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Laboratory exercise for studying the morphology of heat-denatured and amyloid aggregates of lysozyme by atomic force microscopy

机译:用原子力显微镜研究溶菌酶热变性和淀粉样蛋白聚集体形态的实验室练习

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To facilitate learning advanced instrumental techniques, essential tools for visualizing biomaterials, a simple and versatile laboratory exercise demonstrating the use of Atomic Force Microscopy (AFM) in biomedical applications was developed. In this experiment, the morphology of heat-denatured and amyloid-type aggregates formed from a low-cost and well-characterized model protein, hen egg white lysozyme (HEWL), are compared. Structural differences between the amorphous and ordered particles are quantified using ImageJ for the analysis of AFM images as a postlaboratory assignment. The laboratory exercise allows the direct observation of changes in the protein structure and helps students to understand the operation of AFM, as well as protein folding and misfolding related to many physiological and pathological processes. The described protocol stands alone, but also fits well into a larger module on protein structure and function or microscopic techniques as it can be linked easily to existing laboratory exercises on these topics. It can be easily adapted to the upper level undergraduate laboratory courses with limited lab hours as well as graduate level courses to improve students' research skills. (c) 2017 by The International Union of Biochemistry and Molecular Biology, 46(2):162-171, 2018.
机译:为了促进学习先进的乐器技术,开发了用于可视化生物材料的基本工具,简单而通用的实验室练习,证明在生物医学应用中使用原子力显微镜(AFM)。在该实验中,比较了由低成本和表征良好的模型蛋白,母鸡蛋白溶菌酶(HEWL)形成的热变性和淀粉样蛋白型聚集体的形态。无定形和有序粒子之间的结构差异使用imagej定量用于分析AFM图像作为后制造理分配。实验室运动允许直接观察蛋白质结构的变化,并帮助学生了解AFM的操作,以及与许多生理和病理过程相关的蛋白质折叠和错误折叠。所描述的协议单独站立,但也适合蛋白质结构和功能或微观技术的更大模块,因为它可以容易地与现有的实验室练习相关联。它可以很容易地适应上层本科实验室课程,其实验室数量有限,以及研究生级别课程,以提高学生的研究技能。 (c)2017年由国际生物化学和分子生物学联盟,46(2):162-171,2018。

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