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Efficient single step chromatographic purification of recombinant human antithrombin (rhAT) from Saccharomyces cerevisiae

机译:酿酒酵母中重组人抗凝血酶(rhAT)的高效一步色谱纯化

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摘要

Antithrombin (AT) is a glycoprotein that inactivates the several physiological target enzymes of coagulation system. The effect of purification strategies plays a crucial role in getting maximum recovery of yield, purity and biological activity of recombinant human antithrombin (rhAT). In the present work, the task of purifying rhAT from Saccharomyces cerevisiae BY4741 has been carried out using two different approaches such as cross flow filtration (CFF) system and chromatography methods. In the first approach, the protein was concentrated and partially purified through CFF to achieve maximum recovery yield and purity of 87 and 94 %, respectively. In the second approach, purification involved a single step chromatography with various types of ion exchange and size exclusion resins to analyze the maximum rhAT recovery yield and purity. From the experimental results, it has been observed that the size exclusion chromatography (SEC) technique with Superose 12 matrix was suitable for the purification of rhAT and achieved the maximum recovery yield and purity of 51 and 97 %, respectively. Further, to acquire a high recovery yield and purity of rhAT, the effect of various chromatographic conditions such as mobile phase, mobile phase pH, flow rate, sample volume and sample concentration were also investigated. Under the optimal chromatographic conditions, rhAT was significantly recovered and purified in a single step with maximum recovery yield, purity and biological activity of 67, 99 % and 410 IU/L, respectively. Based on these investigations, it was concluded that SEC with Superose 12 matrix was a more suitable and a potential method for the purification of rhAT.
机译:抗凝血酶(AT)是一种糖蛋白,可以使凝血系统的几种生理靶酶失活。纯化策略的效果在最大程度地提高重组人抗凝血酶(rhAT)的产量,纯度和生物学活性方面起着至关重要的作用。在目前的工作中,已经使用两种不同的方法,例如错流过滤(CFF)系统和色谱法,来从酿酒酵母BY4741中纯化rhAT。在第一种方法中,将蛋白质浓缩并通过CFF部分纯化,以实现最大回收率和纯度分别为87%和94%。在第二种方法中,纯化涉及使用各种类型的离子交换和尺寸排阻树脂进行的一步色谱法,以分析最大的rhAT回收率和纯度。从实验结果可以看出,采用Superose 12基质的尺寸排阻色谱(SEC)技术适用于rhAT的纯化,并分别实现了51%和97%的最大回收率和纯度。此外,为了获得高回收率的rhAT纯度,还研究了各种色谱条件(如流动相,流动相pH,流速,样品量和样品浓度)的影响。在最佳色谱条件下,rhAT一步纯化并纯化,最大回收率,纯度和生物活性分别为67、99%和410IU / L。基于这些研究,可以得出结论,带有Superose 12基质的SEC是一种更合适的潜在纯化rhAT的方法。

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