Cargando…

Knock-down of pantothenate kinase 2 severely affects the development of the nervous and vascular system in zebrafish, providing new insights into PKAN disease

Pantothenate Kinase Associated Neurodegeneration (PKAN) is an autosomal recessive disorder with mutations in the pantothenate kinase 2 gene (PANK2), encoding an essential enzyme for Coenzyme A (CoA) biosynthesis. The molecular connection between defects in this enzyme and the neurodegenerative pheno...

Descripción completa

Detalles Bibliográficos
Autores principales: Zizioli, Daniela, Tiso, Natascia, Guglielmi, Adele, Saraceno, Claudia, Busolin, Giorgia, Giuliani, Roberta, Khatri, Deepak, Monti, Eugenio, Borsani, Giuseppe, Argenton, Francesco, Finazzi, Dario
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Academic Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4684146/
https://www.ncbi.nlm.nih.gov/pubmed/26476142
http://dx.doi.org/10.1016/j.nbd.2015.10.010
_version_ 1782406142637375488
author Zizioli, Daniela
Tiso, Natascia
Guglielmi, Adele
Saraceno, Claudia
Busolin, Giorgia
Giuliani, Roberta
Khatri, Deepak
Monti, Eugenio
Borsani, Giuseppe
Argenton, Francesco
Finazzi, Dario
author_facet Zizioli, Daniela
Tiso, Natascia
Guglielmi, Adele
Saraceno, Claudia
Busolin, Giorgia
Giuliani, Roberta
Khatri, Deepak
Monti, Eugenio
Borsani, Giuseppe
Argenton, Francesco
Finazzi, Dario
author_sort Zizioli, Daniela
collection PubMed
description Pantothenate Kinase Associated Neurodegeneration (PKAN) is an autosomal recessive disorder with mutations in the pantothenate kinase 2 gene (PANK2), encoding an essential enzyme for Coenzyme A (CoA) biosynthesis. The molecular connection between defects in this enzyme and the neurodegenerative phenotype observed in PKAN patients is still poorly understood. We exploited the zebrafish model to study the role played by the pank2 gene during embryonic development and get new insight into PKAN pathogenesis. The zebrafish orthologue of hPANK2 lies on chromosome 13, is a maternal gene expressed in all development stages and, in adult animals, is highly abundant in CNS, dorsal aorta and caudal vein. The injection of a splice-inhibiting morpholino induced a clear phenotype with perturbed brain morphology and hydrocephalus; edema was present in the heart region and caudal plexus, where hemorrhages with reduction of blood circulation velocity were detected. We characterized the CNS phenotype by studying the expression pattern of wnt1 and neurog1 neural markers and by use of the Tg(neurod:EGFP/sox10:dsRed) transgenic line. The results evidenced that downregulation of pank2 severely impairs neuronal development, particularly in the anterior part of CNS (telencephalon). Whole-mount in situ hybridization analysis of the endothelial markers cadherin-5 and fli1a, and use of Tg(fli1a:EGFP/gata1a:dsRed) transgenic line, confirmed the essential role of pank2 in the formation of the vascular system. The specificity of the morpholino-induced phenotype was proved by the restoration of a normal development in a high percentage of embryos co-injected with pank2 mRNA. Also, addition of pantethine or CoA, but not of vitamin B5, to pank2 morpholino-injected embryos rescued the phenotype with high efficiency. The zebrafish model indicates the relevance of pank2 activity and CoA homeostasis for normal neuronal development and functioning and provides evidence of an unsuspected role for this enzyme and its product in vascular development.
format Online
Article
Text
id pubmed-4684146
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Academic Press
record_format MEDLINE/PubMed
spelling pubmed-46841462016-01-13 Knock-down of pantothenate kinase 2 severely affects the development of the nervous and vascular system in zebrafish, providing new insights into PKAN disease Zizioli, Daniela Tiso, Natascia Guglielmi, Adele Saraceno, Claudia Busolin, Giorgia Giuliani, Roberta Khatri, Deepak Monti, Eugenio Borsani, Giuseppe Argenton, Francesco Finazzi, Dario Neurobiol Dis Article Pantothenate Kinase Associated Neurodegeneration (PKAN) is an autosomal recessive disorder with mutations in the pantothenate kinase 2 gene (PANK2), encoding an essential enzyme for Coenzyme A (CoA) biosynthesis. The molecular connection between defects in this enzyme and the neurodegenerative phenotype observed in PKAN patients is still poorly understood. We exploited the zebrafish model to study the role played by the pank2 gene during embryonic development and get new insight into PKAN pathogenesis. The zebrafish orthologue of hPANK2 lies on chromosome 13, is a maternal gene expressed in all development stages and, in adult animals, is highly abundant in CNS, dorsal aorta and caudal vein. The injection of a splice-inhibiting morpholino induced a clear phenotype with perturbed brain morphology and hydrocephalus; edema was present in the heart region and caudal plexus, where hemorrhages with reduction of blood circulation velocity were detected. We characterized the CNS phenotype by studying the expression pattern of wnt1 and neurog1 neural markers and by use of the Tg(neurod:EGFP/sox10:dsRed) transgenic line. The results evidenced that downregulation of pank2 severely impairs neuronal development, particularly in the anterior part of CNS (telencephalon). Whole-mount in situ hybridization analysis of the endothelial markers cadherin-5 and fli1a, and use of Tg(fli1a:EGFP/gata1a:dsRed) transgenic line, confirmed the essential role of pank2 in the formation of the vascular system. The specificity of the morpholino-induced phenotype was proved by the restoration of a normal development in a high percentage of embryos co-injected with pank2 mRNA. Also, addition of pantethine or CoA, but not of vitamin B5, to pank2 morpholino-injected embryos rescued the phenotype with high efficiency. The zebrafish model indicates the relevance of pank2 activity and CoA homeostasis for normal neuronal development and functioning and provides evidence of an unsuspected role for this enzyme and its product in vascular development. Academic Press 2016-01 /pmc/articles/PMC4684146/ /pubmed/26476142 http://dx.doi.org/10.1016/j.nbd.2015.10.010 Text en © 2015 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zizioli, Daniela
Tiso, Natascia
Guglielmi, Adele
Saraceno, Claudia
Busolin, Giorgia
Giuliani, Roberta
Khatri, Deepak
Monti, Eugenio
Borsani, Giuseppe
Argenton, Francesco
Finazzi, Dario
Knock-down of pantothenate kinase 2 severely affects the development of the nervous and vascular system in zebrafish, providing new insights into PKAN disease
title Knock-down of pantothenate kinase 2 severely affects the development of the nervous and vascular system in zebrafish, providing new insights into PKAN disease
title_full Knock-down of pantothenate kinase 2 severely affects the development of the nervous and vascular system in zebrafish, providing new insights into PKAN disease
title_fullStr Knock-down of pantothenate kinase 2 severely affects the development of the nervous and vascular system in zebrafish, providing new insights into PKAN disease
title_full_unstemmed Knock-down of pantothenate kinase 2 severely affects the development of the nervous and vascular system in zebrafish, providing new insights into PKAN disease
title_short Knock-down of pantothenate kinase 2 severely affects the development of the nervous and vascular system in zebrafish, providing new insights into PKAN disease
title_sort knock-down of pantothenate kinase 2 severely affects the development of the nervous and vascular system in zebrafish, providing new insights into pkan disease
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4684146/
https://www.ncbi.nlm.nih.gov/pubmed/26476142
http://dx.doi.org/10.1016/j.nbd.2015.10.010
work_keys_str_mv AT ziziolidaniela knockdownofpantothenatekinase2severelyaffectsthedevelopmentofthenervousandvascularsysteminzebrafishprovidingnewinsightsintopkandisease
AT tisonatascia knockdownofpantothenatekinase2severelyaffectsthedevelopmentofthenervousandvascularsysteminzebrafishprovidingnewinsightsintopkandisease
AT guglielmiadele knockdownofpantothenatekinase2severelyaffectsthedevelopmentofthenervousandvascularsysteminzebrafishprovidingnewinsightsintopkandisease
AT saracenoclaudia knockdownofpantothenatekinase2severelyaffectsthedevelopmentofthenervousandvascularsysteminzebrafishprovidingnewinsightsintopkandisease
AT busolingiorgia knockdownofpantothenatekinase2severelyaffectsthedevelopmentofthenervousandvascularsysteminzebrafishprovidingnewinsightsintopkandisease
AT giulianiroberta knockdownofpantothenatekinase2severelyaffectsthedevelopmentofthenervousandvascularsysteminzebrafishprovidingnewinsightsintopkandisease
AT khatrideepak knockdownofpantothenatekinase2severelyaffectsthedevelopmentofthenervousandvascularsysteminzebrafishprovidingnewinsightsintopkandisease
AT montieugenio knockdownofpantothenatekinase2severelyaffectsthedevelopmentofthenervousandvascularsysteminzebrafishprovidingnewinsightsintopkandisease
AT borsanigiuseppe knockdownofpantothenatekinase2severelyaffectsthedevelopmentofthenervousandvascularsysteminzebrafishprovidingnewinsightsintopkandisease
AT argentonfrancesco knockdownofpantothenatekinase2severelyaffectsthedevelopmentofthenervousandvascularsysteminzebrafishprovidingnewinsightsintopkandisease
AT finazzidario knockdownofpantothenatekinase2severelyaffectsthedevelopmentofthenervousandvascularsysteminzebrafishprovidingnewinsightsintopkandisease