Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Structural Virology

View through CrossRef
Over the last ten years, much effort has been devoted to improving the biophysical techniques used in the study of viruses. This has resulted in the visualization of these large macromolecular assemblages at atomic level, thus providing the platform for functional interpretation and therapeutic design. Structural Virology covers a wide range of topics and is split into three sections. The first discusses the vast biophysical methodologies used in structural virology, including sample production and purification, confocal microscopy, mass spectrometry, negative-stain and cryo-electron microscopy, X-ray crystallography and nuclear magnetic resonance spectroscopy. The second discusses the role of virus capsid protein structures in determining the functional roles required for receptor recognition, cellular entry, capsid assembly, genome packaging and mechanisms of host immune system evasion. The last section discusses therapeutic strategies based on virus protein structures, including the design of antiviral drugs and the development of viral capsids as vehicles for foreign gene delivery. Each topic covered will begin with a review of the current literature followed by a more detailed discussion of experimental procedures, a step in the viral life cycle, or strategies for therapeutic development. With contributions from experts in the field of structural biology and virology this exceptional monograph will appeal to biomedical scientists involved in basic and /or applied research on viruses. It also provides up-to-date reference material for students entering the field of structural virology as well as scientists already familiar with the area.
The Royal Society of Chemistry
Title: Structural Virology
Description:
Over the last ten years, much effort has been devoted to improving the biophysical techniques used in the study of viruses.
This has resulted in the visualization of these large macromolecular assemblages at atomic level, thus providing the platform for functional interpretation and therapeutic design.
Structural Virology covers a wide range of topics and is split into three sections.
The first discusses the vast biophysical methodologies used in structural virology, including sample production and purification, confocal microscopy, mass spectrometry, negative-stain and cryo-electron microscopy, X-ray crystallography and nuclear magnetic resonance spectroscopy.
The second discusses the role of virus capsid protein structures in determining the functional roles required for receptor recognition, cellular entry, capsid assembly, genome packaging and mechanisms of host immune system evasion.
The last section discusses therapeutic strategies based on virus protein structures, including the design of antiviral drugs and the development of viral capsids as vehicles for foreign gene delivery.
Each topic covered will begin with a review of the current literature followed by a more detailed discussion of experimental procedures, a step in the viral life cycle, or strategies for therapeutic development.
With contributions from experts in the field of structural biology and virology this exceptional monograph will appeal to biomedical scientists involved in basic and /or applied research on viruses.
It also provides up-to-date reference material for students entering the field of structural virology as well as scientists already familiar with the area.

Related Results

Form Follows Force: A theoretical framework for Structural Morphology, and Form-Finding research on shell structures
Form Follows Force: A theoretical framework for Structural Morphology, and Form-Finding research on shell structures
The springing up of freeform architecture and structures introduces many challenges to structural engineers. The main challenge is to generate structural forms with high structural...
Corrigendum
Corrigendum
Schulz C, van der Poel WHM, Ponsart C, Brigitte Cay A, Steinbach F, Zientara S, Beer M, Hoffmann B. European interlaboratory comparison of Schmallenberg virus (SBV) real-time RT-PC...
The Future of Virology Education
The Future of Virology Education
The rapidly evolving pace of scientific information, technology, and innovation in pedagogical approaches provides an opportunity to consider the future of virology education. Viro...
Virion swelling is not required for cotranslational disassembly of cowpea chlorotic mottle virus in vitro
Virion swelling is not required for cotranslational disassembly of cowpea chlorotic mottle virus in vitro
The mechanism by which virions of cowpea chlorotic mottle virus (CCMV) disassemble and allow for translation of the virion RNA is not well understood. Previous models have suggeste...
130th anniversary of virology
130th anniversary of virology
130 years ago, in 1892, our great compatriot Dmitry Iosifovich Ivanovsky (18641920) discovered a new type of pathogen viruses. Viruses have existed since the birth of life on Eart...
Reviews
Reviews
In No. 5, 2022 of the journal "Questions of Virology" in the section "Editorial concept" the article "130 years of virology" was published (Lvov D.K., Alkhovsky S.V., Zhirnov O.P. ...
Unveiling the third dimension of glass
Unveiling the third dimension of glass
Glass as a material has always fascinated architects. Its inherent transparency has given us the ability to create diaphanous barriers between the interior and the exterior that al...
The Use of Synchrotron Radiation in Virology
The Use of Synchrotron Radiation in Virology
Introduction: The demand for new rapid methods for development of medicines for health care is becoming more relevant. Detailed knowledge of the spatial structure of viral proteins...

Back to Top