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The Fas/FADD death domain complex structure unravels signaling by receptor clustering

The Death Inducing Signaling Complex (DISC) formed by Fas receptor, FADD and caspase-8 is a pivotal trigger of apoptosis1-3. The Fas/FADD DISC represents a receptor platform, which once assembled initiates the induction of programmed cell death. A highly oligomeric network of homotypic protein inter...

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Autores principales: Scott, Fiona L., Stec, Boguslaw, Pop, Cristina, Dobaczewska, Małgorzata K., Lee, JeongEun J., Monosov, Edward, Robinson, Howard, Salvesen, Guy S., Schwarzenbacher, Robert, Riedl, Stefan J.
Formato: Texto
Lenguaje:English
Publicado: 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2661029/
https://www.ncbi.nlm.nih.gov/pubmed/19118384
http://dx.doi.org/10.1038/nature07606
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author Scott, Fiona L.
Stec, Boguslaw
Pop, Cristina
Dobaczewska, Małgorzata K.
Lee, JeongEun J.
Monosov, Edward
Robinson, Howard
Salvesen, Guy S.
Schwarzenbacher, Robert
Riedl, Stefan J.
author_facet Scott, Fiona L.
Stec, Boguslaw
Pop, Cristina
Dobaczewska, Małgorzata K.
Lee, JeongEun J.
Monosov, Edward
Robinson, Howard
Salvesen, Guy S.
Schwarzenbacher, Robert
Riedl, Stefan J.
author_sort Scott, Fiona L.
collection PubMed
description The Death Inducing Signaling Complex (DISC) formed by Fas receptor, FADD and caspase-8 is a pivotal trigger of apoptosis1-3. The Fas/FADD DISC represents a receptor platform, which once assembled initiates the induction of programmed cell death. A highly oligomeric network of homotypic protein interactions comprised of the death domains (DD) of Fas and FADD is at the center of DISC formation4, 5. Thus characterising the mechanistic basis for the Fas/FADD interaction is paramount for understanding DISC signaling but has remained enigmatic largely due to a lack of structural data. We have successfully formed and isolated the Fas/FADD DD complex and here we report the 2.7 Å crystal structure. The complex shows a tetrameric arrangement of four FADD DDs bound to four Fas DDs. We show that an opening of the Fas DD exposes the FADD binding site and simultaneously generates a Fas/Fas bridge. The result is a regulatory Fas/FADD complex bridge governed by weak protein:protein interactions revealing a model where the complex functions as a mechanistic switch. This switch prevents accidental DISC assembly, yet allows for highly processive DISC formation and clustering upon a sufficient stimulus. Thus besides depicting a previously unknown mode of death domain interactions, these results further uncover a mechanism for receptor signaling solely by oligomerization and clustering events.
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spelling pubmed-26610292009-08-19 The Fas/FADD death domain complex structure unravels signaling by receptor clustering Scott, Fiona L. Stec, Boguslaw Pop, Cristina Dobaczewska, Małgorzata K. Lee, JeongEun J. Monosov, Edward Robinson, Howard Salvesen, Guy S. Schwarzenbacher, Robert Riedl, Stefan J. Nature Article The Death Inducing Signaling Complex (DISC) formed by Fas receptor, FADD and caspase-8 is a pivotal trigger of apoptosis1-3. The Fas/FADD DISC represents a receptor platform, which once assembled initiates the induction of programmed cell death. A highly oligomeric network of homotypic protein interactions comprised of the death domains (DD) of Fas and FADD is at the center of DISC formation4, 5. Thus characterising the mechanistic basis for the Fas/FADD interaction is paramount for understanding DISC signaling but has remained enigmatic largely due to a lack of structural data. We have successfully formed and isolated the Fas/FADD DD complex and here we report the 2.7 Å crystal structure. The complex shows a tetrameric arrangement of four FADD DDs bound to four Fas DDs. We show that an opening of the Fas DD exposes the FADD binding site and simultaneously generates a Fas/Fas bridge. The result is a regulatory Fas/FADD complex bridge governed by weak protein:protein interactions revealing a model where the complex functions as a mechanistic switch. This switch prevents accidental DISC assembly, yet allows for highly processive DISC formation and clustering upon a sufficient stimulus. Thus besides depicting a previously unknown mode of death domain interactions, these results further uncover a mechanism for receptor signaling solely by oligomerization and clustering events. 2008-12-31 2009-02-19 /pmc/articles/PMC2661029/ /pubmed/19118384 http://dx.doi.org/10.1038/nature07606 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Scott, Fiona L.
Stec, Boguslaw
Pop, Cristina
Dobaczewska, Małgorzata K.
Lee, JeongEun J.
Monosov, Edward
Robinson, Howard
Salvesen, Guy S.
Schwarzenbacher, Robert
Riedl, Stefan J.
The Fas/FADD death domain complex structure unravels signaling by receptor clustering
title The Fas/FADD death domain complex structure unravels signaling by receptor clustering
title_full The Fas/FADD death domain complex structure unravels signaling by receptor clustering
title_fullStr The Fas/FADD death domain complex structure unravels signaling by receptor clustering
title_full_unstemmed The Fas/FADD death domain complex structure unravels signaling by receptor clustering
title_short The Fas/FADD death domain complex structure unravels signaling by receptor clustering
title_sort fas/fadd death domain complex structure unravels signaling by receptor clustering
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2661029/
https://www.ncbi.nlm.nih.gov/pubmed/19118384
http://dx.doi.org/10.1038/nature07606
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