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首页> 外文期刊>Iranian Journal of Biotechnology >Optimization of EnBase Fed-Batch Cultivation to Improve Soluble Fraction Ratio of α-Luffin Ribosome Inactivating Protein
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Optimization of EnBase Fed-Batch Cultivation to Improve Soluble Fraction Ratio of α-Luffin Ribosome Inactivating Protein

机译:优化EnBase补料分批培养以提高α-松脂核糖体失活蛋白的可溶性比例

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Background: The increase of the protein expression via ribosomal manipulation is one of the suggested cellular mechanisms involved in EnBase fed-batch mode of cultivation. However, this system has not been implemented for cytotoxic proteins.Objectives: Here, the expression pattern of α-Luffin, a ribosome inactivation protein (RIP) with an innate toxicity, was investigated in EnBase system and the effect of low temperature cultivation on the increase of α-Luffin solubility was determined.Materials and Methods: The encoding cDNA for mature α-Luffin was synthesized and subcloned into pET28a plasmid under the control of T7 promoter. The E. coli expression yield in EnBase? Flo fed-batch system was compared with traditional batch mode at two temperatures: 25 °C and 30 °C. Sampling was performed at several time intervals and solubility of recombinant-protein was checked on SDS-PAGE in pellet and supernatant samples. The purification of recombinant protein was performed by Ni-NTA column.Results: In fed-batch cultivation mode, the early incubation time was desirable at 30 °C whereas the maximum amount of soluble α-Luffin was achieved from the extended protein synthesis period (12 and 24h post induction) at 25 °C.Conclusions: Our founding showed that EnBase had a greater efficacy in producing higher soluble protein ratios compared to batch cultivation growth rate, however for cytotoxic proteins, incubation temperature and time need to be optimized. Owing to the advantages of natural toxins from RIP family for producing anticancer immune-conjugates, well optimization of this protein expression is of importance regarding industrial aspects. The optimized condition proposed here is promising in terms of large scale soluble production of α-Luffin without the need for refolding.
机译:背景:通过核糖体操作增加蛋白表达是EnBase分批补料培养模式中涉及的细胞机制之一。然而,该系统尚未用于细胞毒性蛋白。目的:在此,研究了在EnBase系统中研究了具有先天毒性的核糖体失活蛋白(RIP)α-Luffin的表达模式,以及低温培养对这种蛋白的影响。材料和方法:合成成熟α-Luffin的编码cDNA,并在T7启动子的控制下亚克隆到pET28a质粒中。 EnBase中的大肠杆菌表达量?将Flo补料分批系统与传统分批模式在25°C和30°C的两个温度下进行了比较。在几个时间间隔进行采样,并在沉淀和上清液样品中的SDS-PAGE上检查重组蛋白的溶解度。结果:在分批补料培养模式下,理想的培养时间是在30°C下进行,而可溶的α-Luffin的最大量则是通过延长蛋白质合成时间来实现的(结论):我们的发现表明,与分批培养生长速率相比,EnBase在产生更高的可溶性蛋白质比例方面具有更高的功效,但是对于细胞毒性蛋白质,需要优化孵育温度和时间,这是我们的发现表明。由于来自RIP家族的天然毒素在产生抗癌免疫缀合物方面的优势,因此就工业方面而言,对该蛋白表达的良好优化非常重要。就大规模可溶性生产α-Luffin而无需重新折叠而言,本文提出的优化条件是有希望的。

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