DNA Molecular Models: Advancing Nanotechnology Through Structural Insights and Molecular Innovations

· DNA Nanotechnology āŠŠāŦāŠļāŦāŠĪāŠ• 21 · One Billion Knowledgeable
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āŠ† āŠ‡-āŠŠāŦāŠļāŦāŠĪāŠ• āŠĩāŠŋāŠķāŦ‡

The book "DNA Molecular Models," part of the "DNA Nanotechnology" series, delves into the world of DNA structure, offering both theoretical and practical insights. This comprehensive guide examines crucial aspects of DNA, providing key insights into how molecular models shape our understanding of nucleic acids and their application in the rapidly advancing field of DNA nanotechnology. Whether you're a professional, student, or enthusiast, this book offers a fascinating exploration of the intricate world of DNA structures.

Chapters Brief Overview:


1: Molecular models of DNA: Introduces the foundational concepts of DNA's molecular structures, setting the stage for further exploration.


2: DNA base flipping: Explores how base flipping affects DNA functionality and its implications in nanotechnology.


3: Nucleic acid structure determination: Discusses methods used to determine nucleic acid structures, focusing on their importance in research.


4: Raymond Gosling: Highlights the contributions of Raymond Gosling in uncovering DNA's structure, crucial for scientific progress.


5: DNA nanotechnology: An introduction to the revolutionary field of DNA nanotechnology and its potential applications.


6: Structural biology: Offers insights into the relationship between the structure and function of biological molecules.


7: DNA: Examines the basic building blocks and unique features of DNA, providing a deeper understanding of its role in molecular biology.


8: Obsolete models of DNA structure: Looks at earlier DNA models and how they were eventually replaced by more accurate representations.


9: Alec Stokes: Focuses on Alec Stokes' contributions to understanding DNA, emphasizing his legacy in modern molecular biology.


10: Molecular Structure of Nucleic Acids: A Structure for Deoxyribose Nucleic Acid: Discusses Watson and Crick's pivotal model of DNA structure, foundational to molecular biology.


11: Structural chemistry: Investigates the chemical principles that govern the structure of nucleic acids and their molecular interactions.


12: Nuclear magnetic resonance spectroscopy of nucleic acids: Explores how NMR spectroscopy is used to study nucleic acid structures and dynamics.


13: Structural bioinformatics: Highlights the role of computational tools in modeling and predicting nucleic acid structures.


14: Hoogsteen base pair: Describes the Hoogsteen base pairing and its relevance to the study of DNA and RNA structures.


15: Nucleic acid double helix: Discusses the iconic doublehelix structure of DNA and its significance in molecular biology.


16: Nucleic acid secondary structure: Examines the various secondary structures of nucleic acids, essential for their function.


17: Maurice Wilkins: Focuses on Maurice Wilkins' contributions to the discovery of DNA's structure and his role in science.


18: Biomolecular structure: Explores how the structure of biomolecules like DNA determines their biological function.


19: Nucleic acid tertiary structure: Investigates the higherorder folding of nucleic acids and their biological significance.


20: History of molecular biology: Provides a historical perspective on how molecular biology emerged and its evolution.


21: Francis Crick: Details Francis Crick's groundbreaking contributions to molecular biology, particularly in DNA research.


The book provides an accessible yet comprehensive look at DNA models and their connection to nanotechnology, making it an essential read for anyone interested in the future of molecular biology and nanotechnology.

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