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Impact of N-Terminal Tags on De Novo Vimentin Intermediate Filament Assembly

Vimentin, a type III intermediate filament protein, is found in most cells along with microfilaments and microtubules. It has been shown that the head domain folds back to associate with the rod domain and this association is essential for filament assembly. The N-terminally tagged vimentin has been...

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Autores principales: Usman, Saima, Aldehlawi, Hebah, Nguyen, Thuan Khanh Ngoc, Teh, Muy-Teck, Waseem, Ahmad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9181571/
https://www.ncbi.nlm.nih.gov/pubmed/35683030
http://dx.doi.org/10.3390/ijms23116349
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author Usman, Saima
Aldehlawi, Hebah
Nguyen, Thuan Khanh Ngoc
Teh, Muy-Teck
Waseem, Ahmad
author_facet Usman, Saima
Aldehlawi, Hebah
Nguyen, Thuan Khanh Ngoc
Teh, Muy-Teck
Waseem, Ahmad
author_sort Usman, Saima
collection PubMed
description Vimentin, a type III intermediate filament protein, is found in most cells along with microfilaments and microtubules. It has been shown that the head domain folds back to associate with the rod domain and this association is essential for filament assembly. The N-terminally tagged vimentin has been widely used to label the cytoskeleton in live cell imaging. Although there is previous evidence that EGFP tagged vimentin fails to form filaments but is able to integrate into a pre-existing network, no study has systematically investigated or established a molecular basis for this observation. To determine whether a tag would affect de novo filament assembly, we used vimentin fused at the N-terminus with two different sized tags, AcGFP (239 residues, 27 kDa) and 3 × FLAG (22 residues; 2.4 kDa) to assemble into filaments in two vimentin-deficient epithelial cells, MCF-7 and A431. We showed that regardless of tag size, N-terminally tagged vimentin aggregated into globules with a significant proportion co-aligning with β-catenin at cell–cell junctions. However, the tagged vimentin aggregates could form filaments upon adding untagged vimentin at a ratio of 1:1 or when introduced into cells containing pre-existing filaments. The resultant filament network containing a mixture of tagged and untagged vimentin was less stable compared to that formed by only untagged vimentin. The data suggest that placing a tag at the N-terminus may create steric hinderance in case of a large tag (AcGFP) or electrostatic repulsion in case of highly charged tag (3 × FLAG) perhaps inducing a conformational change, which deleteriously affects the association between head and rod domains. Taken together our results shows that a free N-terminus is essential for filament assembly as N-terminally tagged vimentin is not only incapable of forming filaments, but it also destabilises when integrated into a pre-existing network.
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spelling pubmed-91815712022-06-10 Impact of N-Terminal Tags on De Novo Vimentin Intermediate Filament Assembly Usman, Saima Aldehlawi, Hebah Nguyen, Thuan Khanh Ngoc Teh, Muy-Teck Waseem, Ahmad Int J Mol Sci Article Vimentin, a type III intermediate filament protein, is found in most cells along with microfilaments and microtubules. It has been shown that the head domain folds back to associate with the rod domain and this association is essential for filament assembly. The N-terminally tagged vimentin has been widely used to label the cytoskeleton in live cell imaging. Although there is previous evidence that EGFP tagged vimentin fails to form filaments but is able to integrate into a pre-existing network, no study has systematically investigated or established a molecular basis for this observation. To determine whether a tag would affect de novo filament assembly, we used vimentin fused at the N-terminus with two different sized tags, AcGFP (239 residues, 27 kDa) and 3 × FLAG (22 residues; 2.4 kDa) to assemble into filaments in two vimentin-deficient epithelial cells, MCF-7 and A431. We showed that regardless of tag size, N-terminally tagged vimentin aggregated into globules with a significant proportion co-aligning with β-catenin at cell–cell junctions. However, the tagged vimentin aggregates could form filaments upon adding untagged vimentin at a ratio of 1:1 or when introduced into cells containing pre-existing filaments. The resultant filament network containing a mixture of tagged and untagged vimentin was less stable compared to that formed by only untagged vimentin. The data suggest that placing a tag at the N-terminus may create steric hinderance in case of a large tag (AcGFP) or electrostatic repulsion in case of highly charged tag (3 × FLAG) perhaps inducing a conformational change, which deleteriously affects the association between head and rod domains. Taken together our results shows that a free N-terminus is essential for filament assembly as N-terminally tagged vimentin is not only incapable of forming filaments, but it also destabilises when integrated into a pre-existing network. MDPI 2022-06-06 /pmc/articles/PMC9181571/ /pubmed/35683030 http://dx.doi.org/10.3390/ijms23116349 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Usman, Saima
Aldehlawi, Hebah
Nguyen, Thuan Khanh Ngoc
Teh, Muy-Teck
Waseem, Ahmad
Impact of N-Terminal Tags on De Novo Vimentin Intermediate Filament Assembly
title Impact of N-Terminal Tags on De Novo Vimentin Intermediate Filament Assembly
title_full Impact of N-Terminal Tags on De Novo Vimentin Intermediate Filament Assembly
title_fullStr Impact of N-Terminal Tags on De Novo Vimentin Intermediate Filament Assembly
title_full_unstemmed Impact of N-Terminal Tags on De Novo Vimentin Intermediate Filament Assembly
title_short Impact of N-Terminal Tags on De Novo Vimentin Intermediate Filament Assembly
title_sort impact of n-terminal tags on de novo vimentin intermediate filament assembly
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9181571/
https://www.ncbi.nlm.nih.gov/pubmed/35683030
http://dx.doi.org/10.3390/ijms23116349
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