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A mathematical model for the dependence of keratin aggregate formation on the quantity of mutant keratin expressed in EGFP-K14 R125P keratinocytes

We examined keratin aggregate formation and the possible mechanisms involved. With this aim, we observed the effect that different ratios between mutant and wild-type keratins expressed in cultured keratinocytes may have on aggregate formation in vitro, as well as how keratin aggregate formation aff...

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Autores principales: Gouveia, Marcos, Sorčan, Tjaša, Zemljič-Jokhadar, Špela, Travasso, Rui D. M., Liović, Mirjana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8714116/
https://www.ncbi.nlm.nih.gov/pubmed/34962936
http://dx.doi.org/10.1371/journal.pone.0261227
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author Gouveia, Marcos
Sorčan, Tjaša
Zemljič-Jokhadar, Špela
Travasso, Rui D. M.
Liović, Mirjana
author_facet Gouveia, Marcos
Sorčan, Tjaša
Zemljič-Jokhadar, Špela
Travasso, Rui D. M.
Liović, Mirjana
author_sort Gouveia, Marcos
collection PubMed
description We examined keratin aggregate formation and the possible mechanisms involved. With this aim, we observed the effect that different ratios between mutant and wild-type keratins expressed in cultured keratinocytes may have on aggregate formation in vitro, as well as how keratin aggregate formation affects the mechanical properties of cells at the cell cortex. To this end we prepared clones with expression rates as close as possible to 25%, 50% and 100% of the EGFP-K14 proteins (either WT or R125P and V270M mutants). Our results showed that only in the case of the 25% EGFP-K14 R125P mutant significant differences could be seen. Namely, we observed in this case the largest accumulation of keratin aggregates and a significant reduction in cell stiffness. To gain insight into the possible mechanisms behind this observation, we extended our previous mathematical model of keratin dynamics by implementing a more complex reaction network that considers the coexistence of wild-type and mutant keratins in the cell. The new model, consisting of a set of coupled, non-linear, ordinary differential equations, allowed us to draw conclusions regarding the relative amounts of intermediate filaments and aggregates in cells, and suggested that aggregate formation by asymmetric binding between wild-type and mutant keratins could explain the data obtained on cells grown in culture.
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spelling pubmed-87141162021-12-29 A mathematical model for the dependence of keratin aggregate formation on the quantity of mutant keratin expressed in EGFP-K14 R125P keratinocytes Gouveia, Marcos Sorčan, Tjaša Zemljič-Jokhadar, Špela Travasso, Rui D. M. Liović, Mirjana PLoS One Research Article We examined keratin aggregate formation and the possible mechanisms involved. With this aim, we observed the effect that different ratios between mutant and wild-type keratins expressed in cultured keratinocytes may have on aggregate formation in vitro, as well as how keratin aggregate formation affects the mechanical properties of cells at the cell cortex. To this end we prepared clones with expression rates as close as possible to 25%, 50% and 100% of the EGFP-K14 proteins (either WT or R125P and V270M mutants). Our results showed that only in the case of the 25% EGFP-K14 R125P mutant significant differences could be seen. Namely, we observed in this case the largest accumulation of keratin aggregates and a significant reduction in cell stiffness. To gain insight into the possible mechanisms behind this observation, we extended our previous mathematical model of keratin dynamics by implementing a more complex reaction network that considers the coexistence of wild-type and mutant keratins in the cell. The new model, consisting of a set of coupled, non-linear, ordinary differential equations, allowed us to draw conclusions regarding the relative amounts of intermediate filaments and aggregates in cells, and suggested that aggregate formation by asymmetric binding between wild-type and mutant keratins could explain the data obtained on cells grown in culture. Public Library of Science 2021-12-28 /pmc/articles/PMC8714116/ /pubmed/34962936 http://dx.doi.org/10.1371/journal.pone.0261227 Text en © 2021 Gouveia et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Gouveia, Marcos
Sorčan, Tjaša
Zemljič-Jokhadar, Špela
Travasso, Rui D. M.
Liović, Mirjana
A mathematical model for the dependence of keratin aggregate formation on the quantity of mutant keratin expressed in EGFP-K14 R125P keratinocytes
title A mathematical model for the dependence of keratin aggregate formation on the quantity of mutant keratin expressed in EGFP-K14 R125P keratinocytes
title_full A mathematical model for the dependence of keratin aggregate formation on the quantity of mutant keratin expressed in EGFP-K14 R125P keratinocytes
title_fullStr A mathematical model for the dependence of keratin aggregate formation on the quantity of mutant keratin expressed in EGFP-K14 R125P keratinocytes
title_full_unstemmed A mathematical model for the dependence of keratin aggregate formation on the quantity of mutant keratin expressed in EGFP-K14 R125P keratinocytes
title_short A mathematical model for the dependence of keratin aggregate formation on the quantity of mutant keratin expressed in EGFP-K14 R125P keratinocytes
title_sort mathematical model for the dependence of keratin aggregate formation on the quantity of mutant keratin expressed in egfp-k14 r125p keratinocytes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8714116/
https://www.ncbi.nlm.nih.gov/pubmed/34962936
http://dx.doi.org/10.1371/journal.pone.0261227
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