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  • 1
    Keywords: RNA polymerases ; Molecules ; RNS-Polymerase I
    Description / Table of Contents: This book, written by expert scientists in the field, analyses how diverse fields of scientific research interact on a specific example - RNA polymerases, The cell can be viewed as a 'collection of protein machines' and understanding these molecular machines requires sophisticated cooperation between cell biologists, geneticists, enzymologists, crystallographers, chemists and physicists. To observe these machines in action, researchers have developed entirely new methodologies for the detection and the nanomanipulation of single molecules. This book, written by expert scientists in the field, analyses how these diverse fields of research interact on a specific example - RNA polymerase. The book concentrates on RNA polymerases because they play a central role among all the other machines operating in the cell and are the target of a wide range of regulatory mechanisms. They have also been the subject of spectacular advances in their structural understanding in recent years, as testified by the attribution of the Nobel prize in chemistry in 2006 to Roger Kornberg. The book focuses on two aspects of the transcription cycle that have been more intensively studied thanks to this increased scientific cooperation - the recognition of the promoter by the enzyme, and the achievement of consecutive translocation steps during elongation of the RNA product. Each of these two topics is introduced by an overview, and is then presented by worldwide experts in the field, taking the viewpoint of their speciality. The overview chapters focus on the mechanism-structure interface and the structure-machine interface while the individual chapters within each section concentrate more specifically on particular processes-kinetic analysis, single-molecule spectroscopy, and termination of transcription, amongst others. Specific attention has been paid to the newcomers in the field, with careful descriptions of new emerging techniques and the constitution of an atlas of three-dimensional pictures of the enzymes involved. For more than thirty years, the study of RNA polymerases has benefited from intense cooperation between the scientific partners involved in the various fields listed above. It is hoped that a collection of essays from outstanding scientists on this subject will catalyse the convergence of scientific efforts in this field, as well as contribute to better teaching at advanced levels in Universities
    Type of Medium: Online Resource
    Pages: Online-Ressource (330 Seiten) , 59 b&w, ill
    Edition: RSC eBook Collection 1968-2009
    ISBN: 9781847559982
    Series Statement: RSC Biomolecular sciences v. 16
    DDC: 572.8845
    RVK:
    Language: English
    Note: Ebook
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  • 2
    Keywords: Natural products ; Pharmacognosy ; Naturstoffchemie
    Description / Table of Contents: This up-to-date summary of natural product chemistry in drug discovery will appeal to scientists, professionals, postgraduates and industrial chemists, Natural Product Chemistry for Drug Discovery provides a comprehensive summary of where natural product chemistry is today in drug discovery. The book covers emerging technologies and case studies and is a source of up-to-date information on the topical subject of natural products. Natural products are once again considered important tools in the drug discovery toolbox. The authors are all experts in their respective fields of natural product chemistry. The book will appeal across the board from scientists to professionals, postgraduates and industrial chemists. The case studies selected for inclusion highlight recently marketed drugs and development candidates that have been derived from natural products. These 'real-life' examples show how new technologies, such as advances in screening, isolation, dereplication and prefractionation, have significantly enhanced the discovery process
    Type of Medium: Online Resource
    Pages: Online-Ressource (400 p)
    Edition: RSC eBook Collection 1968-2009
    ISBN: 1847559891 , 9781847559890
    Series Statement: RSC Biomolecular sciences v. 19
    DDC: 615.19
    RVK:
    Language: English
    Note: Ebook , Epublication based on: 9780854041930
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  • 3
    Keywords: Protein Folding ; Protein Denaturation ; Electronic books
    Description / Table of Contents: This unique book covers all the modern approaches and the many advances experienced in the field of protein folding and aggregation during the last 10 years, Protein folding and aggregation is the process by which newly synthesized proteins fold into the specific three-dimensional structures defining their biologically active states. It has always been a major focus of research in biochemistry and has often been seen as the unsolved second part of the genetic code. In the last 10 years we have witnessed a quantum leap in the research in this exciting area. Computational methods have improved to the extent of making possible to simulate the complete folding process of small proteins and the early stages of protein aggregation. Experimental methods have evolved to permit resolving fast processes of folding reactions and visualizing single molecules during folding. The findings from these novel experiments and detailed computer simulations have confirmed the main predictions of analytical theory of protein folding. In summary, protein folding research has finally acquired the status of a truly quantitative science, paving the way for more exciting developments in the near future. This unique book covers all the modern approaches and the many advances experienced in the field during the last 10 years. There is also much emphasis on computational methods and studies of protein aggregation which have really flourished in the last decade. It includes chapters in the areas that have witnessed major developments and are written by top experts including:computer simulations of folding, fast folding, single molecule spectroscopy, protein design, aggregation studies (both computational and experimental). Readers will obtain a unique perspective of the problems faced in the biophysical study of protein conformational behaviour in aqueous solution and how these problems are being solved with a multidisciplinary approach that combines theory, experiment and computer simulations. Protein Folding, Misfolding and Aggregation Classical Themes and Novel Approaches is essential reading for graduate students actively involved in protein folding research, other scientists interested in the recent progress of the field and instructors revamping the protein folding section of their biochemistry and biophysics courses
    Type of Medium: Online Resource
    Pages: 288 p , Online-Ressource , 44 b&w, ill
    Edition: RSC eBook Collection 1968-2009
    ISBN: 1847558283 , 9781847558282
    Series Statement: RSC Biomolecular sciences v. 14
    DDC: 572.633
    RVK:
    Language: English
    Note: Ebook , Preface: Classical Themes and Novel Approaches in Protein Folding and Aggregation-- Chapter 1: The Helix as the Simplest Protein Folding Model-- Helix-Coil Theory, Stability and Design-- Chapter 2: Kinetics and Mechanisms of -Helix Formation-- Chapter 3: Protein Folding Theory-- The Folding Energy Landscape: A Primer-- Chapter 4: Hydrogen Exchange Experiments-- Detection and Characterization of Folding Intermediates-- Chapter 5: Statistical Differential Scanning Calorimetry-- Probing Protein Folding-Unfolding Ensembles-- Chapter 6: Fast Protein Folding-- Chapter 7: Single Molecule Spectroscopy in Protein Folding-- From Ensembles to Single Molecules-- Chapter 8: Computer Simulations of Protein Folding-- Chapter 9: Protein Design-- Tailoring Sequence, Structure and Folding Properties-- Chapter 10: Protein Misfolding and -Amyloid Formation-- Chapter 11: Computational Studies of Protein Aggregation-- Molecular Dynamics Simulations and Bioinformatic Analysis of Scenarios for Protein Aggregation.
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  • 4
    Description / Table of Contents: Provides a perspective on nucleic acid-metal ion interactions with an emphasis on experimental biophysical studies which will prove indispensable to biophysicists and molecular biologists, 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. of nucleic acid-metal ion interactions. 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
    Type of Medium: Online Resource
    Pages: 380 p , Online-Ressource , 101 b&w, ill
    Edition: RSC eBook Collection 1968-2009
    Series Statement: RSC Biomolecular sciences v. 15
    Language: English
    Note: Ebook , Nucleic acids interactions with Group I and II cations, Coordinative Bond Formation, Between Metal Ions and Nucleic Acid Bases, Sequence-specific DNA-cation interactions Metal ion coordination in G-quadruplexes, Characterization of nucleic acid metal ion binding by spectroscopic techniques, Metal ions and the thermodynamics of RNA folding Metal ions and RNA folding kinetics, Metal ions in RNA catalysis, Polyanion models of nucleic acid-metal ion interactions, Metal ion-nucleic acid interactions in disease and medicine.
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  • 5
    Electronic Resource
    Electronic Resource
    [s.l.] : Nature Publishing Group
    Nature 385 (1997), S. 672-672 
    ISSN: 1476-4687
    Source: Nature Archives 1869 - 2009
    Topics: Biology , Chemistry and Pharmacology , Medicine , Natural Sciences in General , Physics
    Notes: [Auszug] Sir- I did not see proofs of my review of Triple-Helical Nucleic AcidsbyV. N. Soyfer and V. N Potaman, and, in consequence of the editing, the printed result (Nature 385, 218; 1997) was much more negative than I had intended. The book reviewed the structural aspects of triplex structures extremely ...
    Type of Medium: Electronic Resource
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  • 6
    ISSN: 1072-8368
    Source: Nature Archives 1869 - 2009
    Topics: Biology , Medicine
    Notes: [Auszug] We have solved the crystal structure of the Holliday junction resolving enzyme T7 endonuclease I at 2.1 Å resolution using the multiwavelength anomalous dispersion (MAD) technique. Endonuclease I exhibits strong structural specificity for four-way DNA junctions. The structure shows that it ...
    Type of Medium: Electronic Resource
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  • 7
    Electronic Resource
    Electronic Resource
    [s.l.] : Nature Publishing Group
    Nature structural biology 10 (2003), S. 93-97 
    ISSN: 1072-8368
    Source: Nature Archives 1869 - 2009
    Topics: Biology , Medicine
    Notes: [Auszug] The four-way DNA (Holliday) junction is the central intermediate of genetic recombination, but the dynamic aspects of this important structure are presently unclear. Although transitions between alternative stacking conformers have been predicted, conventional kinetic studies are precluded by the ...
    Type of Medium: Electronic Resource
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  • 8
    Electronic Resource
    Electronic Resource
    [s.l.] : Nature America Inc.
    Nature structural biology 6 (1999), S. 897-899 
    ISSN: 1072-8368
    Source: Nature Archives 1869 - 2009
    Topics: Biology , Medicine
    Notes: [Auszug] After a long wait, we finally see the structure of the Holliday junction of genetic recombination at atomic resolution. It comprises a right-handed cross of DNA molecules, with an antiparallel orientation of ...
    Type of Medium: Electronic Resource
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  • 9
    Electronic Resource
    Electronic Resource
    [s.l.] : Nature Publishing Group
    Nature structural biology 3 (1996), S. 984-986 
    ISSN: 1072-8368
    Source: Nature Archives 1869 - 2009
    Topics: Biology , Medicine
    Notes: [Auszug] Genetic recombination brings about rearrangements of DNA sequences, and is of vital importance to both the individual and the species. It is a significant weapon in the repair of DNA damage, and a driving force in evolution. For a long time attempts to deduce the mechanism of the process were ...
    Type of Medium: Electronic Resource
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  • 10
    Electronic Resource
    Electronic Resource
    [s.l.] : Nature Publishing Group
    Nature structural biology 2 (1995), S. 45-55 
    ISSN: 1072-8368
    Source: Nature Archives 1869 - 2009
    Topics: Biology , Medicine
    Notes: [Auszug] Here we investigate the global conformation of the hammerhead ribozyme. Electrophoretic studies demonstrate that the structure is folded in response to the concentration and type of ions present. Folding based on colinear alignment of arms II and III is suggested, with a variable angle subtended by ...
    Type of Medium: Electronic Resource
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