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Plant Receptor Kinases

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Cover of 'Plant Receptor Kinases'

Table of Contents

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    Book Overview
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    Chapter 1 Expression of Plant Receptor Kinases in E. coli
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    Chapter 2 Expression of Plant Receptor Kinases in Yeast
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    Chapter 3 Expression of Plant Receptor Kinases in Tobacco BY-2 Cells
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    Chapter 4 Cell-Free Synthesis of Plant Receptor Kinases
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    Chapter 5 Purification of Plant Receptor Kinases from Plant Plasma Membranes
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    Chapter 6 Photoaffinity Labeling of Plant Receptor Kinases
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    Chapter 7 Quantitative Detection of Oxidative Burst upon Activation of Plant Receptor Kinases
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    Chapter 8 Extraction and Curation of Gene Models for Plant Receptor Kinases for Phylogenetic Analysis
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    Chapter 9 In Silico Prediction of Ligand-Binding Sites of Plant Receptor Kinases Using Conservation Mapping
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    Chapter 10 Co-immunoprecipitation of Plant Receptor Kinases
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    Chapter 11 Autophosphorylation Assays Using Plant Receptor Kinases Synthesized in Cell-Free Systems
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    Chapter 12 Investigation of Autophosphorylation Sites of Plant Receptor Kinases and Phosphorylation of Interacting Partners
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    Chapter 13 In Vitro Assessment of Guanylyl Cyclase Activity of Plant Receptor Kinases
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    Chapter 14 BiFC Assay to Detect Calmodulin Binding to Plant Receptor Kinases
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    Chapter 15 Pull-down Assay to Characterize Ca 2+ /Calmodulin Binding to Plant Receptor Kinases
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    Chapter 16 The Use of FRET/FLIM to Study Proteins Interacting with Plant Receptor Kinases
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    Chapter 17 Detection and Analyses of Endocytosis of Plant Receptor Kinases
Attention for Chapter 5: Purification of Plant Receptor Kinases from Plant Plasma Membranes
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Chapter title
Purification of Plant Receptor Kinases from Plant Plasma Membranes
Chapter number 5
Book title
Plant Receptor Kinases
Published in
Methods in molecular biology, June 2017
DOI 10.1007/978-1-4939-7063-6_5
Pubmed ID
Book ISBNs
978-1-4939-7062-9, 978-1-4939-7063-6
Authors

Lee, Jin Suk, Jin Suk Lee

Abstract

Receptor kinases play a central role in various biological processes, but due to their low abundance and highly hydrophobic and dynamic nature, only a few of them have been functionally characterized, and their partners and ligands remain unidentified. Receptor protein extraction and purification from plant tissues is one of the most challenging steps for the success of various biochemical analyses to characterize their function. Immunoprecipitation is a widely used and selective method for enriching or purifying a specific protein. Here we describe two different optimized protein purification protocols, batch and on-chip immunoprecipitation, which efficiently isolate plant membrane receptor kinases for functional analysis.