗 HIV 微杀菌剂 griffithsin 在烟草叶绿体中高水平表达,可从新鲜和干燥的生物质中高效纯化,从而为按需廉价生产和扩大规模提供可储存的材料。全球 HIV 疫情仍在持续蔓延,每年新增感染病例达 180 万例。在缺乏治愈方法和艾滋病疫苗的情况下,迫切需要防止新的感染,以遏制这种疾病。可阻止病毒进入人体细胞的局部杀菌剂可能预防 HIV 感染。抗病毒凝集素 griffithsin 已被确定为一种高效抑制 HIV 进入人体细胞的抑制剂。在这里,我们探索了利用转基因植物作为低成本生产 griffithsin 的平台的可能性。我们表明,griffithsin 在稳定转化的烟草叶绿体中积累到植物总可溶性蛋白的 5%。Griffithsin 可从叶片材料中轻松纯化,并显示出与在细菌中重组表达的 griffithsin 蛋白相似的高病毒中和活性。我们还表明,干燥的烟草为 griffithsin 纯化提供了可储存的原料,从而能够按需快速扩大生产规模。

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