Computer simulations of cell sorting due to differential adhesion

Detalhes bibliográficos
Autor(a) principal: Zhang, Ying
Data de Publicação: 2011
Outros Autores: Thomas, Gilberto Lima, Swat, Maciej, Shirinifard, Abbas, Glazier, James Alexander
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Repositório Institucional da UFRGS
Texto Completo: http://hdl.handle.net/10183/109517
Resumo: The actions of cell adhesion molecules, in particular, cadherins during embryonic development and morphogenesis more generally, regulate many aspects of cellular interactions, regulation and signaling. Often, a gradient of cadherin expression levels drives collective and relative cell motions generating macroscopic cell sorting. Computer simulations of cell sorting have focused on the interactions of cells with only a few discrete adhesion levels between cells, ignoring biologically observed continuous variations in expression levels and possible nonlinearities in molecular binding. In this paper, we present three models relating the surface density of cadherins to the net intercellular adhesion and interfacial tension for both discrete and continuous levels of cadherin expression. We then use then the Glazier-Graner-Hogeweg (GGH) model to investigate how variations in the distribution of the number of cadherins per cell and in the choice of binding model affect cell sorting. We find that an aggregate with a continuous variation in the level of a single type of cadherin molecule sorts more slowly than one with two levels. The rate of sorting increases strongly with the interfacial tension, which depends both on the maximum difference in number of cadherins per cell and on the binding model. Our approach helps connect signaling at the molecular level to tissue-level morphogenesis.
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spelling Zhang, YingThomas, Gilberto LimaSwat, MaciejShirinifard, AbbasGlazier, James Alexander2015-01-31T02:18:47Z20111932-6203http://hdl.handle.net/10183/109517000794597The actions of cell adhesion molecules, in particular, cadherins during embryonic development and morphogenesis more generally, regulate many aspects of cellular interactions, regulation and signaling. Often, a gradient of cadherin expression levels drives collective and relative cell motions generating macroscopic cell sorting. Computer simulations of cell sorting have focused on the interactions of cells with only a few discrete adhesion levels between cells, ignoring biologically observed continuous variations in expression levels and possible nonlinearities in molecular binding. In this paper, we present three models relating the surface density of cadherins to the net intercellular adhesion and interfacial tension for both discrete and continuous levels of cadherin expression. We then use then the Glazier-Graner-Hogeweg (GGH) model to investigate how variations in the distribution of the number of cadherins per cell and in the choice of binding model affect cell sorting. We find that an aggregate with a continuous variation in the level of a single type of cadherin molecule sorts more slowly than one with two levels. The rate of sorting increases strongly with the interfacial tension, which depends both on the maximum difference in number of cadherins per cell and on the binding model. Our approach helps connect signaling at the molecular level to tissue-level morphogenesis.application/pdfengPLoS ONE. San Francisco. Vol. 6, no. 10 (Oct. 2011), e24999, 11 p.CaderinasMorfogêneseComunicação celularMétodos computacionaisSimulaçãoComputer simulations of cell sorting due to differential adhesionEstrangeiroinfo:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/openAccessreponame:Repositório Institucional da UFRGSinstname:Universidade Federal do Rio Grande do Sul (UFRGS)instacron:UFRGSORIGINAL000794597.pdf000794597.pdfTexto completo (inglês)application/pdf1407231http://www.lume.ufrgs.br/bitstream/10183/109517/1/000794597.pdf513d0a131300015e55c5b317f9ace93cMD51TEXT000794597.pdf.txt000794597.pdf.txtExtracted Texttext/plain50810http://www.lume.ufrgs.br/bitstream/10183/109517/2/000794597.pdf.txt22de991e6596923937b83194c1e151c6MD52THUMBNAIL000794597.pdf.jpg000794597.pdf.jpgGenerated Thumbnailimage/jpeg2114http://www.lume.ufrgs.br/bitstream/10183/109517/3/000794597.pdf.jpg51991b4ecb9f9c4c1589b514c1488e27MD5310183/1095172023-08-11 03:52:42.560159oai:www.lume.ufrgs.br:10183/109517Repositório de PublicaçõesPUBhttps://lume.ufrgs.br/oai/requestopendoar:2023-08-11T06:52:42Repositório Institucional da UFRGS - Universidade Federal do Rio Grande do Sul (UFRGS)false
dc.title.pt_BR.fl_str_mv Computer simulations of cell sorting due to differential adhesion
title Computer simulations of cell sorting due to differential adhesion
spellingShingle Computer simulations of cell sorting due to differential adhesion
Zhang, Ying
Caderinas
Morfogênese
Comunicação celular
Métodos computacionais
Simulação
title_short Computer simulations of cell sorting due to differential adhesion
title_full Computer simulations of cell sorting due to differential adhesion
title_fullStr Computer simulations of cell sorting due to differential adhesion
title_full_unstemmed Computer simulations of cell sorting due to differential adhesion
title_sort Computer simulations of cell sorting due to differential adhesion
author Zhang, Ying
author_facet Zhang, Ying
Thomas, Gilberto Lima
Swat, Maciej
Shirinifard, Abbas
Glazier, James Alexander
author_role author
author2 Thomas, Gilberto Lima
Swat, Maciej
Shirinifard, Abbas
Glazier, James Alexander
author2_role author
author
author
author
dc.contributor.author.fl_str_mv Zhang, Ying
Thomas, Gilberto Lima
Swat, Maciej
Shirinifard, Abbas
Glazier, James Alexander
dc.subject.por.fl_str_mv Caderinas
Morfogênese
Comunicação celular
Métodos computacionais
Simulação
topic Caderinas
Morfogênese
Comunicação celular
Métodos computacionais
Simulação
description The actions of cell adhesion molecules, in particular, cadherins during embryonic development and morphogenesis more generally, regulate many aspects of cellular interactions, regulation and signaling. Often, a gradient of cadherin expression levels drives collective and relative cell motions generating macroscopic cell sorting. Computer simulations of cell sorting have focused on the interactions of cells with only a few discrete adhesion levels between cells, ignoring biologically observed continuous variations in expression levels and possible nonlinearities in molecular binding. In this paper, we present three models relating the surface density of cadherins to the net intercellular adhesion and interfacial tension for both discrete and continuous levels of cadherin expression. We then use then the Glazier-Graner-Hogeweg (GGH) model to investigate how variations in the distribution of the number of cadherins per cell and in the choice of binding model affect cell sorting. We find that an aggregate with a continuous variation in the level of a single type of cadherin molecule sorts more slowly than one with two levels. The rate of sorting increases strongly with the interfacial tension, which depends both on the maximum difference in number of cadherins per cell and on the binding model. Our approach helps connect signaling at the molecular level to tissue-level morphogenesis.
publishDate 2011
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dc.relation.ispartof.pt_BR.fl_str_mv PLoS ONE. San Francisco. Vol. 6, no. 10 (Oct. 2011), e24999, 11 p.
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