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首页> 外文期刊>Food Technology and Biotechnology >Microbial anchoring systems for cell-surface display of lipolytic enzymes. (Special Issue: Contains selected manuscripts dedicated to the memory of long-time Editor-in-Chief Prof. Pavao Mildner.)
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Microbial anchoring systems for cell-surface display of lipolytic enzymes. (Special Issue: Contains selected manuscripts dedicated to the memory of long-time Editor-in-Chief Prof. Pavao Mildner.)

机译:用于脂解酶细胞表面展示的微生物锚固系统。 (特刊:包含一些精选的手稿,以纪念长期担任总编辑的帕瓦·米尔德纳教授。)

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摘要

Studies of microbial cell envelopes and particularly cell surface proteins and mechanisms of their localization brought about new biotechnological applications of the gained knowledge in surface display of homologous and heterologous proteins. By fusing surface proteins or their anchoring domains with different proteins of interest, their so-called genetic immobilization is achieved. Hybrid proteins are engineered in a way that they are expressed in the host cells, secreted to the cell surface and incorporated into the wall/envelope moiety. In this way, laborious and often detrimental procedure of chemical immobilization of the protein is avoided by letting the cells do the whole procedure. Both bacterial and yeast cells have been used for this purpose and a number of potential biotechnological applications of surface-displayed proteins have been reported. Among the most frequently used passenger proteins are lipolytic enzymes, due to their great technological significance and numerous important applications. In this review, our current knowledge on mechanisms and molecular systems for surface display of lipolytic enzymes on bacterial and yeast cell surfaces is summarized.
机译:对微生物细胞包膜,特别是细胞表面蛋白及其定位机理的研究,使获得的知识在同源和异源蛋白的表面展示中获得了新的生物技术应用。通过将表面蛋白或其锚定域与不同的目标蛋白融合,可以实现其所谓的遗传固定化。杂交蛋白经过改造后可以在宿主细胞中表达,分泌到细胞表面并掺入壁/包膜部分。这样,通过让细胞完成整个过程,避免了化学固定蛋白质的费力且通常有害的过程。细菌和酵母细胞都已用于此目的,并且已经报道了表面展示蛋白的许多潜在的生物技术应用。脂解酶是最常用的过客蛋白,因为它们具有重大的技术意义和许多重要的应用。在这篇综述中,我们对细菌和酵母细胞表面脂解酶表面展示的机理和分子系统的当前知识进行了总结。

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