Introduction to Protein Architecture: The Structural Biology of Proteins

Introduction to Protein Architecture: The Structural Biology of Proteins pdf

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生物信息学

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亚瑟·马利·莱斯克 是一名蛋白质科学研究人员,他是位于大学公园的宾夕法尼亚州立大学的生物化学和分子生物学教授。 Lesk 于 1961 年以优异成绩获得哈佛大学学士学位。1966 年获得普林斯顿大学博士学位。他还于 1999 年获得英国剑桥大学硕士学位。Lesk 做出了重大贡献 用于蛋白质进化的研究。 他和在英国剑桥医学研究委员会(英国)分子生物学实验室工作的 Cyrus Chothia 通过分析蛋白质家族的进化机制,发现了氨基酸序列变化与蛋白质结构变化之间的关系。 发现为最成功和广泛使用的结构预测方法(称为同源建模)提供了定量基础。

书的描述

Introduction to Protein Architecture: The Structural Biology of Proteins pdf 亚瑟·马利·莱斯克

Written in a clear and engaging style, and profusely illustrated with superb computer graphics, Introduction to Protein Architecture is a textbook for second and third year undergraduate students and beginning post-graduate students, and will be of interest to all biological and medical scientists whose work touches on proteins.
The structures and functions of proteins unlock the secrets inherent in genomes, including the human genome. The emphasis of this book is on protein architecture, on proteins as three-dimensional patterns. A new field, bioinformatics, has grown up around gene and protein sequences and structures. It has captured the interest of many scientists for its intellectual challenges, its potential for useful applications, and promising scope for careers. This book introduces the use of the World Wide Web in bioinformatics.
Written by one of the leaders in this field, Introduction to Protein Architecture explains the general characteristics of proteins that underlie the very great variety of folding patterns observed in nature. For specialists in structural biology, it contains the core of what they need to know. For students and workers in related disciplines, undergraduates or beginning graduate students in biology, chemistry, medicine, bioinformatics, and related fields it contains what they will be able to apply to their own work. Topics treated include: Pattern and form in protein structure; The building blocks; The relationship between amino acid sequence and protein structure; Secondary, supersecondary and tertiary structure; Classifications and hierarchies of protein folding patterns; Protein evolution; How proteins change conformation (and why).

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