首页> 外文期刊>Journal of Biomedical Science and Engineering >Theoretical and experimental biology in one—A symposium in honour of Professor Kuo-Chen Chou’s 50th anniversary and Professor Richard Giegé’s 40th anniversary of their scientific careers
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Theoretical and experimental biology in one—A symposium in honour of Professor Kuo-Chen Chou’s 50th anniversary and Professor Richard Giegé’s 40th anniversary of their scientific careers

机译:理论与实验生物学合而为一,以纪念周国臣教授诞辰50周年和理查德·吉格教授诞辰40周年为主题的座谈会

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It has been a dream that theoretical biology can be extensively applied in experimental biology to accelerate the understanding of the sophiscated movements in living organisms. A brave assay and an excellent example were represented by enzymology, in which the well-established physico-chemistry is used to describe, to fit, to predict and to improve enzyme reactions. Before the modern bioinformatics, the developments of the combination of theoretical biology and experimental biology have been mainly limited to various classic formulations. The systematic use of graphic rules by Prof. Kuo-Chen Chou and his co-workers has significantly facilitated to deal with complicated enzyme systems. With the recent fast progress of bioinformatics, prediction of protein structures and various protein attributes have been well established by Chou and co-workers, stimulating the experimental biology. For example, their recent method for predicting protein subcellular localization (one of the important attributes of proteins) has been extensively applied by scientific colleagues, yielding many new results with thousands of citations. The research by Prof. Chou is characterized by introducing novel physical concepts as well as powerful and elegant mathematical methods into important biomedical problems, a focus throughout his career, even when facing enormous difficulties. His efforts in 50 years have greatly helped us to realize the dream to make “theoretical and experimental biology in one”. Prof. Richard Giege is well known for his multi-disciplinary research combining physics, chemistry, enzymology and molecular biology. His major focus of study is on the identity of tRNAs and their interactions with aminoacyl-tRNA synthetases (aaRS), which are of critical importance to the fidelity of protein biosynthesis. He and his colleagues have carried out the first crystallization of a tRNA/aaRS complex, that between tRNAAsp and AspRS from yeast. The determination of the complex structure contributed significantly to under- stand the interaction of protein and RNA. From his fine research, they have also found other biological function of these small RNAs. He has developed in parallel appropriate methods for his research, of which the protein crystallogenesis, a name he has coined, is an excellent example. Now macromolecular crystallogenesis has become a developed science. In fact, such contribution has accelerated the development of protein crystallography, stimulating the study of macromolecular structure and function.
机译:梦dream以求的是,理论生物学可以广泛地应用于实验生物学中,以加快对生物体复杂运动的理解。酶学代表了一种勇敢的测定方法和一个出色的例子,其中成熟的物理化学用于描述,拟合,预测和改善酶反应。在现代生物信息学出现之前,理论生物学和实验生物学相结合的发展主要局限于各种经典形式。周国臣教授及其同事对图形规则的系统使用大大促进了复杂酶系统的处理。随着生物信息学的快速发展,周先生及其同事已经很好地建立了蛋白质结构和各种蛋白质属性的预测,从而刺激了实验生物学。例如,他们最近的预测蛋白质亚细胞定位(蛋白质的重要​​属性之一)的方法已被科学同事广泛应用,并获得了数千篇引文,获得了许多新结果。周教授的研究的特点是将重要的生物医学问题引入新颖的物理概念以及强大而优雅的数学方法,这是他整个职业生涯的重点,即使面临巨大困难也是如此。他在50年来的努力极大地帮助我们实现了将“理论和实验生物学合而为一”的梦想。 Richard Giege教授以其将物理,化学,酶学和分子生物学相结合的多学科研究而闻名。他的主要研究重点是tRNA的身份及其与氨酰基tRNA合成酶(aaRS)的相互作用,这对于蛋白质生物合成的保真度至关重要。他和他的同事已经完成了tRNA / aaRS复合物的首次结晶,该复合物是来自酵母的tRNAAsp和AspRS之间的结晶。复杂结构的确定显着有助于理解蛋白质和RNA的相互作用。通过他的出色研究,他们还发现了这些小RNA的其他生物学功能。他为自己的研究开发了并行的适当方法,其中一个他所创造的名字就是蛋白质结晶发生就是一个很好的例子。现在大分子结晶发生已成为一门发达的科学。实际上,这种贡献促进了蛋白质晶体学的发展,从而刺激了对大分子结构和功能的研究。

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