Early over expression of messenger RNA for multiple genes, including insulin, in the Pancreatic Lymph Nodes of NOD mice is associated with Islet Autoimmunity

<p>Abstract</p> <p>Background</p> <p>Autoimmune diabetes (T1D) onset is preceded by a long inflammatory process directed against the insulin-secreting β cells of the pancreas. Deciphering the early autoimmune mechanisms represents a challenge due to the absence of clini...

Full description

Bibliographic Details
Main Authors: Eisenbarth George, Miao Dongmei, Osorio y Fortea José, Regnault Béatrice, Melanitou Evie
Format: Article
Language:English
Published: BMC 2009-10-01
Series:BMC Medical Genomics
Online Access:http://www.biomedcentral.com/1755-8794/2/63
_version_ 1811189357285998592
author Eisenbarth George
Miao Dongmei
Osorio y Fortea José
Regnault Béatrice
Melanitou Evie
author_facet Eisenbarth George
Miao Dongmei
Osorio y Fortea José
Regnault Béatrice
Melanitou Evie
author_sort Eisenbarth George
collection DOAJ
description <p>Abstract</p> <p>Background</p> <p>Autoimmune diabetes (T1D) onset is preceded by a long inflammatory process directed against the insulin-secreting β cells of the pancreas. Deciphering the early autoimmune mechanisms represents a challenge due to the absence of clinical signs at early disease stages. The aim of this study was to identify genes implicated in the early steps of the autoimmune process, prior to inflammation, in T1D. We have previously established that insulin autoantibodies (E-IAA) predict early diabetes onset delineating an early phenotypic check point (window 1) in disease pathogenesis. We used this sub-phenotype and applied differential gene expression analysis in the pancreatic lymph nodes (PLN) of 5 weeks old Non Obese Diabetic (NOD) mice differing solely upon the presence or absence of E-IAA. Analysis of gene expression profiles has the potential to provide a global understanding of the disease and to generate novel hypothesis concerning the initiation of the autoimmune process.</p> <p>Methods</p> <p>Animals have been screened weekly for the presence of E-IAA between 3 and 5 weeks of age. E-IAA positive or negative NOD mice at least twice were selected and RNAs isolated from the PLN were used for microarray analysis. Comparison of transcriptional profiles between positive and negative animals and functional annotations of the resulting differentially expressed genes, using software together with manual literature data mining, have been performed.</p> <p>Results</p> <p>The expression of 165 genes was modulated between E-IAA positive and negative PLN. In particular, genes coding for insulin and for proteins known to be implicated in tissue remodelling and Th1 immunity have been found to be highly differentially expressed. Forty one genes showed over 5 fold differences between the two sets of samples and 30 code for extracellular proteins. This class of proteins represents potential diagnostic markers and drug targets for T1D.</p> <p>Conclusion</p> <p>Our data strongly suggest that the immune related mechanisms taking place at this early age in the PLN, correlate with homeostatic changes influencing tissue integrity of the adjacent pancreatic tissue. Functional analysis of the identified genes suggested that similar mechanisms might be operating during pre-inflammatory processes deployed in tissues i) hosting parasitic microorganisms and ii) experiencing unrestricted invasion by tumour cells.</p>
first_indexed 2024-04-11T14:33:36Z
format Article
id doaj.art-e2788ea3a6f04ab3bbdc72b097f2c06d
institution Directory Open Access Journal
issn 1755-8794
language English
last_indexed 2024-04-11T14:33:36Z
publishDate 2009-10-01
publisher BMC
record_format Article
series BMC Medical Genomics
spelling doaj.art-e2788ea3a6f04ab3bbdc72b097f2c06d2022-12-22T04:18:26ZengBMCBMC Medical Genomics1755-87942009-10-01216310.1186/1755-8794-2-63Early over expression of messenger RNA for multiple genes, including insulin, in the Pancreatic Lymph Nodes of NOD mice is associated with Islet AutoimmunityEisenbarth GeorgeMiao DongmeiOsorio y Fortea JoséRegnault BéatriceMelanitou Evie<p>Abstract</p> <p>Background</p> <p>Autoimmune diabetes (T1D) onset is preceded by a long inflammatory process directed against the insulin-secreting β cells of the pancreas. Deciphering the early autoimmune mechanisms represents a challenge due to the absence of clinical signs at early disease stages. The aim of this study was to identify genes implicated in the early steps of the autoimmune process, prior to inflammation, in T1D. We have previously established that insulin autoantibodies (E-IAA) predict early diabetes onset delineating an early phenotypic check point (window 1) in disease pathogenesis. We used this sub-phenotype and applied differential gene expression analysis in the pancreatic lymph nodes (PLN) of 5 weeks old Non Obese Diabetic (NOD) mice differing solely upon the presence or absence of E-IAA. Analysis of gene expression profiles has the potential to provide a global understanding of the disease and to generate novel hypothesis concerning the initiation of the autoimmune process.</p> <p>Methods</p> <p>Animals have been screened weekly for the presence of E-IAA between 3 and 5 weeks of age. E-IAA positive or negative NOD mice at least twice were selected and RNAs isolated from the PLN were used for microarray analysis. Comparison of transcriptional profiles between positive and negative animals and functional annotations of the resulting differentially expressed genes, using software together with manual literature data mining, have been performed.</p> <p>Results</p> <p>The expression of 165 genes was modulated between E-IAA positive and negative PLN. In particular, genes coding for insulin and for proteins known to be implicated in tissue remodelling and Th1 immunity have been found to be highly differentially expressed. Forty one genes showed over 5 fold differences between the two sets of samples and 30 code for extracellular proteins. This class of proteins represents potential diagnostic markers and drug targets for T1D.</p> <p>Conclusion</p> <p>Our data strongly suggest that the immune related mechanisms taking place at this early age in the PLN, correlate with homeostatic changes influencing tissue integrity of the adjacent pancreatic tissue. Functional analysis of the identified genes suggested that similar mechanisms might be operating during pre-inflammatory processes deployed in tissues i) hosting parasitic microorganisms and ii) experiencing unrestricted invasion by tumour cells.</p>http://www.biomedcentral.com/1755-8794/2/63
spellingShingle Eisenbarth George
Miao Dongmei
Osorio y Fortea José
Regnault Béatrice
Melanitou Evie
Early over expression of messenger RNA for multiple genes, including insulin, in the Pancreatic Lymph Nodes of NOD mice is associated with Islet Autoimmunity
BMC Medical Genomics
title Early over expression of messenger RNA for multiple genes, including insulin, in the Pancreatic Lymph Nodes of NOD mice is associated with Islet Autoimmunity
title_full Early over expression of messenger RNA for multiple genes, including insulin, in the Pancreatic Lymph Nodes of NOD mice is associated with Islet Autoimmunity
title_fullStr Early over expression of messenger RNA for multiple genes, including insulin, in the Pancreatic Lymph Nodes of NOD mice is associated with Islet Autoimmunity
title_full_unstemmed Early over expression of messenger RNA for multiple genes, including insulin, in the Pancreatic Lymph Nodes of NOD mice is associated with Islet Autoimmunity
title_short Early over expression of messenger RNA for multiple genes, including insulin, in the Pancreatic Lymph Nodes of NOD mice is associated with Islet Autoimmunity
title_sort early over expression of messenger rna for multiple genes including insulin in the pancreatic lymph nodes of nod mice is associated with islet autoimmunity
url http://www.biomedcentral.com/1755-8794/2/63
work_keys_str_mv AT eisenbarthgeorge earlyoverexpressionofmessengerrnaformultiplegenesincludinginsulininthepancreaticlymphnodesofnodmiceisassociatedwithisletautoimmunity
AT miaodongmei earlyoverexpressionofmessengerrnaformultiplegenesincludinginsulininthepancreaticlymphnodesofnodmiceisassociatedwithisletautoimmunity
AT osorioyforteajose earlyoverexpressionofmessengerrnaformultiplegenesincludinginsulininthepancreaticlymphnodesofnodmiceisassociatedwithisletautoimmunity
AT regnaultbeatrice earlyoverexpressionofmessengerrnaformultiplegenesincludinginsulininthepancreaticlymphnodesofnodmiceisassociatedwithisletautoimmunity
AT melanitouevie earlyoverexpressionofmessengerrnaformultiplegenesincludinginsulininthepancreaticlymphnodesofnodmiceisassociatedwithisletautoimmunity