Image from Google Jackets

Green Fluorescent Protein / edited by Barry W. Hicks

Material type: materialTypeLabelE-bookSeries: (Methods in Molecular Biology, 1940-6029; 183).Publisher: Totowa, NJ : Humana Press, 2002Edition: 1st edition 2002.Description: 1 recurso en línea (XIV, 394 páginas).ISBN: 9781592592807.Subject: ProteínasOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Manipulation of Green Fluorescent Protein Structure at the Genetic Level -- Amplification of Representative cDNA Samples from Microscopic Amounts of Invertebrate Tissue to Search for New Genes -- Use of cobA and cysGA as Red Fluorescent Indicators -- Circular Permutation of the Green Fluorescent Protein -- Evolutionary Design of Generic Green Fluorescent Protein Biosensors -- Random Insertion of Green Fluorescent Protein into the Regulatory Subunit of Cyclic Adenosine Monophosphate-Dependent Protein Kinase -- Circular mRNA Encoding for Monomeric and Polymeric Green Fluorescent Protein -- Detection and Imaging of Green Fluorescent Protein -- Fluorescence Lifetime Imaging (FLlM) of Green Fluorescent Fusion Proteins in Living Cells -- 8 Fluorescence Resonance Energy Transfer (FRET) Applications Using Green Fluorescent Protein -- Bioluminescence Resonance Energy Transfer Assays for Protein-Protein Interactions in Living Cells -- Whole-Body Fluorescence Imaging with Green Fluorescence Protein -- Green Fluorescent Protein to Monitor Protein Distribution and Trafficking -- Drug-Induced Translocation of Nucleolar Proteins Fused to Green Fluorescent Protein -- Light-Induced Nuclear Targeting of PhytochromeB-sGreen Fluorescent Protein in Plants -- Mechanisms of Protein Trafficking -- Analysis of Nucleocytoplasmic Transport Using Green Fluorescent Protein -- Green Fluorescent Protein in Transgenic Organisms -- Transgenic Bovine Embryo Selection Using Green Fluorescent Protein -- Development of Glycosylphosphatidylinositol-Anchored Enhanced Green Fluorescent Protein -- Transgenic Zebrafish Expressing Green Fluorescent Protein -- Transgenic Insects Expressing Green Fluorescent Protein-Silk Fibroin Light Chain Fusion Protein in Transgenic Silkworms -- Green Fluorescent Protein inTransgenic Plants -- Green Fluorescent Protein Biosensors -- Green Fluorescent Protein Calcium Biosensors -- Green Fluorescent Protein Fluobody Immunosensors -- 22 Green Fluorescent Protein-Based Protein Kinase Biosensor Substrates -- Green Fluorescent Protein Urea Sensors -- Viral Applications of Green Fluorescent Protein -- Using Green Fluorescent Protein to Monitor Measles Virus Cell-to-Cell Spread by Time-Lapse Confocal Microscopy -- Tracking and Selection of Retrovirally Transduced Murine Bone Marrow Cells Using Green Fluorescent Protein -- Green Fluorescent Protein as a Reporter of Adenovirus-Mediated Gene Transfer and Expression in the Hypothalamic-Neurohypophyseal System -- Enhancement of Green Fluorescent Protein Expression in Adeno-Associated Virus with the Woodchuck Hepatitis Virus Post-Transcriptional Regulatory Element -- Construction of Infectious Simian Varicella Virus Expressing Green Fluorescent Protein -- Green Fluorescent Protein in Retroviral Vector Constructs as Marker and Reporter of Gene Expression for Cell and Gene Therapy Applications.
Summary: Green fluorescent protein (GFP), a critically important marker protein, allows direct visualization in live samples without the aid of additional sample preparation. In Green Fluorescent Protein: Applications and Protocols, Barry W. Hicks and a team of well-practiced experimentalists demonstrate the power and the versatility of this marker with a cutting-edge collection of readily reproducible GFP techniques. These include methods for detecting and imaging GFP (FRET, BRET, and whole-body imaging), for using GFP to create and select for transgenic organisms, for its use as a biosensor, and for studying viruses. Each method is described in step-by-step detail to ensure robust results and can be used in applications ranging from agriculture and botany to human gene therapy. Extensive notes review the materials required, explain the scientific basis of each step and possible sources of error, and provide tips for overcoming problems. Highly practical and state-of-the-art, Green Fluorescent Protein: Applications and Protocols makes available to all biological and biomedical experimentalists a full array of the powerful new GFP techniques.
Tags from this library: No tags from this library for this title. Log in to add tags.
Star ratings
    Average rating: 0.0 (0 votes)
Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias de la Salud QP551 2002 EB (Browse shelf(Opens below)) Acceso electrónico eBook.20123400
Total holds: 0

Manipulation of Green Fluorescent Protein Structure at the Genetic Level -- Amplification of Representative cDNA Samples from Microscopic Amounts of Invertebrate Tissue to Search for New Genes -- Use of cobA and cysGA as Red Fluorescent Indicators -- Circular Permutation of the Green Fluorescent Protein -- Evolutionary Design of Generic Green Fluorescent Protein Biosensors -- Random Insertion of Green Fluorescent Protein into the Regulatory Subunit of Cyclic Adenosine Monophosphate-Dependent Protein Kinase -- Circular mRNA Encoding for Monomeric and Polymeric Green Fluorescent Protein -- Detection and Imaging of Green Fluorescent Protein -- Fluorescence Lifetime Imaging (FLlM) of Green Fluorescent Fusion Proteins in Living Cells -- 8 Fluorescence Resonance Energy Transfer (FRET) Applications Using Green Fluorescent Protein -- Bioluminescence Resonance Energy Transfer Assays for Protein-Protein Interactions in Living Cells -- Whole-Body Fluorescence Imaging with Green Fluorescence Protein -- Green Fluorescent Protein to Monitor Protein Distribution and Trafficking -- Drug-Induced Translocation of Nucleolar Proteins Fused to Green Fluorescent Protein -- Light-Induced Nuclear Targeting of PhytochromeB-sGreen Fluorescent Protein in Plants -- Mechanisms of Protein Trafficking -- Analysis of Nucleocytoplasmic Transport Using Green Fluorescent Protein -- Green Fluorescent Protein in Transgenic Organisms -- Transgenic Bovine Embryo Selection Using Green Fluorescent Protein -- Development of Glycosylphosphatidylinositol-Anchored Enhanced Green Fluorescent Protein -- Transgenic Zebrafish Expressing Green Fluorescent Protein -- Transgenic Insects Expressing Green Fluorescent Protein-Silk Fibroin Light Chain Fusion Protein in Transgenic Silkworms -- Green Fluorescent Protein inTransgenic Plants -- Green Fluorescent Protein Biosensors -- Green Fluorescent Protein Calcium Biosensors -- Green Fluorescent Protein Fluobody Immunosensors -- 22 Green Fluorescent Protein-Based Protein Kinase Biosensor Substrates -- Green Fluorescent Protein Urea Sensors -- Viral Applications of Green Fluorescent Protein -- Using Green Fluorescent Protein to Monitor Measles Virus Cell-to-Cell Spread by Time-Lapse Confocal Microscopy -- Tracking and Selection of Retrovirally Transduced Murine Bone Marrow Cells Using Green Fluorescent Protein -- Green Fluorescent Protein as a Reporter of Adenovirus-Mediated Gene Transfer and Expression in the Hypothalamic-Neurohypophyseal System -- Enhancement of Green Fluorescent Protein Expression in Adeno-Associated Virus with the Woodchuck Hepatitis Virus Post-Transcriptional Regulatory Element -- Construction of Infectious Simian Varicella Virus Expressing Green Fluorescent Protein -- Green Fluorescent Protein in Retroviral Vector Constructs as Marker and Reporter of Gene Expression for Cell and Gene Therapy Applications.

Green fluorescent protein (GFP), a critically important marker protein, allows direct visualization in live samples without the aid of additional sample preparation. In Green Fluorescent Protein: Applications and Protocols, Barry W. Hicks and a team of well-practiced experimentalists demonstrate the power and the versatility of this marker with a cutting-edge collection of readily reproducible GFP techniques. These include methods for detecting and imaging GFP (FRET, BRET, and whole-body imaging), for using GFP to create and select for transgenic organisms, for its use as a biosensor, and for studying viruses. Each method is described in step-by-step detail to ensure robust results and can be used in applications ranging from agriculture and botany to human gene therapy. Extensive notes review the materials required, explain the scientific basis of each step and possible sources of error, and provide tips for overcoming problems. Highly practical and state-of-the-art, Green Fluorescent Protein: Applications and Protocols makes available to all biological and biomedical experimentalists a full array of the powerful new GFP techniques.

There are no comments on this title.

to post a comment.
Share