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Large-Scale Modelling of the Divergent Spectrin Repeats in Nesprins: Giant Modular Proteins

Nesprin-1 and nesprin-2 are nuclear envelope (NE) proteins characterized by a common structure of an SR (spectrin repeat) rod domain and a C-terminal transmembrane KASH [Klarsicht–ANC–Syne-homology] domain and display N-terminal actin-binding CH (calponin homology) domains. Mutations in these protei...

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Autores principales: Autore, Flavia, Pfuhl, Mark, Quan, Xueping, Williams, Aisling, Roberts, Roland G., Shanahan, Catherine M., Fraternali, Franca
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3646009/
https://www.ncbi.nlm.nih.gov/pubmed/23671687
http://dx.doi.org/10.1371/journal.pone.0063633
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author Autore, Flavia
Pfuhl, Mark
Quan, Xueping
Williams, Aisling
Roberts, Roland G.
Shanahan, Catherine M.
Fraternali, Franca
author_facet Autore, Flavia
Pfuhl, Mark
Quan, Xueping
Williams, Aisling
Roberts, Roland G.
Shanahan, Catherine M.
Fraternali, Franca
author_sort Autore, Flavia
collection PubMed
description Nesprin-1 and nesprin-2 are nuclear envelope (NE) proteins characterized by a common structure of an SR (spectrin repeat) rod domain and a C-terminal transmembrane KASH [Klarsicht–ANC–Syne-homology] domain and display N-terminal actin-binding CH (calponin homology) domains. Mutations in these proteins have been described in Emery-Dreifuss muscular dystrophy and attributed to disruptions of interactions at the NE with nesprins binding partners, lamin A/C and emerin. Evolutionary analysis of the rod domains of the nesprins has shown that they are almost entirely composed of unbroken SR-like structures. We present a bioinformatical approach to accurate definition of the boundaries of each SR by comparison with canonical SR structures, allowing for a large-scale homology modelling of the 74 nesprin-1 and 56 nesprin-2 SRs. The exposed and evolutionary conserved residues identify important pbs for protein-protein interactions that can guide tailored binding experiments. Most importantly, the bioinformatics analyses and the 3D models have been central to the design of selected constructs for protein expression. 1D NMR and CD spectra have been performed of the expressed SRs, showing a folded, stable, high content α-helical structure, typical of SRs. Molecular Dynamics simulations have been performed to study the structural and elastic properties of consecutive SRs, revealing insights in the mechanical properties adopted by these modules in the cell.
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spelling pubmed-36460092013-05-13 Large-Scale Modelling of the Divergent Spectrin Repeats in Nesprins: Giant Modular Proteins Autore, Flavia Pfuhl, Mark Quan, Xueping Williams, Aisling Roberts, Roland G. Shanahan, Catherine M. Fraternali, Franca PLoS One Research Article Nesprin-1 and nesprin-2 are nuclear envelope (NE) proteins characterized by a common structure of an SR (spectrin repeat) rod domain and a C-terminal transmembrane KASH [Klarsicht–ANC–Syne-homology] domain and display N-terminal actin-binding CH (calponin homology) domains. Mutations in these proteins have been described in Emery-Dreifuss muscular dystrophy and attributed to disruptions of interactions at the NE with nesprins binding partners, lamin A/C and emerin. Evolutionary analysis of the rod domains of the nesprins has shown that they are almost entirely composed of unbroken SR-like structures. We present a bioinformatical approach to accurate definition of the boundaries of each SR by comparison with canonical SR structures, allowing for a large-scale homology modelling of the 74 nesprin-1 and 56 nesprin-2 SRs. The exposed and evolutionary conserved residues identify important pbs for protein-protein interactions that can guide tailored binding experiments. Most importantly, the bioinformatics analyses and the 3D models have been central to the design of selected constructs for protein expression. 1D NMR and CD spectra have been performed of the expressed SRs, showing a folded, stable, high content α-helical structure, typical of SRs. Molecular Dynamics simulations have been performed to study the structural and elastic properties of consecutive SRs, revealing insights in the mechanical properties adopted by these modules in the cell. Public Library of Science 2013-05-06 /pmc/articles/PMC3646009/ /pubmed/23671687 http://dx.doi.org/10.1371/journal.pone.0063633 Text en © 2013 Autore 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
Autore, Flavia
Pfuhl, Mark
Quan, Xueping
Williams, Aisling
Roberts, Roland G.
Shanahan, Catherine M.
Fraternali, Franca
Large-Scale Modelling of the Divergent Spectrin Repeats in Nesprins: Giant Modular Proteins
title Large-Scale Modelling of the Divergent Spectrin Repeats in Nesprins: Giant Modular Proteins
title_full Large-Scale Modelling of the Divergent Spectrin Repeats in Nesprins: Giant Modular Proteins
title_fullStr Large-Scale Modelling of the Divergent Spectrin Repeats in Nesprins: Giant Modular Proteins
title_full_unstemmed Large-Scale Modelling of the Divergent Spectrin Repeats in Nesprins: Giant Modular Proteins
title_short Large-Scale Modelling of the Divergent Spectrin Repeats in Nesprins: Giant Modular Proteins
title_sort large-scale modelling of the divergent spectrin repeats in nesprins: giant modular proteins
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3646009/
https://www.ncbi.nlm.nih.gov/pubmed/23671687
http://dx.doi.org/10.1371/journal.pone.0063633
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