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Teaching Foundational Topics and Scientific Skills in Biochemistry Within the Conceptual Framework of HIV Protease

机译:在HIV蛋白酶的概念框架内教授生物化学的基础主题和科学技能

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摘要

HIV protease has served as a model protein for understanding protein structure, enzyme kinetics, structure-based drug design, and protein evolution. Inhibitors of HIV protease are also an essential part of effective HIV/AIDS treatment and have provided great societal benefits. The broad applications for HIV protease and its inhibitors make it a perfect framework for integrating foundational topics in biochemistry around a big picture scientific and societal issue. Herein, I describe a series of classroom exercises that integrate foundational topics in biochemistry around the structure, biology, and therapeutic inhibition of HIV protease. These exercises center on foundational topics in biochemistry including thermodynamics, acid/base properties, protein structure, ligand binding, and enzymatic catalysis. The exercises also incorporate regular student practice of scientific skills including analysis of primary literature, evaluation of scientific data, and presentation of technical scientific arguments. Through the exercises, students also gain experience accessing computational biochemical resources such as the protein data bank, Pro-teopedia, and protein visualization software. As these HIV centered exercises cover foundational topics common to all first semester biochemistry courses, these exercises should appeal to a broad audience of undergraduate students and should be readily integrated into a variety of teaching styles and classroom sizes.
机译:HIV蛋白酶已作为模型蛋白质,用于了解蛋白质结构,酶动力学,基于结构的药物设计和蛋白质进化。 HIV蛋白酶抑制剂也是有效HIV / AIDS治疗的重要组成部分,并提供了巨大的社会效益。 HIV蛋白酶及其抑制剂的广泛应用使其成为围绕生物科学和社会大问题整合生物化学基础主题的理想框架。在这里,我描述了一系列课堂练习,这些练习结合了围绕HIV蛋白酶的结构,生物学和治疗抑制作用的生物化学基础主题。这些练习集中于生物化学的基础主题,包括热力学,酸/碱性质,蛋白质结构,配体结合和酶催化。练习还包括常规的学生科学技能练习,包括对主要文献的分析,对科学数据的评估以及技术性科学论证的介绍。通过练习,学生还将获得访问计算生化资源的经验,例如蛋白质数据库,Pro-teopedia和蛋白质可视化软件。由于这些以HIV为中心的练习涵盖了所有第一学期生物化学课程共有的基础主题,因此这些练习应吸引广大的本科生,并应易于融入各种教学风格和课堂规模。

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