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A Molecular Genetics Laboratory Course Applying Bioinformatics and Cell Biology in the Context of Original Research

机译:在原始研究中应用生物信息学和细胞生物学的分子遗传学实验室课程

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Research based laboratory courses have been shown to stimulate student interest in science and to improve scientific skills. We describe here a project developed for a semester-long research-based laboratory course that accompanies a genetics lecture course. The project was designed to allow students to become familiar with the use of bioinformatics tools and molecular biology and genetic approaches while carrying out original research. Students were required to present their hypotheses, experiments, and results in a comprehensive lab report. The lab project concerned the yeast casein kinase 1 (CK1) protein kinase Yck2. CK1 protein kinases are present in all organisms and are well conserved in primary structure. These enzymes display sequence features that differ from other protein kinase subfamilies. Students identified such sequences within the CK1 subfamily, chose a sequence to analyze, used available structural data to determine possible functions for their sequences, and designed mutations within the sequences. After generating the mutant alleles, these were expressed in yeast and tested for function by using two growth assays. The student response to the project was positive, both in terms of knowledge and skills increases and interest in research, and several students are continuing the analysis of mutant alleles as summer projects.
机译:研究型实验室课程已被证明可以激发学生对科学的兴趣并提高科学技能。我们在这里描述为一个学期的基于研究的实验室课程以及一个遗传学讲座课程开发的项目。该项目旨在让学生在进行原创性研究的同时熟悉生物信息学工具,分子生物学和遗传方法的使用。要求学生在全面的实验室报告中陈述他们的假设,实验和结果。该实验室项目涉及酵母酪蛋白激酶1(CK1)蛋白激酶Yck2。 CK1蛋白激酶存在于所有生物中,并且在一级结构中非常保守。这些酶显示出不同于其他蛋白激酶亚家族的序列特征。学生确定了CK1子家族中的此类序列,选择了一个序列进行分析,使用可用的结构数据来确定其序列的可能功能,并设计了该序列中的突变。产生突变等位基因后,它们在酵母中表达,并通过两种生长测定法测试其功能。就知识和技能的增长以及对研究的兴趣而言,学生对该项目的反应是积极的,并且作为夏季项目,一些学生正在继续分析突变等位基因。

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