Literature DB >> 11035039

The ectodermal dysplasia receptor activates the nuclear factor-kappaB, JNK, and cell death pathways and binds to ectodysplasin A.

A Kumar1, M T Eby, S Sinha, A Jasmin, P M Chaudhary.   

Abstract

The ectodermal dysplasia receptor (EDAR) is a recently isolated member of the tumor necrosis factor receptor family that has been shown to play a key role in the process of ectodermal differentiation. We present evidence that EDAR is capable of activating the nuclear factor-kappaB, JNK, and caspase-independent cell death pathways and that these activities are impaired in mutants lacking its death domain or those associated with anhidrotic ectodermal dysplasia and the downless phenotype. Although EDAR possesses a death domain, it did not interact with the death domain-containing adaptor proteins TRADD and FADD. EDAR successfully interacted with various TRAF family members; however, a dominant-negative mutant of TRAF2 was incapable of blocking EDAR-induced nuclear factor-kappaB or JNK activation. Collectively, the above results suggest that EDAR utilizes a novel signal transduction pathway. Finally, ectodysplasin A can physically interact with the extracellular domain of EDAR and thus represents its biological ligand.

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Year:  2000        PMID: 11035039     DOI: 10.1074/jbc.M008356200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  44 in total

1.  Downstream activation of NF-κB in the EDA-A1/EDAR signalling in Sjögren's syndrome and its regulation by the ubiquitin-editing enzyme A20.

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Review 2.  EDA signaling and skin appendage development.

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Journal:  J Immunol       Date:  2010-09-24       Impact factor: 5.422

4.  The Ectodysplasin receptor EDAR acts as a tumor suppressor in melanoma by conditionally inducing cell death.

Authors:  Jonathan Vial; Amélie Royet; Philippe Cassier; Antonin Tortereau; Sarah Dinvaut; Denis Maillet; Lise Gratadou-Hupon; Marion Creveaux; Alexa Sadier; Garance Tondeur; Sophie Léon; Lauriane Depaepe; Sophie Pantalacci; Arnaud de la Fouchardière; Olivier Micheau; Stéphane Dalle; Vincent Laudet; Patrick Mehlen; Marie Castets
Journal:  Cell Death Differ       Date:  2018-05-31       Impact factor: 15.828

5.  Molecular dynamics of Dkk4 modulates Wnt action and regulates meibomian gland development.

Authors:  Jian Sima; Yulan Piao; Yaohui Chen; David Schlessinger
Journal:  Development       Date:  2016-11-18       Impact factor: 6.868

6.  Gata6 promotes hair follicle progenitor cell renewal by genome maintenance during proliferation.

Authors:  Alex B Wang; Ying V Zhang; Tudorita Tumbar
Journal:  EMBO J       Date:  2016-12-01       Impact factor: 11.598

Review 7.  Sweat gland progenitors in development, homeostasis, and wound repair.

Authors:  Catherine Lu; Elaine Fuchs
Journal:  Cold Spring Harb Perspect Med       Date:  2014-02-01       Impact factor: 6.915

Review 8.  Infections in patients with inherited defects in phagocytic function.

Authors:  Timothy Andrews; Kathleen E Sullivan
Journal:  Clin Microbiol Rev       Date:  2003-10       Impact factor: 26.132

9.  Inflammatory mediator TAK1 regulates hair follicle morphogenesis and anagen induction shown by using keratinocyte-specific TAK1-deficient mice.

Authors:  Koji Sayama; Kentaro Kajiya; Koji Sugawara; Shintaro Sato; Satoshi Hirakawa; Yuji Shirakata; Yasushi Hanakawa; Xiuju Dai; Yumiko Ishimatsu-Tsuji; Daniel Metzger; Pierre Chambon; Shizuo Akira; Ralf Paus; Jiro Kishimoto; Koji Hashimoto
Journal:  PLoS One       Date:  2010-06-23       Impact factor: 3.240

10.  Distinct impacts of Eda and Edar loss of function on the mouse dentition.

Authors:  Cyril Charles; Sophie Pantalacci; Paul Tafforeau; Denis Headon; Vincent Laudet; Laurent Viriot
Journal:  PLoS One       Date:  2009-04-02       Impact factor: 3.240

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