Primo Emiliano D, Otero Lisandro H, Ruiz Francisco, Klinke Sebastián, Giordano Walter
Departamento de Biología Molecular, Universidad Nacional de Río Cuarto, Río Cuarto, Córdoba, RN36 601, Argentina.
Fundación Instituto Leloir, IIBBA-CONICET, and Plataforma Argentina de Biología Estructural y Metabolómica PLABEM, Av. Patricias Argentinas 435, Buenos Aires, Argentina.
Biochem Mol Biol Educ. 2018 Jan;46(1):83-90. doi: 10.1002/bmb.21092. Epub 2017 Nov 13.
The bacterial cell wall, a structural unit of peptidoglycan polymer comprised of glycan strands consisting of a repeating disaccharide motif [N-acetylglucosamine (NAG) and N-acetylmuramylpentapeptide (NAM pentapeptide)], encases bacteria and provides structural integrity and protection. Lysozymes are enzymes that break down the bacterial cell wall and disrupt the bacterial life cycle by cleaving the linkage between the NAG and NAM carbohydrates. Lab exercises focused on the effects of lysozyme on the bacterial cell wall are frequently incorporated in biochemistry classes designed for undergraduate students in diverse fields as biology, microbiology, chemistry, agronomy, medicine, and veterinary medicine. Such exercises typically do not include structural data. We describe here a sequence of computer tasks designed to illustrate and reinforce both physiological and structural concepts involved in lysozyme effects on the bacterial cell-wall structure. This lab class usually lasts 3.5 hours. First, the instructor presents introductory concepts of the bacterial cell wall and the effect of lysozyme on its structure. Then, students are taught to use computer modeling to visualize the three-dimensional structure of a lysozyme in complex with bacterial cell-wall fragments. Finally, the lysozyme inhibitory effect on a bacterial culture is optionally proposed as a simple microbiological assay. The computer lab exercises described here give students a realistic understanding of the disruptive effect of lysozymes on the bacterial cell wall, a crucial component in bacterial survival. © 2017 by The International Union of Biochemistry and Molecular Biology, 46(1):83-90, 2018.
细菌细胞壁是由聚糖链组成的肽聚糖聚合物的结构单元,聚糖链由重复的二糖基序(N - 乙酰葡糖胺(NAG)和N - 乙酰胞壁酰五肽(NAM五肽))构成,它包裹着细菌并提供结构完整性和保护。溶菌酶是通过裂解NAG和NAM碳水化合物之间的连接来分解细菌细胞壁并破坏细菌生命周期的酶。专注于溶菌酶对细菌细胞壁影响的实验练习经常被纳入为生物学、微生物学、化学、农学、医学和兽医学等不同领域的本科生设计的生物化学课程中。此类练习通常不包括结构数据。我们在此描述了一系列计算机任务,旨在阐释和强化溶菌酶对细菌细胞壁结构影响所涉及的生理和结构概念。这个实验课程通常持续3.5小时。首先,教师介绍细菌细胞壁的入门概念以及溶菌酶对其结构的影响。然后,教导学生使用计算机建模来可视化与细菌细胞壁片段结合的溶菌酶的三维结构。最后,可选择提出溶菌酶对细菌培养物的抑制作用作为一种简单的微生物测定方法。这里描述的计算机实验练习让学生切实了解溶菌酶对细菌细胞壁的破坏作用,而细菌细胞壁是细菌生存的关键组成部分。© 2017年由国际生物化学与分子生物学联盟,46(1):83 - 90, 2018。