Rodríguez-Rubio Lorena, Gutiérrez Diana, Donovan David M, Martínez Beatriz, Rodríguez Ana, García Pilar
a DairySafe Group, Department of Technology and Biotechnology of Dairy Products , Instituto de Productos Lácteos de Asturias (IPLA-CSIC) , Villaviciosa , Asturias , Spain and.
b Animal Biosciences and Biotechnology Laboratory , BARC, ARS, USDA , Beltsville , MD , USA.
Crit Rev Biotechnol. 2016;36(3):542-52. doi: 10.3109/07388551.2014.993587. Epub 2015 Jan 21.
Most bacteriophages encode two types of cell wall lytic proteins: endolysins (lysins) and virion-associated peptidoglycan hydrolases. Both enzymes have the ability to degrade the peptidoglycan of Gram-positive bacteria resulting in cell lysis when they are applied externally. Bacteriophage lytic proteins have a demonstrated potential in treating animal models of infectious diseases. There has also been an increase in the study of these lytic proteins for their application in areas such as food safety, pathogen detection/diagnosis, surfaces disinfection, vaccine development and nanotechnology. This review summarizes the more recent developments, outlines the full potential of these proteins to develop new biotechnological tools and discusses the feasibility of these proposals.
内溶素(溶素)和病毒体相关肽聚糖水解酶。当将这两种酶外部应用时,它们都有能力降解革兰氏阳性细菌的肽聚糖,导致细胞裂解。噬菌体裂解蛋白在治疗传染病动物模型方面已显示出潜力。对这些裂解蛋白在食品安全、病原体检测/诊断、表面消毒、疫苗开发和纳米技术等领域的应用研究也有所增加。本综述总结了最新进展,概述了这些蛋白开发新型生物技术工具的全部潜力,并讨论了这些提议的可行性。