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Crystal Structures of the Network-Forming Short-Arm Tips of the Laminin β1 and γ1 Chains

The heterotrimeric laminins are a defining component of basement membranes and essential for tissue formation and function in all animals. The three short arms of the cross-shaped laminin molecule are composed of one chain each and their tips mediate the formation of a polymeric network. The structu...

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Autores principales: Carafoli, Federico, Hussain, Sadaf-Ahmahni, Hohenester, Erhard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3409155/
https://www.ncbi.nlm.nih.gov/pubmed/22860131
http://dx.doi.org/10.1371/journal.pone.0042473
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author Carafoli, Federico
Hussain, Sadaf-Ahmahni
Hohenester, Erhard
author_facet Carafoli, Federico
Hussain, Sadaf-Ahmahni
Hohenester, Erhard
author_sort Carafoli, Federico
collection PubMed
description The heterotrimeric laminins are a defining component of basement membranes and essential for tissue formation and function in all animals. The three short arms of the cross-shaped laminin molecule are composed of one chain each and their tips mediate the formation of a polymeric network. The structural basis for laminin polymerisation is unknown. We have determined crystal structures of the short-arm tips of the mouse laminin β1 and γ1 chains, which are grossly similar to the previously determined structure of the corresponding α5 chain region. The short-arm tips consist of a laminin N-terminal (LN) domain that is attached like the head of a flower to a rod-like stem formed by tandem laminin-type epidermal growth factor-like (LE) domains. The LN domain is a β-sandwich with elaborate loop regions that differ between chains. The γ1 LN domain uniquely contains a calcium binding site. The LE domains have little regular structure and are stabilised by cysteines that are disulphide-linked 1–3, 2–4, 5–6 and 7–8 in all chains. The LN surface is not conserved across the α, β and γ chains, but within each chain subfamily there is a striking concentration of conserved residues on one face of the β-sandwich, while the opposite face invariably is shielded by glycans. We propose that the extensive conserved patches on the β and γ LN domains mediate the binding of these two chains to each other, and that the α chain LN domain subsequently binds to the composite β-γ surface. Mutations in the laminin β2 LN domain causing Pierson syndrome are likely to impair the folding of the β2 chain or its ability to form network interactions.
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spelling pubmed-34091552012-08-02 Crystal Structures of the Network-Forming Short-Arm Tips of the Laminin β1 and γ1 Chains Carafoli, Federico Hussain, Sadaf-Ahmahni Hohenester, Erhard PLoS One Research Article The heterotrimeric laminins are a defining component of basement membranes and essential for tissue formation and function in all animals. The three short arms of the cross-shaped laminin molecule are composed of one chain each and their tips mediate the formation of a polymeric network. The structural basis for laminin polymerisation is unknown. We have determined crystal structures of the short-arm tips of the mouse laminin β1 and γ1 chains, which are grossly similar to the previously determined structure of the corresponding α5 chain region. The short-arm tips consist of a laminin N-terminal (LN) domain that is attached like the head of a flower to a rod-like stem formed by tandem laminin-type epidermal growth factor-like (LE) domains. The LN domain is a β-sandwich with elaborate loop regions that differ between chains. The γ1 LN domain uniquely contains a calcium binding site. The LE domains have little regular structure and are stabilised by cysteines that are disulphide-linked 1–3, 2–4, 5–6 and 7–8 in all chains. The LN surface is not conserved across the α, β and γ chains, but within each chain subfamily there is a striking concentration of conserved residues on one face of the β-sandwich, while the opposite face invariably is shielded by glycans. We propose that the extensive conserved patches on the β and γ LN domains mediate the binding of these two chains to each other, and that the α chain LN domain subsequently binds to the composite β-γ surface. Mutations in the laminin β2 LN domain causing Pierson syndrome are likely to impair the folding of the β2 chain or its ability to form network interactions. Public Library of Science 2012-07-31 /pmc/articles/PMC3409155/ /pubmed/22860131 http://dx.doi.org/10.1371/journal.pone.0042473 Text en © 2012 Carafoli et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Carafoli, Federico
Hussain, Sadaf-Ahmahni
Hohenester, Erhard
Crystal Structures of the Network-Forming Short-Arm Tips of the Laminin β1 and γ1 Chains
title Crystal Structures of the Network-Forming Short-Arm Tips of the Laminin β1 and γ1 Chains
title_full Crystal Structures of the Network-Forming Short-Arm Tips of the Laminin β1 and γ1 Chains
title_fullStr Crystal Structures of the Network-Forming Short-Arm Tips of the Laminin β1 and γ1 Chains
title_full_unstemmed Crystal Structures of the Network-Forming Short-Arm Tips of the Laminin β1 and γ1 Chains
title_short Crystal Structures of the Network-Forming Short-Arm Tips of the Laminin β1 and γ1 Chains
title_sort crystal structures of the network-forming short-arm tips of the laminin β1 and γ1 chains
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3409155/
https://www.ncbi.nlm.nih.gov/pubmed/22860131
http://dx.doi.org/10.1371/journal.pone.0042473
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