Instituto de Agrobiotecnología (UPNA-CSIC-Gobierno de Navarra), Pamplona, Spain.
Plant Biotechnol J. 2011 Aug;9(6):639-50. doi: 10.1111/j.1467-7652.2011.00608.x. Epub 2011 Mar 23.
Thioredoxins (Trxs) are small ubiquitous disulphide proteins widely known to enhance expression and solubility of recombinant proteins in microbial expression systems. Given the common evolutionary heritage of chloroplasts and bacteria, we attempted to analyse whether plastid Trxs could also act as modulators of recombinant protein expression in transgenic chloroplasts. For that purpose, two tobacco Trxs (m and f) with different phylogenetic origins were assessed. Using plastid transformation, we assayed two strategies: the fusion and the co-expression of Trxs with human serum albumin (HSA), which was previously observed to form large protein bodies in tobacco chloroplasts. Our results indicate that both Trxs behave similarly as regards HSA accumulation, although they act differently when fused or co-expressed with HSA. Trxs-HSA fusions markedly increased the final yield of HSA (up to 26% of total protein) when compared with control lines that only expressed HSA; this increase was mainly caused by higher HSA stability of the fused proteins. However, the fusion strategy failed to prevent the formation of protein bodies within chloroplasts. On the other hand, the co-expression constructs gave rise to an absence of large protein bodies although no more soluble HSA was accumulated. In these plants, electron micrographs showed HSA and Trxs co-localization in small protein bodies with fibrillar texture, suggesting a possible influence of Trxs on HSA solubilization. Moreover, the in vitro chaperone activity of Trx m and f was demonstrated, which supports the hypothesis of a direct relationship between Trx presence and HSA aggregates solubilization in plants co-expressing both proteins.
硫氧还蛋白(Trx)是一种广泛存在的小分子量二硫键蛋白,它可以提高微生物表达系统中重组蛋白的表达和可溶性。鉴于叶绿体和细菌具有共同的进化起源,我们试图分析质体 Trx 是否也可以作为转基因叶绿体中重组蛋白表达的调节剂。为此,我们评估了两种具有不同进化起源的烟草 Trx(m 和 f)。通过质体转化,我们采用了两种策略:Trx 与人血清白蛋白(HSA)融合和共表达,先前的研究表明 HSA 在烟草叶绿体中形成大的蛋白体。我们的结果表明,两种 Trx 在 HSA 积累方面表现相似,尽管它们与 HSA 融合或共表达时的作用不同。Trx-HSA 融合体与仅表达 HSA 的对照系相比,明显增加了 HSA 的最终产量(高达总蛋白的 26%);这种增加主要是由于融合蛋白的 HSA 稳定性更高。然而,融合策略未能防止蛋白体在叶绿体中的形成。另一方面,共表达构建体导致没有大的蛋白体形成,尽管没有积累更多的可溶性 HSA。在这些植物中,电子显微镜显示 HSA 和 Trx 在具有纤维状纹理的小蛋白体中共同定位,表明 Trx 可能对 HSA 的可溶性有影响。此外,还证明了 Trx m 和 f 的体外伴侣活性,这支持了在共表达两种蛋白的植物中,Trx 存在与 HSA 聚集体可溶性之间存在直接关系的假设。