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Methods in Cell Biology VOLUME 58 Green Fluorescent Proteins
Series Editors Leslie Wilson Department of Biological Sciences University of Cahfomia, Santa Barbara Santa Barbara, California
Paul Matsudaira Whitehead Institute for Biomedlcd Research and Department of Biology Massachusetts Institute of Technology Cambridge, Massachusetts
Methods in Cell Biology Prepared under the Auspices of the American Society for Cell Biology
VOLUME 58 Green Fluorescent Proteins
Edited by
Kevin F. Sullivan Department of Cell Biology The Scripps Research Institute La Jolla, California
Steve A. Kay Department of Cell Biology The Scripps Research Institute La Jolla, California
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Cover photo credit (paperback edition only): Mitosis in human cells is revealed by fluorescence microscopy showing GFP-labeled chromosomes that have incorporated a histone H2B-GFP fusion protein (green) coupled with immunofluorescence imaging of microtubules (blue) and centromeres (orange). The image was acquired using a Bio-Rad MRC-1024 confocal microscope. Provided by Kevin F. Sullivan.
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CONTENTS
Contributors
xi
Preface
xv
1. Biophysics of the Green Fluorescent Protein F. G . Prendergast I. Introduction 11. Protein Folding and the Generation of This Chromophore 111. The Biophysics of the Fluorescence of GTP
IV. Resonance Energy Transfer Involving GFP V. Summary References
1 3
8 15 16 17
2. Understanding Structure-Function Relationships in the Aequorea victoria Green Fluorescent Protein Andrew B. Cubitt, Leslie A . Woollenweber, and Roger Heim
I. Introduction 11. Structure
111. IV. V. VI.
Chromophore Formation Effects of Mutations on the Spectroscopic Properties of GFP Effects of Mutations That Improve Thermosensitivity The Development of Enhanced Mutants References
19 20 21 22 26 27 29
3. Quantitative Imaging of the Green Fluorescent Protein (GFP) David W. Piston, George H . Patterson, and Susan M . Knobel
I. Introduction
3