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Wnt Signaling

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Cover of 'Wnt Signaling'

Table of Contents

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    Book Overview
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    Chapter 1 Visualizing Wnt Palmitoylation in Single Cells.
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    Chapter 2 Monitoring Wnt Protein Acylation Using an In Vitro Cyclo-Addition Reaction.
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    Chapter 3 Biochemical Methods to Analyze Wnt Protein Secretion.
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    Chapter 4 Methods for Studying Wnt Protein Modifications/Inactivations by Extracellular Enzymes, Tiki and Notum.
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    Chapter 5 Probing Wnt Receptor Turnover: A Critical Regulatory Point of Wnt Pathway.
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    Chapter 6 A Simple Method to Assess Abundance of the β-Catenin Signaling Pool in Cells.
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    Chapter 7 Wnt-Dependent Control of Cell Polarity in Cultured Cells.
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    Chapter 8 The Use of Chick Embryos to Study Wnt Activity Gradients.
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    Chapter 9 Monitoring Wnt Signaling in Zebrafish Using Fluorescent Biosensors.
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    Chapter 10 Wnt Signaling
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    Chapter 11 Wnt Signaling
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    Chapter 12 Delivery of the Porcupine Inhibitor WNT974 in Mice.
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    Chapter 13 Use of Primary Calvarial Osteoblasts to Evaluate the Function of Wnt Signaling in Osteogenesis.
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    Chapter 14 Monitoring Wnt/β-Catenin Signaling in Skin.
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    Chapter 15 The Generation of Organoids for Studying Wnt Signaling.
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    Chapter 16 Methods to Manipulate and Monitor Wnt Signaling in Human Pluripotent Stem Cells.
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    Chapter 17 Wnt Signaling
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    Chapter 18 Erratum to: Delivery of the Porcupine Inhibitor WNT974 in Mice
Attention for Chapter 14: Monitoring Wnt/β-Catenin Signaling in Skin.
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Chapter title
Monitoring Wnt/β-Catenin Signaling in Skin.
Chapter number 14
Book title
Wnt Signaling
Published in
Methods in molecular biology, January 2016
DOI 10.1007/978-1-4939-6393-5_14
Pubmed ID
Book ISBNs
978-1-4939-6391-1, 978-1-4939-6393-5
Authors

Amy T. Ku, Qi Miao, Hoang Nguyen

Editors

Quinn Barrett, Lawrence Lum

Abstract

Wnt signaling through β-catenin plays a crucial role in skin development and homeostasis. Disruption or hyperactivation of this pathway results in skin defects and diseases (Lim and Nusse, Cold Spring Harb Perspect Biol 5(2), 2013). Monitoring Wnt signaling in skin under normal and abnormal conditions is therefore critical to understand the role of this pathway in development and homeostasis.In this chapter, we provide methods to detect Wnt/β-catenin (canonical) signaling in the skin. We present a comprehensive list of Wnt reporter mice and detail the processing of skin tissue to detect reporter genes. From this list, we focus on the three most recent lines that, according to reports, are the most sensitive in skin. Additionally, we describe a protocol to detect nuclear β-catenin, a hallmark of active Wnt signaling, although this technique should be used with caution due to its limited sensitivity. The techniques outlined below will be useful for detecting active Wnt signaling in skin.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 15 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 15 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 3 20%
Student > Bachelor 2 13%
Student > Ph. D. Student 2 13%
Student > Doctoral Student 1 7%
Unspecified 1 7%
Other 1 7%
Unknown 5 33%
Readers by discipline Count As %
Biochemistry, Genetics and Molecular Biology 4 27%
Medicine and Dentistry 3 20%
Business, Management and Accounting 1 7%
Unspecified 1 7%
Agricultural and Biological Sciences 1 7%
Other 1 7%
Unknown 4 27%