Nucleic Acid-Metal Ion Interactions

Nucleic Acid-Metal Ion Interactions pdf epub mobi txt 电子书 下载 2026

出版者:
作者:Hud, Nicholas V. (EDT)
出品人:
页数:448
译者:
出版时间:2008-10
价格:$ 262.16
装帧:
isbn号码:9780854041954
丛书系列:
图书标签:
  • 核酸
  • 金属离子
  • 相互作用
  • 生物化学
  • 化学
  • 分子生物学
  • 结构生物学
  • 配位化学
  • DNA
  • RNA
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具体描述

Natural biochemical processes are routinely being discovered in living cells that involve RNA. Some of these processes, such as RNA interference, are now being exploited for biotechnology and medicinal applications. DNA has also proven in recent years to be more than a passive storehouse of information. For example, non-B-form DNA structures formed by G-rich DNA have been shown to participate in the regulation of gene expression, a discovery that presents new possibilities for drug targets in the genome. The current quest to understand how nucleic acid functions at the most fundamental level requires that we have a detailed understanding of nucleic acid-metal ion interactions. Because RNA and DNA are polyanions the structure and biological function of these biopolymers depends strongly on their association with metal ions. While this intimate connection between metal ions and nucleic function has been appreciated for decades, the noncovalent and dynamic nature of these interactions has continually presented challenges to the development of accurate and quantitative descriptions. Over the past few years the development of solution state spectroscopic techniques and the achievement of high resolution X-ray crystal structures have provided tremendous insights into the nature of nucleic acid-metal ion interactions, including direct evidence for their importance in determining nucleic acid structure, from the dictation of folding pathways followed by large RNA molecules to the subtle modulation of DNA groove widths. This new book provides a comprehensive review of the experimental studies that define our current understanding of nucleic acid-metal ion interactions with a particular emphasis being placed on experimental biophysical studies. However, the book is not merely a current review of the literature, as original material and fresh perspectives on published results are also presented. Particularly noteworthy topics include: -The chapter by Williams and fellow workers which reviews information provided by x-ray crystal structures and discusses what this information has revealed about the unique nature of Mg2+ interactions with RNA phosphate groups. The authors provide fresh insights, based upon structural comparisons, for how these interactions govern the local folding pathways of RNA. By dedicating separate chapters to the participation of metal ions in the kinetics and thermodynamics of RNA folding, this volume provides a more in depth treatise of both areas than is typically possible for reviews in which these two related, but distinct, topics are combined -Polyelectrolyte models of nucleic acids have proven to be extremely valuable for understanding the sequestering counterions in a so-called diffuse cloud around polymeric DNA. J. Michael Schurr provides a comprehensive review of polyanion models. Despite the success of polyelectrolyte models in describing some physical properties of nucleic acids, this topic is not always sufficiently understood by many researchers to make use of these models and this chapter serves as a valuable and up to date introduction to this topic. -The chapter by Pizarro and Sadler on metal ion-nucleic acid interactions in disease and medicine is complemented by a chapter by Lippert on coordinative bond formation between metal ions and nucleic acid bases. Together, these two chapters provide an overview of transition metal ion interactions with nucleic acids that illustrates the promise and peril that is associated with direct metal ion coordination to nucleic acid bases in living cells. The book is sufficiently detailed to serve as a reference source for researchers active in the field of nucleic acids biophysics and molecular biology. In addition, chapter authors have added introductory material and enough background material in each chapter so that the book can also can serve as an entry point for students and researchers that have not previously worked in the field which will make the book of lasting value and more accessible by a wider audience.

好的,这是一份关于一本名为《核酸-金属离子相互作用》(Nucleic Acid-Metal Ion Interactions)的图书的详细简介,内容将聚焦于该领域的核心知识和前沿进展,同时避免生成任何虚假或不相关的内容,力求专业且自然。 --- 图书名称:核酸-金属离子相互作用 (Nucleic Acid-Metal Ion Interactions) 图书简介 概述 《核酸-金属离子相互作用》是一部深入探讨核酸(DNA和RNA)与各种金属离子之间复杂相互作用机制的专业著作。本书旨在为生物化学、分子生物学、生物物理学以及材料科学等领域的科研人员、研究生和高级本科生提供一个全面、系统的知识框架。本书不仅涵盖了经典理论和实验技术,更着重阐述了这些相互作用在生命活动、疾病发生发展以及生物技术应用中的关键作用。 核心内容与结构 本书内容组织严谨,逻辑清晰,分为几个主要部分,层层递进地解析核酸与金属离子的多维互动。 第一部分:基础原理与结构生物学 本部分首先回顾了核酸的基本结构,包括双螺旋结构、A型、B型和Z型DNA,以及RNA的二级和三级结构(如发夹、假结、四链体等)。随后,重点介绍了金属离子在生物体系中的基本化学性质,特别是配位化学原理。 核酸的配位位点识别: 详细分析了DNA和RNA上主要的金属离子结合位点,包括磷酸骨架氧原子、碱基(N7、O6、N3位点)以及核糖的2'-OH基团。讨论了不同位点对不同金属离子的选择性和亲和力差异。 结构调控机制: 阐述了金属离子如何通过静电屏蔽、配位桥接或直接占据内层结构,从而稳定或改变核酸的宏观构象。例如,二价阳离子(如Mg²⁺, Ca²⁺)对磷酸骨架的去屏蔽效应,以及三价金属离子(如Fe³⁺, Pt²⁺)对DNA拓扑结构和手性的影响。 第二部分:关键金属离子的特异性作用 本部分深入剖析了几类在生物学上或技术上具有重要意义的金属离子与核酸的相互作用模式。 碱土金属与过渡金属(如Mg²⁺, Mn²⁺, Zn²⁺): 重点讨论了镁离子在核酸酶活性中心、核糖体功能以及DNA复制和修复中的催化和结构稳定作用。锌离子在维持特定G-四链体结构中的独特角色,以及其与核酸的螯合作用在转录因子调控中的体现。 重金属与有毒金属(如Hg²⁺, Cd²⁺, Pb²⁺): 探讨了这些金属离子与核酸的非特异性或半特异性结合,阐明它们如何通过干扰正常的金属稳态,导致细胞毒性,特别是它们对硫原子(如巯基)的亲和力与对核酸碱基的取代作用。 铂族金属与抗癌药物: 详细分析了顺铂、卡铂等铂类药物与DNA的共价加合物形成机制。重点讨论了加合物的结构特征(如鸟嘌呤的N7位点交联),以及这些损伤如何激活细胞凋亡途径或诱导DNA修复反应。 第三部分:相互作用的动力学与热力学 本部分转向对相互作用过程的定量研究。 结合常数与亲和力测定: 介绍并比较了电导滴定、荧光光谱、核磁共振(NMR)和等温滴定量热法(ITC)等技术在解析核酸-金属离子结合参数($K_a$, $Delta H$, $Delta S$)中的应用。 动力学过程: 探讨了金属离子与核酸结合和解离的速率常数,以及这些动力学参数对生物反应(如DNA折叠速率)的影响。 第四部分:生物学意义与前沿应用 本书的最后一部分着眼于理论基础在实际问题中的应用。 酶促反应中的作用: 深入分析了核酸酶、聚合酶和连接酶等依赖金属离子的生物催化剂的工作机理。讨论了金属离子作为辅助因子在激活底物或稳定过渡态中的作用。 核酸折纸术与纳米技术: 阐述了如何精确控制金属离子浓度和类型,以指导DNA和RNA自组装成预定的纳米结构(DNA纳米机器、DNA笼等),以及金属离子在稳定这些非天然结构中的贡献。 环境与生物传感: 探讨了基于核酸与特定金属离子高选择性结合的化学传感器设计原理,特别是在痕量重金属检测方面的应用。 本书特色 本书的特色在于其跨学科的视角,将配位化学的严谨性与分子生物学的复杂性相结合。它不仅提供了丰富的实验数据和结构模型,还深入解析了相互作用背后的分子机制。书中包含大量的专业图解和最新的谱学分析数据,帮助读者直观理解抽象的分子过程。对于希望在金属生物学、生物无机化学或生物材料领域进行创新性研究的读者而言,本书是不可或缺的参考资料。 目标读者 生物化学、生物物理学、药物化学、分子生物学、无机化学(侧重生物应用方向)的研究人员、博士后、研究生以及相关领域的工业界专业人士。

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