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利用植物生产功能性人白细胞介素 37

Production of functional human interleukin 37 using plants.

机构信息

Department of Biology, University of Western Ontario, London, ON, Canada.

Matthew Mailing Centre for Translational Transplant Studies, London Health Sciences Centre, London, Canada.

出版信息

Plant Cell Rep. 2019 Mar;38(3):391-401. doi: 10.1007/s00299-019-02377-2. Epub 2019 Jan 18.

Abstract

We demonstrate for the first time that a fully bioactive human IL-37, a newly discovered cytokine acting as a fundamental inhibitor of innate immunity, can be recombinantly produced in plant cells. Interleukin 37 (IL-37), a newly discovered member of the interleukin (IL)-1 family of cytokines, plays a pivotal role in limiting innate inflammation and suppressing acquired immune responses, thus holding high potential for treating a wide array of human inflammatory and autoimmune disorders. In this study, we have developed transgenic plants as a novel expression platform for production of human IL-37 (IL-37). Plant transformation vectors synthesizing various forms of the b isoform of IL-37, including an unprocessed full-length precursor form (proIL-37b), a mature form (matIL-37b) and an IL-37 fusion protein in which IL-37b was fused to soybean agglutinin (SBA-IL-37b), have been constructed and introduced into tobacco plants. The expression of all forms of IL-37b was driven by a strong constitutive 35S promoter. Transgenic tobacco plants were generated with each of these constructs. Depending on the form of IL-37b being produced, the expression level of proIL-37b reached approximately 1% of TSP, while matIL-37b expression was substantially lower (0.01% TSP). Fusion to SBA substantially increased the expression of matIL-37b, with the expression level of fusion protein accounting for 1% of TSP. Functional analysis using a cell-based in vitro assay showed that plant-made matIL-37b and proIL-37b are both biologically active, but plant-made matIL-37b exhibited significantly greater biological activity than proIL-37b. These results demonstrate that plants have great potential of being a green bioreactor for low-cost, large-scale production of biologically active IL-37.

摘要

我们首次证明,一种全新的生物活性人白细胞介素 37(IL-37)可以在植物细胞中重组表达,而白细胞介素 37 是一种新发现的细胞因子,作为先天免疫的基本抑制剂发挥作用。白细胞介素 37(IL-37)是白细胞介素(IL)-1 家族中的一种新发现的细胞因子成员,在限制先天炎症和抑制获得性免疫反应方面发挥着关键作用,因此具有治疗广泛的人类炎症和自身免疫性疾病的巨大潜力。在这项研究中,我们开发了转基因植物作为生产人白细胞介素 37(IL-37)的新型表达平台。构建了合成各种形式 b 同种型 IL-37 的植物转化载体,包括未经加工的全长前体形式(proIL-37b)、成熟形式(matIL-37b)和将 IL-37b 融合到大豆凝集素(SBA-IL-37b)中的 IL-37 融合蛋白,并将其引入烟草植物。所有形式的 IL-37b 的表达均由强组成型 35S 启动子驱动。利用这些构建体中的每一个都生成了转基因烟草植物。根据产生的 IL-37b 形式,proIL-37b 的表达水平达到 TSP 的约 1%,而 matIL-37b 的表达水平则显著降低(TSP 的 0.01%)。与 SBA 的融合显著增加了 matIL-37b 的表达,融合蛋白的表达水平占 TSP 的 1%。使用基于细胞的体外测定进行的功能分析表明,植物产生的 matIL-37b 和 proIL-37b 均具有生物活性,但植物产生的 matIL-37b 表现出比 proIL-37b 更高的生物学活性。这些结果表明,植物具有作为低成本、大规模生产生物活性 IL-37 的绿色生物反应器的巨大潜力。

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