Molecular genetics of the transcription factor GLIS3 identifies its dual function in beta cells and neurons
The GLIS family zinc finger 3 isoform (GLIS3) is a risk gene for Type 1 and Type 2 diabetes, glaucoma and Alzheimer's disease endophenotype. We identified GLIS3 binding sites in insulin secreting cells (INS1) (FDR q<0.05; enrichment range 1.40-9.11 fold) sharing the motif wrGTTCCCArTAGs,...
Egile Nagusiak: | , , , , , , , , , , , , , , , , , , , |
---|---|
Formatua: | Journal article |
Hizkuntza: | English |
Argitaratua: |
Elsevier
2018
|
_version_ | 1826277509359992832 |
---|---|
author | Calderari, S Ria, M Gérard, C Nogueira, T Villate, O Collins, S Neil, H Gervasi, N Hue, C Suarez-Zamorano, N Prado, C Cnop, M Bihoreau, M Kaisaki, P Cazier, J Julier, C Lathrop, M Werner, M Eizirik, D Gauguier, D |
author_facet | Calderari, S Ria, M Gérard, C Nogueira, T Villate, O Collins, S Neil, H Gervasi, N Hue, C Suarez-Zamorano, N Prado, C Cnop, M Bihoreau, M Kaisaki, P Cazier, J Julier, C Lathrop, M Werner, M Eizirik, D Gauguier, D |
author_sort | Calderari, S |
collection | OXFORD |
description | The GLIS family zinc finger 3 isoform (GLIS3) is a risk gene for Type 1 and Type 2 diabetes, glaucoma and Alzheimer's disease endophenotype. We identified GLIS3 binding sites in insulin secreting cells (INS1) (FDR q<0.05; enrichment range 1.40-9.11 fold) sharing the motif wrGTTCCCArTAGs, which were enriched in genes involved in neuronal function and autophagy and in risk genes for metabolic and neuro-behavioural diseases. We confirmed experimentally Glis3-mediated regulation of the expression of genes involved in autophagy and neuron function in INS1 and neuronal PC12 cells. Naturally-occurring coding polymorphisms in Glis3 in the Goto-Kakizaki rat model of type 2 diabetes were associated with increased insulin production in vitro and in vivo, suggestive alteration of autophagy in PC12 and INS1 and abnormal neurogenesis in hippocampus neurons. Our results support biological pleiotropy of GLIS3 in pathologies affecting β-cells and neurons and underline the existence of trans‑nosology pathways in diabetes and its co-morbidities. |
first_indexed | 2024-03-06T23:29:58Z |
format | Journal article |
id | oxford-uuid:6bb1078e-92cd-4f11-bc8b-2ac16946bfd7 |
institution | University of Oxford |
language | English |
last_indexed | 2024-03-06T23:29:58Z |
publishDate | 2018 |
publisher | Elsevier |
record_format | dspace |
spelling | oxford-uuid:6bb1078e-92cd-4f11-bc8b-2ac16946bfd72022-03-26T19:05:47ZMolecular genetics of the transcription factor GLIS3 identifies its dual function in beta cells and neuronsJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:6bb1078e-92cd-4f11-bc8b-2ac16946bfd7EnglishSymplectic Elements at OxfordElsevier2018Calderari, SRia, MGérard, CNogueira, TVillate, OCollins, SNeil, HGervasi, NHue, CSuarez-Zamorano, NPrado, CCnop, MBihoreau, MKaisaki, PCazier, JJulier, CLathrop, MWerner, MEizirik, DGauguier, DThe GLIS family zinc finger 3 isoform (GLIS3) is a risk gene for Type 1 and Type 2 diabetes, glaucoma and Alzheimer's disease endophenotype. We identified GLIS3 binding sites in insulin secreting cells (INS1) (FDR q<0.05; enrichment range 1.40-9.11 fold) sharing the motif wrGTTCCCArTAGs, which were enriched in genes involved in neuronal function and autophagy and in risk genes for metabolic and neuro-behavioural diseases. We confirmed experimentally Glis3-mediated regulation of the expression of genes involved in autophagy and neuron function in INS1 and neuronal PC12 cells. Naturally-occurring coding polymorphisms in Glis3 in the Goto-Kakizaki rat model of type 2 diabetes were associated with increased insulin production in vitro and in vivo, suggestive alteration of autophagy in PC12 and INS1 and abnormal neurogenesis in hippocampus neurons. Our results support biological pleiotropy of GLIS3 in pathologies affecting β-cells and neurons and underline the existence of trans‑nosology pathways in diabetes and its co-morbidities. |
spellingShingle | Calderari, S Ria, M Gérard, C Nogueira, T Villate, O Collins, S Neil, H Gervasi, N Hue, C Suarez-Zamorano, N Prado, C Cnop, M Bihoreau, M Kaisaki, P Cazier, J Julier, C Lathrop, M Werner, M Eizirik, D Gauguier, D Molecular genetics of the transcription factor GLIS3 identifies its dual function in beta cells and neurons |
title | Molecular genetics of the transcription factor GLIS3 identifies its dual function in beta cells and neurons |
title_full | Molecular genetics of the transcription factor GLIS3 identifies its dual function in beta cells and neurons |
title_fullStr | Molecular genetics of the transcription factor GLIS3 identifies its dual function in beta cells and neurons |
title_full_unstemmed | Molecular genetics of the transcription factor GLIS3 identifies its dual function in beta cells and neurons |
title_short | Molecular genetics of the transcription factor GLIS3 identifies its dual function in beta cells and neurons |
title_sort | molecular genetics of the transcription factor glis3 identifies its dual function in beta cells and neurons |
work_keys_str_mv | AT calderaris moleculargeneticsofthetranscriptionfactorglis3identifiesitsdualfunctioninbetacellsandneurons AT riam moleculargeneticsofthetranscriptionfactorglis3identifiesitsdualfunctioninbetacellsandneurons AT gerardc moleculargeneticsofthetranscriptionfactorglis3identifiesitsdualfunctioninbetacellsandneurons AT nogueirat moleculargeneticsofthetranscriptionfactorglis3identifiesitsdualfunctioninbetacellsandneurons AT villateo moleculargeneticsofthetranscriptionfactorglis3identifiesitsdualfunctioninbetacellsandneurons AT collinss moleculargeneticsofthetranscriptionfactorglis3identifiesitsdualfunctioninbetacellsandneurons AT neilh moleculargeneticsofthetranscriptionfactorglis3identifiesitsdualfunctioninbetacellsandneurons AT gervasin moleculargeneticsofthetranscriptionfactorglis3identifiesitsdualfunctioninbetacellsandneurons AT huec moleculargeneticsofthetranscriptionfactorglis3identifiesitsdualfunctioninbetacellsandneurons AT suarezzamoranon moleculargeneticsofthetranscriptionfactorglis3identifiesitsdualfunctioninbetacellsandneurons AT pradoc moleculargeneticsofthetranscriptionfactorglis3identifiesitsdualfunctioninbetacellsandneurons AT cnopm moleculargeneticsofthetranscriptionfactorglis3identifiesitsdualfunctioninbetacellsandneurons AT bihoreaum moleculargeneticsofthetranscriptionfactorglis3identifiesitsdualfunctioninbetacellsandneurons AT kaisakip moleculargeneticsofthetranscriptionfactorglis3identifiesitsdualfunctioninbetacellsandneurons AT cazierj moleculargeneticsofthetranscriptionfactorglis3identifiesitsdualfunctioninbetacellsandneurons AT julierc moleculargeneticsofthetranscriptionfactorglis3identifiesitsdualfunctioninbetacellsandneurons AT lathropm moleculargeneticsofthetranscriptionfactorglis3identifiesitsdualfunctioninbetacellsandneurons AT wernerm moleculargeneticsofthetranscriptionfactorglis3identifiesitsdualfunctioninbetacellsandneurons AT eizirikd moleculargeneticsofthetranscriptionfactorglis3identifiesitsdualfunctioninbetacellsandneurons AT gauguierd moleculargeneticsofthetranscriptionfactorglis3identifiesitsdualfunctioninbetacellsandneurons |