0000000001329330

AUTHOR

Markku Mäki

showing 5 related works from this author

Gluten affects epithelial differentiation-associated genes in small intestinal mucosa of coeliac patients

2007

Summary In coeliac disease gluten induces an immunological reaction in genetically susceptible patients, and influences on epithelial cell proliferation and differentiation in the small-bowel mucosa. Our aim was to find novel genes which operate similarly in epithelial proliferation and differentiation in an epithelial cell differentiation model and in coeliac disease patient small-bowel mucosal biopsy samples. The combination of cDNA microarray data originating from a three-dimensional T84 epithelial cell differentiation model and small-bowel mucosal biopsy samples from untreated and treated coeliac disease patients and healthy controls resulted in 30 genes whose mRNA expression was simila…

AdultTranslational StudiesGlutensDuodenummedicine.medical_treatmentCellular differentiationBiopsyImmunologyBiologyCoeliac diseaseGrowth factor receptorIntestinal mucosaGene expressionmedicineImmunology and AllergyHumansRNA MessengerIntestinal MucosaImmunity Mucosalbeta CateninEpithelial cell differentiationAgedOligonucleotide Array Sequence AnalysisReverse Transcriptase Polymerase Chain ReactionGrowth factorGene Expression ProfilingCell DifferentiationEpithelial CellsMiddle Agedmedicine.diseaseSmall intestinedigestive system diseasesWiskott-Aldrich Syndrome Protein FamilyErbB ReceptorsCeliac Diseasemedicine.anatomical_structureGene Expression RegulationImmunology
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SAP30L interacts with members of the Sin3A corepressor complex and targets Sin3A to the nucleolus.

2006

Histone acetylation plays a key role in the regulation of gene expression. The chromatin structure and accessibility of genes to transcription factors is regulated by enzymes that acetylate and deacetylate histones. The Sin3A corepressor complex recruits histone deacetylases and in many cases represses transcription. Here, we report that SAP30L, a close homolog of Sin3-associated protein 30 (SAP30), interacts with several components of the Sin3A corepressor complex. We show that it binds to the PAH3/HID (Paired Amphipathic Helix 3/Histone deacetylase Interacting Domain) region of mouse Sin3A with residues 120–140 in the C-terminal part of the protein. We provide evidence that SAP30L induces…

entsyymitvuorovaikutustumajyvänenBiologySAP30Protein Sorting SignalsHistone DeacetylasesArticleCell Line03 medical and health sciencesMice0302 clinical medicineHistone H1Histone H2AGeneticsHistone codeAnimalsHumansGene Silencingnucleolus030304 developmental biologyNuclear receptor co-repressor 2Histone deacetylationGenetics0303 health sciencesgeenitbiokemiaNuclear ProteinsCell biologyRepressor ProteinsProtein TransportSin3 Histone Deacetylase and Corepressor Complextranskriptio (biologia)030220 oncology & carcinogenesisSin-associated proteinsHistone deacetylase complexhistonideasetylaatioHistone deacetylaseproteiinitCorepressorSin-assosioituvat proteiinitCell NucleolusNucleic acids research
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A Trial of a Transglutaminase 2 Inhibitor in Celiac Disease. Reply.

2021

Transglutaminasesbiologybusiness.industryTissue transglutaminaseGeneral MedicineDiseasePharmacologyCeliac DiseaseGTP-binding protein regulatorsGTP-Binding Proteinsbiology.proteinMedicineHumansProtein Glutamine gamma Glutamyltransferase 2businessThe New England journal of medicine
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Gene expression in TGFbeta-induced epithelial cell differentiation in a three-dimensional intestinal epithelial cell differentiation model

2006

Abstract Background The TGFβ1-induced signal transduction processes involved in growth and differentiation are only partly known. The three-dimensional epithelial differentiation model, in which T84 epithelial cells are induced to differentiate either with TGFβ1 or IMR-90 mesenchymal cell-secreted soluble factors, is previously shown to model epithelial cell differentiation seen in intestine. That model has not been used for large scale gene expression studies, such as microarray method. Therefore the gene expression changes were studied in undifferentiated and differentiated three-dimensional T84 cultures with cDNA microarray method in order to study the molecular changes and find new play…

geenien ilmeneminenlcsh:QH426-470ColonCellular differentiationlcsh:BiotechnologyCell Culture TechniquesBiologyMesodermTransforming Growth Factor beta103 medical and health sciences0302 clinical medicineLääketieteen bioteknologia - Medical biotechnologyCell Line Tumorlcsh:TP248.13-248.65Gene expressionGeneticsHumansIntestinal epithelial cell differentiationTGF-betageeniekspressioIntestinal MucosaOligonucleotide Array Sequence Analysis030304 developmental biologyEpithelial cell differentiationRegulation of gene expression0303 health sciencesTGB-betaepithelial cellMesenchymal stem cellCell DifferentiationEpithelial CellsdifferentiationFibroblastsepiteelisoluMolecular biologyCell biologylcsh:GeneticsGene Expression RegulationerilaistuminenCell culture030220 oncology & carcinogenesisSignal transductionmicroarraygeenilastuSignal TransductionResearch ArticleBiotechnology
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Gene expression in TGFbeta-induced epithelial cell differentiation in a three-dimensional intestinal epithelial cell differentiation model

2006

Background. The TGFβ1-induced signal transduction processes involved in growth and differentiation are only partly known. The three-dimensional epithelial differentiation model, in which T84 epithelial cells are induced to differentiate either with TGFβ1 or IMR-90 mesenchymal cell-secreted soluble factors, is previously shown to model epithelial cell differentiation seen in intestine. That model has not been used for large scale gene expression studies, such as microarray method. Therefore the gene expression changes were studied in undifferentiated and differentiated three-dimensional T84 cultures with cDNA microarray method in order to study the molecular changes and find new players in e…

TGB-betageenien ilmeneminenerilaistuminenepithelial cellgene expressionTGF-betadifferentiationepiteelisolumicroarraygeenilastu
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