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Molecular dynamics characterization of the conformational landscape of small peptides: A series of hands-on collaborative practical sessions for undergraduate students

机译:小肽构象景观的分子动力学表征:面向本科生的一系列动手合作实践课程

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Molecular modelling and simulations are nowadays an integral part of research in areas ranging from physics to chemistry to structural biology, as well as pharmaceutical drug design. This popularity is due to the development of high-performance hardware and of accurate and efficient molecular mechanics algorithms by the scientific community. These improvements are also benefitting scientific education. Molecular simulations, their underlying theory, and their applications are particularly difficult to grasp for undergraduate students. Having hands-on experience with the methods contributes to a better understanding and solidification of the concepts taught during the lectures. To this end, we have created a computer practical class, which has been running for the past five years, composed of several sessions where students characterize the conformational landscape of small peptides using molecular dynamics simulations in order to gain insights on their binding to protein receptors. In this report, we detail the ingredients and recipe necessary to establish and carry out this practical, as well as some of the questions posed to the students and their expected results. Further, we cite some examples of the students' written reports, provide statistics, and share their feedbacks on the structure and execution of the sessions. These sessions were implemented alongside a theoretical molecular modelling course but have also been used successfully as a standalone tutorial during specialized workshops. The availability of the material on our web page also facilitates this integration and dissemination and lends strength to the thesis of open-source science and education. (c) 2016 by The International Union of Biochemistry and Molecular Biology, 44:160-167, 2016.
机译:如今,分子建模和模拟已成为从物理到化学到结构生物学以及药物设计等领域研究不可或缺的一部分。这种普及是由于科学界开发了高性能硬件以及精确有效的分子力学算法。这些改进也有益于科学教育。对于大学生而言,分子模拟,其基础理论及其应用特别困难。具有实践经验的方法有助于更好地理解和巩固讲座中讲授的概念。为此,我们创建了一个计算机实践课程,该课程已经运行了五年,由几节课组成,学生们使用分子动力学模拟来表征小肽的构象态势,以便深入了解其与蛋白质受体的结合。在本报告中,我们详细介绍了建立和实施此实用程序所必需的成分和配方,以及对学生提出的一些问题及其预期结果。此外,我们列举了学生书面报告的一些示例,提供了统计数据,并分享了他们对课程结构和执行情况的反馈。这些会议与理论分子建模课程同时进行,但在专业研讨会上也已成功用作独立教程。我们网页上资料的可用性也促进了这种整合和传播,并增强了开放源代码科学和教育的论点。 (c)2016年,国际生物化学与分子生物学联合会,44:160-167,2016。

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