Evolutionary dynamics of human autoimmune disease genes and malfunctioned immunological genes

<p>Abstract</p> <p>Background</p> <p>One of the main issues of molecular evolution is to divulge the principles in dictating the evolutionary rate differences among various gene classes. Immunological genes have received considerable attention in evolutionary biology as...

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Main Authors: Podder Soumita, Ghosh Tapash
Format: Article
Language:English
Published: BMC 2012-01-01
Series:BMC Evolutionary Biology
Subjects:
Online Access:http://www.biomedcentral.com/1471-2148/12/10
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spelling doaj-049ec9dfe3b8437bb1151e04716a42472021-09-02T05:17:35ZengBMCBMC Evolutionary Biology1471-21482012-01-011211010.1186/1471-2148-12-10Evolutionary dynamics of human autoimmune disease genes and malfunctioned immunological genesPodder SoumitaGhosh Tapash<p>Abstract</p> <p>Background</p> <p>One of the main issues of molecular evolution is to divulge the principles in dictating the evolutionary rate differences among various gene classes. Immunological genes have received considerable attention in evolutionary biology as candidates for local adaptation and for studying functionally important polymorphisms. The normal structure and function of immunological genes will be distorted when they experience mutations leading to immunological dysfunctions.</p> <p>Results</p> <p>Here, we examined the fundamental differences between the genes which on mutation give rise to autoimmune or other immune system related diseases and the immunological genes that do not cause any disease phenotypes. Although the disease genes examined are analogous to non-disease genes in product, expression, function, and pathway affiliation, a statistically significant decrease in evolutionary rate has been found in autoimmune disease genes relative to all other immune related diseases and non-disease genes. Possible ways of accumulation of mutation in the three steps of the central dogma (DNA-mRNA-Protein) have been studied to trace the mutational effects predisposed to disease consequence and acquiring higher selection pressure. Principal Component Analysis and Multivariate Regression Analysis have established the predominant role of single nucleotide polymorphisms in guiding the evolutionary rate of immunological disease and non-disease genes followed by m-RNA abundance, paralogs number, fraction of phosphorylation residue, alternatively spliced exon, protein residue burial and protein disorder.</p> <p>Conclusions</p> <p>Our study provides an empirical insight into the etiology of autoimmune disease genes and other immunological diseases. The immediate utility of our study is to help in disease gene identification and may also help in medicinal improvement of immune related disease.</p> http://www.biomedcentral.com/1471-2148/12/10Autoimmune diseaseImmunological genesEvolutionary rateSNPsAlternative splicing
collection DOAJ
language English
format Article
sources DOAJ
author Podder Soumita
Ghosh Tapash
spellingShingle Podder Soumita
Ghosh Tapash
Evolutionary dynamics of human autoimmune disease genes and malfunctioned immunological genes
BMC Evolutionary Biology
Autoimmune disease
Immunological genes
Evolutionary rate
SNPs
Alternative splicing
author_facet Podder Soumita
Ghosh Tapash
author_sort Podder Soumita
title Evolutionary dynamics of human autoimmune disease genes and malfunctioned immunological genes
title_short Evolutionary dynamics of human autoimmune disease genes and malfunctioned immunological genes
title_full Evolutionary dynamics of human autoimmune disease genes and malfunctioned immunological genes
title_fullStr Evolutionary dynamics of human autoimmune disease genes and malfunctioned immunological genes
title_full_unstemmed Evolutionary dynamics of human autoimmune disease genes and malfunctioned immunological genes
title_sort evolutionary dynamics of human autoimmune disease genes and malfunctioned immunological genes
publisher BMC
series BMC Evolutionary Biology
issn 1471-2148
publishDate 2012-01-01
description <p>Abstract</p> <p>Background</p> <p>One of the main issues of molecular evolution is to divulge the principles in dictating the evolutionary rate differences among various gene classes. Immunological genes have received considerable attention in evolutionary biology as candidates for local adaptation and for studying functionally important polymorphisms. The normal structure and function of immunological genes will be distorted when they experience mutations leading to immunological dysfunctions.</p> <p>Results</p> <p>Here, we examined the fundamental differences between the genes which on mutation give rise to autoimmune or other immune system related diseases and the immunological genes that do not cause any disease phenotypes. Although the disease genes examined are analogous to non-disease genes in product, expression, function, and pathway affiliation, a statistically significant decrease in evolutionary rate has been found in autoimmune disease genes relative to all other immune related diseases and non-disease genes. Possible ways of accumulation of mutation in the three steps of the central dogma (DNA-mRNA-Protein) have been studied to trace the mutational effects predisposed to disease consequence and acquiring higher selection pressure. Principal Component Analysis and Multivariate Regression Analysis have established the predominant role of single nucleotide polymorphisms in guiding the evolutionary rate of immunological disease and non-disease genes followed by m-RNA abundance, paralogs number, fraction of phosphorylation residue, alternatively spliced exon, protein residue burial and protein disorder.</p> <p>Conclusions</p> <p>Our study provides an empirical insight into the etiology of autoimmune disease genes and other immunological diseases. The immediate utility of our study is to help in disease gene identification and may also help in medicinal improvement of immune related disease.</p>
topic Autoimmune disease
Immunological genes
Evolutionary rate
SNPs
Alternative splicing
url http://www.biomedcentral.com/1471-2148/12/10
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AT ghoshtapash evolutionarydynamicsofhumanautoimmunediseasegenesandmalfunctionedimmunologicalgenes
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