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Improved cell disruption of Pichia pastoris utilizing aminopropyl magnesium phyllosilicate (AMP) clay

机译:使用氨基丙基页硅酸镁(AMP)粘土改善巴斯德毕赤酵母的细胞破坏

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摘要

An efficient method for Pichia cell disruption that employs an aminopropyl magnesium phyllosilicate (AMP) clay-assisted glass beads mill is presented. AMP clay is functionalized nanocomposite resembling the talc parent structure Si8Mg6O20(OH)(4) that has been proven to permeate the bacterial membrane and cause cell lysis. The recombinant capsid protein of cowpea chlorotic mottle virus (CCMV) expressed in Pichia pastoris GS115 was used as demonstration system for their ability of self-assembly into icosahedral virus-like particles (VLPs). The total protein concentration reached 4.24 mg/ml after 4 min treatment by glass beads mill combined with 0.2 % AMP clay, which was 11.2 % higher compared to glass beads mill only and the time was half shortened. The stability of purified CCMV VLPs illustrated AMP clay had no influence on virus assembly process. Considering the tiny amount added and simple approach of AMP clay, it could be a reliable method for yeast cell disruption.
机译:提出了一种有效的破坏毕赤酵母细胞的方法,该方法采用了氨基丙基页硅酸镁(AMP)黏土辅助玻璃珠磨机。 AMP粘土是功能化的纳米复合材料,类似于滑石母体结构Si8Mg6O20(OH)(4),已被证明可渗透细菌膜并引起细胞裂解。利用巴斯德毕赤酵母GS115表达的cow豆绿斑驳斑驳病毒(CCMV)重组衣壳蛋白作为展示系统,具有自组装成二十面体病毒样颗粒(VLP)的能力。用玻璃珠磨与0.2%AMP粘土混合处理4分钟后,总蛋白浓度达到4.24 mg / ml,比仅玻璃珠磨高11.2%,时间缩短了一半。纯化的CCMV VLP的稳定性说明AMP粘土对病毒装配过程没有影响。考虑到添加的微量和AMP粘土的简单方法,它可能是一种可靠的破坏酵母细胞的方法。

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