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Chemical Genetics — A Versatile Method to Combine Science and Higher Level Teaching in Molecular Genetics

机译:化学遗传学-一种将科学与分子遗传学高级教学相结合的多功能方法

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摘要

Phosphorylation is a key event in many cellular processes like cell cycle, transformation of environmental signals to transcriptional activation or polar growth. The chemical genetics approach can be used to analyse the effect of highly specific inhibition in vivo and is a promising method to screen for kinase targets. We have used this approach to study the role of the germinal centre kinase Don3 during the cell division in the phytopathogenic fungus Ustilago maydis. Due to the easy determination of the don3 phenotype we have chosen this approach for a genetic course for M.Sc. students and for IMPRS (International Max-Planck research school) students. According to the principle of “problem-based learning” the aim of this two-week course is to transfer knowledge about the broad spectrum of kinases to the students and that the students acquire the ability to design their own analog-sensitive kinase of interest. In addition to these training goals, we benefit from these annual courses the synthesis of basic constructs for genetic modification of several kinases in our model system U. maydis.
机译:磷酸化是许多细胞过程中的关键事件,例如细胞周期,环境信号转化为转录激活或极性生长。化学遗传学方法可用于分析体内高度特异性抑制的作用,是筛选激酶靶标的有前途的方法。我们已经使用这种方法来研究生发中心激酶Don3在植物致病性真菌Ustilago maydis中的细胞分裂过程中的作用。由于易于确定don3表型,我们选择了该方法作为M.Sc的遗传过程。学生和IMPRS(国际Max-Planck研究学校)的学生。根据“基于问题的学习”的原理,此为期两周的课程的目的是向学生传递有关广泛激酶的知识,并使学生获得设计自己感兴趣的模拟敏感激酶的能力。除了这些培训目标之外,我们还从这些年度课程中受益于模型系统U. maydis中用于几种激酶遗传修饰的基本构建体的合成。

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