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活 Lactococcus lactis 细胞中蛋白质的控制释放。

Controlled release of protein from viable Lactococcus lactis cells.

机构信息

Integrated Biology of the Gastrointestinal Tract, Norwich Research Park, Norwich, United Kingdom.

出版信息

Appl Environ Microbiol. 2010 May;76(9):3026-31. doi: 10.1128/AEM.00021-10. Epub 2010 Mar 12.

Abstract

Overexpression of the lactococcal CsiA protein affects the cell wall integrity of growing cells and leads to leakage of intracellular material. This property was optimized and exploited for the targeted release of biologically active compounds into the extracellular environment, thereby providing a new delivery system for bacterial proteins and peptides. The effects of different levels of CsiA expression on the leakage of endogenous lactate dehydrogenase and nucleic acids were measured and related to the impact of CsiA expression on Lactococcus lactis cell viability and growth. A leakage phenotype was obtained from cells expressing both recombinant and nonrecombinant forms of CsiA. As proof of principle, we demonstrated that CsiA promotes the efficient release of the heterologous Listeria bacteriophage endolysin LM4 in its active form. Under optimized conditions, native and heterologous active-molecule release is possible without affecting cell viability. The ability of CsiA to release intracellular material by controlled lysis without the requirement for an external lytic agent provides a technology for the control of both the extent of lysis and its timing. Taken together, these results demonstrate the potential of this novel approach for applications including product recovery in industrial fermentations, food processing, and medical therapy.

摘要

乳球菌 CsiA 蛋白的过表达会影响生长细胞的细胞壁完整性,导致细胞内物质泄漏。这一特性被优化并应用于将生物活性化合物靶向释放到细胞外环境中,从而为细菌蛋白和肽类提供了一种新的输送系统。测量了不同水平的 CsiA 表达对细胞内源性乳酸脱氢酶和核酸泄漏的影响,并将其与 CsiA 表达对乳球菌活力和生长的影响相关联。从表达重组和非重组形式 CsiA 的细胞中获得了泄漏表型。作为原理验证,我们证明了 CsiA 促进了异源李斯特菌噬菌体溶菌酶 LM4 以其活性形式的有效释放。在优化条件下,无需外部溶菌剂即可实现天然和异源活性分子的释放,而不影响细胞活力。CsiA 通过控制裂解释放细胞内物质而无需外部裂解剂的能力为裂解的程度和时间的控制提供了一种技术。总之,这些结果表明,这种新方法在包括工业发酵、食品加工和医疗治疗中的产物回收在内的应用中具有潜力。

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