Cargando…

Hyperglycemia: GDNF-EGR1 Pathway Target Renal Epithelial Cell Migration and Apoptosis in Diabetic Renal Embryopathy

Maternal hyperglycemia can inhibit morphogenesis of ureteric bud branching, Glial cell line-derived neurotrophilic factor (GDNF) is a key regulator of the initiation of ureteric branching. Early growth response gene-1 (EGR-1) is an immediate early gene. Preliminary study found EGR-1 persistently exp...

Descripción completa

Detalles Bibliográficos
Autores principales: Lin, Ching-Yuang, Lin, Tze-Yi, Lee, Min-Chun, Chen, Shih-Chieh, Chang, Jeng-Shou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3585314/
https://www.ncbi.nlm.nih.gov/pubmed/23468876
http://dx.doi.org/10.1371/journal.pone.0056731
_version_ 1782261144980815872
author Lin, Ching-Yuang
Lin, Tze-Yi
Lee, Min-Chun
Chen, Shih-Chieh
Chang, Jeng-Shou
author_facet Lin, Ching-Yuang
Lin, Tze-Yi
Lee, Min-Chun
Chen, Shih-Chieh
Chang, Jeng-Shou
author_sort Lin, Ching-Yuang
collection PubMed
description Maternal hyperglycemia can inhibit morphogenesis of ureteric bud branching, Glial cell line-derived neurotrophilic factor (GDNF) is a key regulator of the initiation of ureteric branching. Early growth response gene-1 (EGR-1) is an immediate early gene. Preliminary study found EGR-1 persistently expressed with GDNF in hyperglycemic environment. To evaluate the potential relationship of hyperglycemia-GDNF-EGR-1 pathway, in vitro human renal proximal tubular epithelial (HRPTE) cells as target and in vivo streptozotocin-induced mice model were used. Our in vivo microarray, real time-PCR and confocal morphological observation confirmed apoptosis in hyperglycemia-induced fetal nephropathy via activation of the GDNF/MAPK/EGR-1 pathway at E12-E15. Detachment between ureteric branch and metanephrons, coupled with decreasing number and collapse of nephrons on Day 1 newborn mice indicate hyperglycemic environment suppress ureteric bud to invade metanephric rudiment. In vitro evidence proved that high glucose suppressed HRPTE cell migration and enhanced GDNF-EGR-1 pathway, inducing HRPTE cell apoptosis. Knockdown of EGR-1 by siRNA negated hyperglycemic suppressed GDNF-induced HRPTE cells. EGR-1 siRNA also reduced GDNF/EGR-1-induced cRaf/MEK/ERK phosphorylation by 80%. Our findings reveal a novel mechanism of GDNF/MAPK/EGR-1 activation playing a critical role in HRPTE cell migration, apoptosis and fetal hyperglycemic nephropathy.
format Online
Article
Text
id pubmed-3585314
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-35853142013-03-06 Hyperglycemia: GDNF-EGR1 Pathway Target Renal Epithelial Cell Migration and Apoptosis in Diabetic Renal Embryopathy Lin, Ching-Yuang Lin, Tze-Yi Lee, Min-Chun Chen, Shih-Chieh Chang, Jeng-Shou PLoS One Research Article Maternal hyperglycemia can inhibit morphogenesis of ureteric bud branching, Glial cell line-derived neurotrophilic factor (GDNF) is a key regulator of the initiation of ureteric branching. Early growth response gene-1 (EGR-1) is an immediate early gene. Preliminary study found EGR-1 persistently expressed with GDNF in hyperglycemic environment. To evaluate the potential relationship of hyperglycemia-GDNF-EGR-1 pathway, in vitro human renal proximal tubular epithelial (HRPTE) cells as target and in vivo streptozotocin-induced mice model were used. Our in vivo microarray, real time-PCR and confocal morphological observation confirmed apoptosis in hyperglycemia-induced fetal nephropathy via activation of the GDNF/MAPK/EGR-1 pathway at E12-E15. Detachment between ureteric branch and metanephrons, coupled with decreasing number and collapse of nephrons on Day 1 newborn mice indicate hyperglycemic environment suppress ureteric bud to invade metanephric rudiment. In vitro evidence proved that high glucose suppressed HRPTE cell migration and enhanced GDNF-EGR-1 pathway, inducing HRPTE cell apoptosis. Knockdown of EGR-1 by siRNA negated hyperglycemic suppressed GDNF-induced HRPTE cells. EGR-1 siRNA also reduced GDNF/EGR-1-induced cRaf/MEK/ERK phosphorylation by 80%. Our findings reveal a novel mechanism of GDNF/MAPK/EGR-1 activation playing a critical role in HRPTE cell migration, apoptosis and fetal hyperglycemic nephropathy. Public Library of Science 2013-02-28 /pmc/articles/PMC3585314/ /pubmed/23468876 http://dx.doi.org/10.1371/journal.pone.0056731 Text en © 2013 Lin et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Lin, Ching-Yuang
Lin, Tze-Yi
Lee, Min-Chun
Chen, Shih-Chieh
Chang, Jeng-Shou
Hyperglycemia: GDNF-EGR1 Pathway Target Renal Epithelial Cell Migration and Apoptosis in Diabetic Renal Embryopathy
title Hyperglycemia: GDNF-EGR1 Pathway Target Renal Epithelial Cell Migration and Apoptosis in Diabetic Renal Embryopathy
title_full Hyperglycemia: GDNF-EGR1 Pathway Target Renal Epithelial Cell Migration and Apoptosis in Diabetic Renal Embryopathy
title_fullStr Hyperglycemia: GDNF-EGR1 Pathway Target Renal Epithelial Cell Migration and Apoptosis in Diabetic Renal Embryopathy
title_full_unstemmed Hyperglycemia: GDNF-EGR1 Pathway Target Renal Epithelial Cell Migration and Apoptosis in Diabetic Renal Embryopathy
title_short Hyperglycemia: GDNF-EGR1 Pathway Target Renal Epithelial Cell Migration and Apoptosis in Diabetic Renal Embryopathy
title_sort hyperglycemia: gdnf-egr1 pathway target renal epithelial cell migration and apoptosis in diabetic renal embryopathy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3585314/
https://www.ncbi.nlm.nih.gov/pubmed/23468876
http://dx.doi.org/10.1371/journal.pone.0056731
work_keys_str_mv AT linchingyuang hyperglycemiagdnfegr1pathwaytargetrenalepithelialcellmigrationandapoptosisindiabeticrenalembryopathy
AT lintzeyi hyperglycemiagdnfegr1pathwaytargetrenalepithelialcellmigrationandapoptosisindiabeticrenalembryopathy
AT leeminchun hyperglycemiagdnfegr1pathwaytargetrenalepithelialcellmigrationandapoptosisindiabeticrenalembryopathy
AT chenshihchieh hyperglycemiagdnfegr1pathwaytargetrenalepithelialcellmigrationandapoptosisindiabeticrenalembryopathy
AT changjengshou hyperglycemiagdnfegr1pathwaytargetrenalepithelialcellmigrationandapoptosisindiabeticrenalembryopathy