Differences in the collective behaviour of the genes in the cancerous and normal cell from the perspective of inverse statistical physics
Cancer is commonly known as a disease of the genes. Almost all the studies about cancers are based on finding the effective genes for each cancer and most of the efforts for diagnosing or curing cancer have faced several challenges. From the point of view of complexity, collective behaviors that hav...
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Isfahan University of Technology
2019-03-01
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doaj-1f1ae46bb1014ea0a1b4ae8ce36a9c272020-11-25T02:10:49ZengIsfahan University of TechnologyIranian Journal of Physics Research1682-69572345-36642019-03-01184633641Differences in the collective behaviour of the genes in the cancerous and normal cell from the perspective of inverse statistical physicsA Karimi Rizi0M Zamani1A Shirazi2GH R Jafari3 Department of Physics, University of Shahid Beheshti, Tehran, Iran Department of Physics, University of Shahid Beheshti, Tehran, Iran Department of Physics, University of Shahid Beheshti, Tehran, Iran Department of Physics, University of Shahid Beheshti, Tehran, Iran Cancer is commonly known as a disease of the genes. Almost all the studies about cancers are based on finding the effective genes for each cancer and most of the efforts for diagnosing or curing cancer have faced several challenges. From the point of view of complexity, collective behaviors that have emerged from the interactions of many-body systems are not solely describable by knowing about the system’s building blocks (genes) and we cannot understand what happens at a higher level of organization by just knowing how each element works at a lower scale! We know, each gene’s expression affects other genes expression levels and this correlation causes a collective behavior which that alters the expression levels of the genes. In this study, instead of following the common reductionist view, we use the techniques of inverse statistical physics and infer the interaction matrix of the genes. Then, by applying the balance theory, we show the differences between the social behavior of cancer genes and normal genes as a whole. Our results show that the energy distribution of triads formed in the interaction networks behaves in a power-law manner and the energy of the normal network is higher than the cancer network.http://ijpr.iut.ac.ir/browse.php?a_code=A-10-943-1&slc_lang=en&sid=1cancerinverse statistical physicsinference problemcomplex networksgene regulatory networkbalance theory |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
A Karimi Rizi M Zamani A Shirazi GH R Jafari |
spellingShingle |
A Karimi Rizi M Zamani A Shirazi GH R Jafari Differences in the collective behaviour of the genes in the cancerous and normal cell from the perspective of inverse statistical physics Iranian Journal of Physics Research cancer inverse statistical physics inference problem complex networks gene regulatory network balance theory |
author_facet |
A Karimi Rizi M Zamani A Shirazi GH R Jafari |
author_sort |
A Karimi Rizi |
title |
Differences in the collective behaviour of the genes in the cancerous and normal cell from the perspective of inverse statistical physics |
title_short |
Differences in the collective behaviour of the genes in the cancerous and normal cell from the perspective of inverse statistical physics |
title_full |
Differences in the collective behaviour of the genes in the cancerous and normal cell from the perspective of inverse statistical physics |
title_fullStr |
Differences in the collective behaviour of the genes in the cancerous and normal cell from the perspective of inverse statistical physics |
title_full_unstemmed |
Differences in the collective behaviour of the genes in the cancerous and normal cell from the perspective of inverse statistical physics |
title_sort |
differences in the collective behaviour of the genes in the cancerous and normal cell from the perspective of inverse statistical physics |
publisher |
Isfahan University of Technology |
series |
Iranian Journal of Physics Research |
issn |
1682-6957 2345-3664 |
publishDate |
2019-03-01 |
description |
Cancer is commonly known as a disease of the genes. Almost all the studies about cancers are based on finding the effective genes for each cancer and most of the efforts for diagnosing or curing cancer have faced several challenges. From the point of view of complexity, collective behaviors that have emerged from the interactions of many-body systems are not solely describable by knowing about the system’s building blocks (genes) and we cannot understand what happens at a higher level of organization by just knowing how each element works at a lower scale! We know, each gene’s expression affects other genes expression levels and this correlation causes a collective behavior which that alters the expression levels of the genes. In this study, instead of following the common reductionist view, we use the techniques of inverse statistical physics and infer the interaction matrix of the genes. Then, by applying the balance theory, we show the differences between the social behavior of cancer genes and normal genes as a whole. Our results show that the energy distribution of triads formed in the interaction networks behaves in a power-law manner and the energy of the normal network is higher than the cancer network. |
topic |
cancer inverse statistical physics inference problem complex networks gene regulatory network balance theory |
url |
http://ijpr.iut.ac.ir/browse.php?a_code=A-10-943-1&slc_lang=en&sid=1 |
work_keys_str_mv |
AT akarimirizi differencesinthecollectivebehaviourofthegenesinthecancerousandnormalcellfromtheperspectiveofinversestatisticalphysics AT mzamani differencesinthecollectivebehaviourofthegenesinthecancerousandnormalcellfromtheperspectiveofinversestatisticalphysics AT ashirazi differencesinthecollectivebehaviourofthegenesinthecancerousandnormalcellfromtheperspectiveofinversestatisticalphysics AT ghrjafari differencesinthecollectivebehaviourofthegenesinthecancerousandnormalcellfromtheperspectiveofinversestatisticalphysics |
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