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首页> 外文期刊>Applied Microbiology and Biotechnology >A Lactococcus lactis expression vector set with multiple affinity tags to facilitate isolation and direct labeling of heterologous secreted proteins
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A Lactococcus lactis expression vector set with multiple affinity tags to facilitate isolation and direct labeling of heterologous secreted proteins

机译:用多个亲和标记设定的乳球菌乳酸乳酸乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳杆菌表达载体,以促进异源分泌蛋白的分离和直接标记

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The gram-positive bacterium Lactococcus lactis is a useful host for extracellular protein production. A main advantage of L. lactis over other bacterial expression systems is that lactococcal cells display low levels of autolysis and proteolysis. Previously, we developed a set of vectors for nisin-inducible extracellular production of N- or C-terminally hexa-histidine (His(6))-tagged proteins. The present study was aimed at expanding our portfolio of L. lactis expression vectors for protein purification and site-specific labeling. Specifically, we present two new groups of vectors allowing N- or C-terminal provision of proteins with a Strep-tag II or AVI-tag. Vectors for AVI-tagging encode an additional His(6)-tag for protein purification. Another set of vectors allows removal of N-terminal Strep- or His(6)-tags from expressed proteins with the tobacco etch virus protease. Two possible applications of the developed vectors are presented. First, we show that Strep-tagged LytM of Staphylococcus aureus in the growth medium of L. lactis can be directly bound to microtiter plates coated with an affinity reagent and used for enzyme-linked immunosorbent assays. Second, we show that the AVI-tagged Sle1 protein from S. aureus produced in L. lactis can be directly biotinylated and fluorescently labeled. The fluorescently labeled Sle1 was successfully applied for S. aureus re-binding studies, allowing subcellular localization by fluorescence microscopy. In conclusion, we have developed a set of expression vectors that enhances the versatility of L. lactis as a system for production of proteins with tags that can be used for affinity purification and site-specific protein labeling.
机译:革兰氏阳性乳杆菌乳酸乳酸乳糖是细胞外蛋白质产生的有用宿主。 L. Lactis在其他细菌表达系统上的主要优点是乳球菌细胞显示出低水平的自分解和蛋白水解。以前,我们开发了一组用于Nisin-indible细胞外产生的N-或C-末端六胞蛋白(他(6))标记的蛋白质的载体。本研究旨在扩大我们对蛋白质纯化和位点特异性标记的L. Lactis表达载体的产品组合。具体而言,我们提出了两组新的载体组,允许N-或C末端提供蛋白质的蛋白质II或AVI-TAG。 AVI标签的载体编码额外的他(6)-TAG进行蛋白质纯化。另一组载体允许通过用烟草蚀刻病毒蛋白酶从表达的蛋白质中去除N-末端串或他的(6)-TAG。提出了发达矢量的两种可能的应用。首先,我们表明,在L.乳酸的生长培养基中的葡萄球菌的串标记标签Lytm可以直接与涂有亲和试剂的微量滴定板结合,并用于酶联免疫吸附试验。其次,我们表明,在L.乳酸盐中产生的金黄色葡萄球菌的AVI标记的SLE1蛋白可以直接生物素化和荧光标记。荧光标记的SLE1已成功地应用于金黄色葡萄球菌重新结合研究,允许荧光显微镜的亚细胞定位。总之,我们开发了一组表达载体,其增强了L.乳酸的多功能性作为用于生产蛋白质的系统,该标签可用于亲和纯化和特异性蛋白质标记。

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