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Titlebook: ENZYMES: Catalysis, Kinetics and Mechanisms; N.S.‘Punekar Textbook 20181st edition Springer Nature Singapore Pte Ltd. 2018 Enzyme cataysis

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發(fā)表于 2025-3-21 17:35:19 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書(shū)目名稱(chēng)ENZYMES: Catalysis, Kinetics and Mechanisms
編輯N.S.‘Punekar
視頻videohttp://file.papertrans.cn/301/300460/300460.mp4
概述This book caters the need of the students studying Biochemistry, Enzymology or Industrial Microbiology as part of their Biotechnology/ Life Sciences course.The book synchronizes two broad mechanistic
圖書(shū)封面Titlebook: ENZYMES: Catalysis, Kinetics and Mechanisms;  N.S.‘Punekar Textbook 20181st edition Springer Nature Singapore Pte Ltd. 2018 Enzyme cataysis
描述.This enzymology textbook for graduate and advanced undergraduate students covers the syllabi of most universities where this subject is regularly taught. It focuses on the synchrony between the two broad mechanistic facets of enzymology: the chemical and the kinetic, and also highlights the synergy between enzyme structure and mechanism. Designed for self-study, it explains how to plan enzyme experiments and subsequently analyze the data collected. The book is divided into five major sections: 1] Introduction to enzymes, 2] Practical aspects, 3] Kinetic Mechanisms, 4] Chemical Mechanisms, and 5] Enzymology Frontiers. Individual concepts are treated as stand-alone chapters; readers can explore any single concept with minimal cross-referencing to the rest of the book. Further, complex approaches requiring specialized techniques and involved experimentation (beyond the reach of an average laboratory) are covered in theory with suitable references to guide readers...The book provides students, researchers and academics in the broad area of biology with a sound theoretical and practical knowledge of enzymes. It also caters to those who do not have a practicing enzymologist to teach the
出版日期Textbook 20181st edition
關(guān)鍵詞Enzyme cataysis; Kinetic mechanism; Chemical mechanism; Metabolic regulation; Enzyme kinetics; Protein-Li
版次1
doihttps://doi.org/10.1007/978-981-13-0785-0
isbn_ebook978-981-13-0785-0
copyrightSpringer Nature Singapore Pte Ltd. 2018
The information of publication is updating

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https://doi.org/10.1007/978-3-540-24785-2imple physical and chemical explanations – the combined effect however is quite dramatic! While there is no common formula, each enzyme uses a combination of these tricks to achieve the objective (Fig. 7.1). Indeed, ., just the same way evolutionary biologist Ernst Mayr described evolution of each species.
地板
發(fā)表于 2025-3-22 07:55:52 | 只看該作者
Estimation in Nonparametric Models,bstrate and/or product. Indeed most common enzyme mechanisms found in metabolism are reactions with two substrates and two products. The remarkable success of Michaelis–Menten formalism over the last century has led to extension of this classical approach to more complex systems.
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發(fā)表于 2025-3-22 09:36:33 | 只看該作者
Which Enzyme Uses What Tricks?imple physical and chemical explanations – the combined effect however is quite dramatic! While there is no common formula, each enzyme uses a combination of these tricks to achieve the objective (Fig. 7.1). Indeed, ., just the same way evolutionary biologist Ernst Mayr described evolution of each species.
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發(fā)表于 2025-3-22 15:52:51 | 只看該作者
More Complex Rate Expressionsbstrate and/or product. Indeed most common enzyme mechanisms found in metabolism are reactions with two substrates and two products. The remarkable success of Michaelis–Menten formalism over the last century has led to extension of this classical approach to more complex systems.
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發(fā)表于 2025-3-22 18:21:09 | 只看該作者
On the quasi-controllability of automata,al systems are catalyzed. With minor exception of a few RNA catalysts (ribozymes), all the enzymes are built from a protein scaffold. These catalysts par excellence are at the very foundation of life. The three hallmark features of these biocatalysts are ., ., and ..
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發(fā)表于 2025-3-22 21:50:30 | 只看該作者
https://doi.org/10.1007/978-3-319-74380-6actions, etc., is another feature. Various tricks that enzymes employ in achieving catalytic prowess are shown in Fig. 6.1. These components are best understood through case studies, and we will do this through representative examples for each.
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