National Botanical Research Institute, Council of Scientific and Industrial Research, Rana Pratap Marg, Lucknow 226001, India.
J Biotechnol. 2010 Mar;146(1-2):1-8. doi: 10.1016/j.jbiotec.2010.01.013. Epub 2010 Jan 25.
Over expression of lectin genes in E. coli often gives inclusion bodies that are solubilised to characterize lectins. We made N-terminal fusion of the Allium sativum leaf agglutinin (ASAL) with SUMO (small ubiquitin related modifier) peptide. The SUMO peptide allowed expression of the recombinant lectin in E. coli, predominantly in soluble form. The soluble fusion protein could be purified by immobilized metal affinity column (IMAC), followed by size exclusion chromatography. The SUMO protease failed to cleave the SUMO peptide from ASAL. This may be due to steric hindrance caused by the homodimer structure of the chimeric ASAL. Some properties like dimerization, haemagglutination and insecticidal properties of the recombinant SUMO-ASAL fusion protein were comparable to the plant derived native lectin. However, glycan array analysis revealed that the carbohydrate binding specificity of the recombinant SUMO-ASAL was altered. Further, the fusion protein was not toxic to E. coli (native ASAL exhibited toxicity). The recombinant lectin was more thermo-labile as compared to the native lectin. Three important findings of this study are: (1) sugar specificity of ASAL can be altered by amino-terminal fusion; (2) anti-E. coli activity of ASAL can be eliminated by N-terminal SUMO fusion and (3) SUMO-ASAL may be a preferred candidate insecticidal protein for the development of transgenic plants.
在大肠杆菌中过度表达凝集素基因通常会产生包含体,这些包含体可以溶解以表征凝集素。我们将大蒜叶凝集素(ASAL)的 N 端与 SUMO(小泛素相关修饰物)肽融合。SUMO 肽允许重组凝集素在大肠杆菌中表达,主要以可溶形式存在。可溶性融合蛋白可通过固定化金属亲和层析(IMAC)进行纯化,然后通过分子筛层析进一步纯化。SUMO 蛋白酶未能从 ASAL 中切割 SUMO 肽。这可能是由于嵌合 ASAL 同源二聚体结构引起的空间位阻所致。重组 SUMO-ASAL 融合蛋白的一些性质,如二聚化、血凝和杀虫活性,与植物来源的天然凝集素相当。然而,糖芯片分析显示,重组 SUMO-ASAL 的碳水化合物结合特异性发生了改变。此外,融合蛋白对大肠杆菌没有毒性(天然 ASAL 表现出毒性)。与天然凝集素相比,重组凝集素的热稳定性较低。本研究的三个重要发现是:(1)ASAL 的糖特异性可以通过氨基末端融合改变;(2)ASAL 的抗大肠杆菌活性可以通过 N 端 SUMO 融合消除;(3)SUMO-ASAL 可能是转基因植物开发的首选杀虫蛋白候选物。