State Key Laboratory of Virology, College of Life Sciences, Wuhan University, Wuhan, 430072, People's Republic of China.
Appl Microbiol Biotechnol. 2016 Nov;100(22):9407-9421. doi: 10.1007/s00253-016-7842-8. Epub 2016 Sep 20.
Microbial cell surface display has attracted greater attention than ever and has numerous potential applications in biotechnology. With the safety and probiotic properties, lactic acid bacteria (LAB) have been used widely in food and industrial applications. In order to circumvent using genetically modified microorganisms which face low public acceptance and severe regulatory scrutiny, surface-engineered LAB without genetical modification are more preferred. According to the way used to obtain the fusion protein containing the passenger molecule and anchoring domain, the genetic or chemical approaches can be used to construct these surface-engineered LAB. In addition to the viable wide-type LAB, non-living bacterial-like particles (BLP) can be attached by these fusion proteins added from outside. Compared to the living LAB, BLP have a higher binding capacity and less anticarrier response. Mucosal vaccines are the predominant application of these surface-engineered LAB with no genetical modification.
微生物细胞表面展示技术比以往任何时候都受到更多关注,在生物技术领域具有众多潜在应用。由于具有安全性和益生菌特性,乳酸菌(LAB)已被广泛应用于食品和工业领域。为了避免使用公众接受度低且受到严格监管审查的基因修饰微生物,人们更倾向于使用未经基因修饰的表面工程化 LAB。根据获得含有载体分子和锚定结构域的融合蛋白的方式,可以使用遗传或化学方法来构建这些表面工程化 LAB。除了有活性的野生型 LAB 之外,还可以通过从外部添加这些融合蛋白来附着无生命的类似细菌的颗粒(BLP)。与有活性的 LAB 相比,BLP 具有更高的结合能力和更少的抗载体反应。黏膜疫苗是这些未经基因修饰的表面工程化 LAB 的主要应用形式。