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Functional expression of a biologically active fragment of soluble gp130 as an ELP-fusion protein in transgenic plants: purification via inverse transition cycling

机译:可溶性gp130的生物学活性片段作为ELP融合蛋白在转基因植物中的功能表达:通过反向过渡循环进行纯化

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摘要

In murine models of Crohn's disease, rheumatoid arthritis and colon cancer, IL-6 (interleukin-6) signalling via the sIL-6R (soluble IL-6 receptor; termed IL-6 trans-signalling) has been shown to promote the pathology associated with these conditions. These detrimental activities can, however, be selectively blocked by soluble forms of the gp130 (glycoprotein 130) receptor. Although sgp130 (soluble gp130) therefore represents a viable therapeutic modality for the treatment of these conditions, the mass manufacture of such biologics is often expensive. The advent of molecular farming has, however, provided an extremely cost-effective strategy for the engineering of recombinant proteins. Here, we describe the expression and production of a biologically active sgp130 variant that is expressed in transgenic tobacco plants as an ELP (elastin-like peptide)-fusion protein (mini-gp130–ELP). Mini-gp130–ELP consists of the first three domains of gp130 (Ig-like domain and cytokine binding module) fused to 100 repeats of ELP. Expression of mini-gp130–ELP did not affect the growth rate or morphology of the transgenic plants, and purification was achieved using inverse transition cycling. This approach led to an overall yield of 141 μg of purified protein per g of fresh leaf weight. The purified mini-gp130–ELP specifically inhibited sIL-6R-mediated trans-signalling as measured by binding to the IL-6–sIL-6R complex and through its ability to block sIL-6R-mediated activation of STAT3 (signal transducer and activator of transcription 3) phosphorylation and proliferation in human hepatoma cells and murine pre-B-cells. Consequently, the present study validates the potential application of molecular farming in transgenic tobacco plants as a strategy for the expression and purification of therapeutically advantageous biologics such as sgp130.
机译:在克罗恩氏病,类风湿性关节炎和结肠癌的鼠模型中,通过sIL-6R(可溶性IL-6受体;称为IL-6反信号)的IL-6(白介素-6)信号已经显示出可促进相关的病理在这些条件下。但是,这些有害的活性可以被可溶性形式的gp130(糖蛋白130)受体选择性地阻断。尽管sgp130(可溶性gp130)因此代表了用于治疗这些疾病的可行治疗方式,但这种生物制剂的批量生产通常很昂贵。然而,分子耕作的出现为重组蛋白的工程化提供了极具成本效益的策略。在这里,我们描述了具有生物活性的sgp130变体的表达和产生,该变体在转基因烟草植物中以ELP(弹性蛋白样肽)融合蛋白(mini-gp130-ELP)表达。 Mini-gp130–ELP由gp130的前三个域(Ig样域和细胞因子结合模块)组成,该域与100个ELP重复序列融合。 mini-gp130–ELP的表达不影响转基因植物的生长速率或形态,并且使用反向过渡循环实现了纯化。这种方法导致每克鲜叶重的总产量为141μg纯化蛋白。纯化的mini-gp130–ELP通过与IL-6–sIL-6R复合物结合并具有阻断sIL-6R介导的STAT3活化的能力(信号转导和激活剂),特异性抑制sIL-6R介导的反式信号转导。转录的过程3)人肝癌细胞和鼠前B细胞的磷酸化和增殖。因此,本研究验证了分子农业在转基因烟草植物中的潜在应用,作为表达和纯化治疗性生物制剂(如sgp130)的策略。

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