High-resolution X-ray structure of the trimeric Scar/WAVE-complex precursor Brk1.

The Scar/WAVE-complex links upstream Rho-GTPase signaling to the activation of the conserved Arp2/3-complex. Scar/WAVE-induced and Arp2/3-complex-mediated actin nucleation is crucial for actin assembly in protruding lamellipodia to drive cell migration. The heteropentameric Scar/WAVE-complex is comp...

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Main Authors: Joern Linkner, Gregor Witte, Theresia Stradal, Ute Curth, Jan Faix
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3119050?pdf=render
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spelling doaj-433dc25552da4a7dbf0f8d270ce1ba652020-11-25T02:42:35ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-0166e2132710.1371/journal.pone.0021327High-resolution X-ray structure of the trimeric Scar/WAVE-complex precursor Brk1.Joern LinknerGregor WitteTheresia StradalUte CurthJan FaixThe Scar/WAVE-complex links upstream Rho-GTPase signaling to the activation of the conserved Arp2/3-complex. Scar/WAVE-induced and Arp2/3-complex-mediated actin nucleation is crucial for actin assembly in protruding lamellipodia to drive cell migration. The heteropentameric Scar/WAVE-complex is composed of Scar/WAVE, Abi, Nap, Pir and a small polypeptide Brk1/HSPC300, and recent work suggested that free Brk1 serves as a homooligomeric precursor in the assembly of this complex. Here we characterized the Brk1 trimer from Dictyostelium by analytical ultracentrifugation and gelfiltration. We show for the first time its dissociation at concentrations in the nanomolar range as well as an exchange of subunits within different DdBrk1 containing complexes. Moreover, we determined the three-dimensional structure of DdBrk1 at 1.5 Å resolution by X-ray crystallography. Three chains of DdBrk1 are associated with each other forming a parallel triple coiled-coil bundle. Notably, this structure is highly similar to the heterotrimeric α-helical bundle of HSPC300/WAVE1/Abi2 within the human Scar/WAVE-complex. This finding, together with the fact that Brk1 is collectively sandwiched by the remaining subunits and also constitutes the main subunit connecting the triple-coil domain of the HSPC300/WAVE1/Abi2/ heterotrimer to Sra1(Pir1), implies a critical function of this subunit in the assembly process of the entire Scar/WAVE-complex.http://europepmc.org/articles/PMC3119050?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Joern Linkner
Gregor Witte
Theresia Stradal
Ute Curth
Jan Faix
spellingShingle Joern Linkner
Gregor Witte
Theresia Stradal
Ute Curth
Jan Faix
High-resolution X-ray structure of the trimeric Scar/WAVE-complex precursor Brk1.
PLoS ONE
author_facet Joern Linkner
Gregor Witte
Theresia Stradal
Ute Curth
Jan Faix
author_sort Joern Linkner
title High-resolution X-ray structure of the trimeric Scar/WAVE-complex precursor Brk1.
title_short High-resolution X-ray structure of the trimeric Scar/WAVE-complex precursor Brk1.
title_full High-resolution X-ray structure of the trimeric Scar/WAVE-complex precursor Brk1.
title_fullStr High-resolution X-ray structure of the trimeric Scar/WAVE-complex precursor Brk1.
title_full_unstemmed High-resolution X-ray structure of the trimeric Scar/WAVE-complex precursor Brk1.
title_sort high-resolution x-ray structure of the trimeric scar/wave-complex precursor brk1.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2011-01-01
description The Scar/WAVE-complex links upstream Rho-GTPase signaling to the activation of the conserved Arp2/3-complex. Scar/WAVE-induced and Arp2/3-complex-mediated actin nucleation is crucial for actin assembly in protruding lamellipodia to drive cell migration. The heteropentameric Scar/WAVE-complex is composed of Scar/WAVE, Abi, Nap, Pir and a small polypeptide Brk1/HSPC300, and recent work suggested that free Brk1 serves as a homooligomeric precursor in the assembly of this complex. Here we characterized the Brk1 trimer from Dictyostelium by analytical ultracentrifugation and gelfiltration. We show for the first time its dissociation at concentrations in the nanomolar range as well as an exchange of subunits within different DdBrk1 containing complexes. Moreover, we determined the three-dimensional structure of DdBrk1 at 1.5 Å resolution by X-ray crystallography. Three chains of DdBrk1 are associated with each other forming a parallel triple coiled-coil bundle. Notably, this structure is highly similar to the heterotrimeric α-helical bundle of HSPC300/WAVE1/Abi2 within the human Scar/WAVE-complex. This finding, together with the fact that Brk1 is collectively sandwiched by the remaining subunits and also constitutes the main subunit connecting the triple-coil domain of the HSPC300/WAVE1/Abi2/ heterotrimer to Sra1(Pir1), implies a critical function of this subunit in the assembly process of the entire Scar/WAVE-complex.
url http://europepmc.org/articles/PMC3119050?pdf=render
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