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Effect of Phytic Acid and Buffer Ions on Recombinant Human Lysozyme Purification

机译:植酸和缓冲离子对重组人溶菌酶纯化的影响

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Recombinant human lysozyme derived from transgenic rice requires an optimized single chromatography step process to produce an economically viable product for low cost applications. Developing a process with a single chromatography step requires careful consideration of the compatibility of the extraction conditions with the subsequent purification step and optimization of processing conditions. Therefore, identifying and understanding critical rice extract components and their interactions are imperative to designing an optimized process. In our previous work, we found that the conditions which gave the highest purity significantly reduced the cation exchange binding capacity. We speculate that phytic acid was primarily responsible for the unacceptably low capacity. Phytic acid is known to form binary and tertiary complexes with proteins. In addition, our data suggests that phytic acid also affects the extraction efficiency of human lysozyme. In this study, we evaluated alternative extraction andpurification methods in an attempt to reduce the interference of phytic acid on lysozyme purification. Degrading phytic acid in extracts using phytase enzyme and using buffer ions that minimize phytic acid interactions were effective alternative methods.Besides phytic acid, we also found that phosphate salts and extraction buffer ions can affect human lysozyme purification by cation exchange chromatography.
机译:衍生自转基因水稻的重组人溶菌酶需要优化的单色谱法,用于生产用于低成本应用的经济上可行的产品。开发具有单个色谱步骤的方法需要仔细考虑提取条件与随后的纯化步骤和加工条件的优化。因此,识别和理解关键水稻提取组分及其相互作用对设计优化的过程是必不可少的。在我们以前的工作中,我们发现给出了最高纯度的条件显着降低了阳离子交换结合能力。我们推测植物酸主要负责不可接受的低容量。已知植酸形成与蛋白质形成二元和三级复合物。此外,我们的数据表明植物酸还会影响人溶菌酶的提取效率。在该研究中,我们评估了替代提取和纯化方法,试图降低植物酸对溶菌酶纯化的干扰。利用植酸酶降解植物中的植物中的植物酸,并使用最小化植酸相互作用的缓冲离子是有效的替代方法。磷酸盐,磷酸盐和萃取缓冲离子可以通过阳离子交换色谱法影响人溶菌酶纯化。

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