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Biallelic variants in HPDL, encoding 4-hydroxyphenylpyruvate dioxygenase-like protein, lead to an infantile neurodegenerative condition
by
Waters, Elizabeth R.
, Ding, Jeffrey
, Jain, Mohit
, Ghosh, Shereen G.
, Toosi, Mehran Beiraghi
, Pan, Daqiang
, Murphy, David
, McEvoy-Venneri, Jennifer
, Ben-Omran, Tawfeg
, Ashrafzadeh, Farah
, Chai, Guoliang
, Karimiani, Ehsan Ghayoor
, Maroofian, Reza
, Sultan, Tipu
, Imannezhad, Shima
, Lübbert, Philipp
, Patel, Aakash
, Abdel-Salam, Ghada
, Wiedemann, Nils
, Alvi, Javeria Raza
, Verhoeven-Duif, Nanda M.
, Ibrahim, Khalid
, Kammerer, Bernd
, Stanley, Valentina
, Ross, Danica
, Lee, Sangmoon
, Jans, Judith J.
, Gleeson, Joseph G.
, Fabunan, Rudy
, Zaki, Maha S.
in
4-Hydroxyphenylpyruvate Dioxygenase - genetics
/ Animals
/ Biomedical and Life Sciences
/ Biomedicine
/ Dioxygenases
/ Exons
/ Human Genetics
/ Humans
/ Laboratory Medicine
/ Metabolism
/ Metabolites
/ Mice
/ Mice, Knockout
/ Phenotype
2021
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Biallelic variants in HPDL, encoding 4-hydroxyphenylpyruvate dioxygenase-like protein, lead to an infantile neurodegenerative condition
by
Waters, Elizabeth R.
, Ding, Jeffrey
, Jain, Mohit
, Ghosh, Shereen G.
, Toosi, Mehran Beiraghi
, Pan, Daqiang
, Murphy, David
, McEvoy-Venneri, Jennifer
, Ben-Omran, Tawfeg
, Ashrafzadeh, Farah
, Chai, Guoliang
, Karimiani, Ehsan Ghayoor
, Maroofian, Reza
, Sultan, Tipu
, Imannezhad, Shima
, Lübbert, Philipp
, Patel, Aakash
, Abdel-Salam, Ghada
, Wiedemann, Nils
, Alvi, Javeria Raza
, Verhoeven-Duif, Nanda M.
, Ibrahim, Khalid
, Kammerer, Bernd
, Stanley, Valentina
, Ross, Danica
, Lee, Sangmoon
, Jans, Judith J.
, Gleeson, Joseph G.
, Fabunan, Rudy
, Zaki, Maha S.
in
4-Hydroxyphenylpyruvate Dioxygenase - genetics
/ Animals
/ Biomedical and Life Sciences
/ Biomedicine
/ Dioxygenases
/ Exons
/ Human Genetics
/ Humans
/ Laboratory Medicine
/ Metabolism
/ Metabolites
/ Mice
/ Mice, Knockout
/ Phenotype
2021
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Biallelic variants in HPDL, encoding 4-hydroxyphenylpyruvate dioxygenase-like protein, lead to an infantile neurodegenerative condition
by
Waters, Elizabeth R.
, Ding, Jeffrey
, Jain, Mohit
, Ghosh, Shereen G.
, Toosi, Mehran Beiraghi
, Pan, Daqiang
, Murphy, David
, McEvoy-Venneri, Jennifer
, Ben-Omran, Tawfeg
, Ashrafzadeh, Farah
, Chai, Guoliang
, Karimiani, Ehsan Ghayoor
, Maroofian, Reza
, Sultan, Tipu
, Imannezhad, Shima
, Lübbert, Philipp
, Patel, Aakash
, Abdel-Salam, Ghada
, Wiedemann, Nils
, Alvi, Javeria Raza
, Verhoeven-Duif, Nanda M.
, Ibrahim, Khalid
, Kammerer, Bernd
, Stanley, Valentina
, Ross, Danica
, Lee, Sangmoon
, Jans, Judith J.
, Gleeson, Joseph G.
, Fabunan, Rudy
, Zaki, Maha S.
in
4-Hydroxyphenylpyruvate Dioxygenase - genetics
/ Animals
/ Biomedical and Life Sciences
/ Biomedicine
/ Dioxygenases
/ Exons
/ Human Genetics
/ Humans
/ Laboratory Medicine
/ Metabolism
/ Metabolites
/ Mice
/ Mice, Knockout
/ Phenotype
2021
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Biallelic variants in HPDL, encoding 4-hydroxyphenylpyruvate dioxygenase-like protein, lead to an infantile neurodegenerative condition
Journal Article
Biallelic variants in HPDL, encoding 4-hydroxyphenylpyruvate dioxygenase-like protein, lead to an infantile neurodegenerative condition
2021
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Overview
Purpose
Dioxygenases are oxidoreductase enzymes with roles in metabolic pathways necessary for aerobic life. 4-hydroxyphenylpyruvate dioxygenase-like protein (HPDL), encoded by
HPDL
, is an orphan paralogue of 4-hydroxyphenylpyruvate dioxygenase (HPD), an iron-dependent dioxygenase involved in tyrosine catabolism. The function and association of HPDL with human diseases remain unknown.
Methods
We applied exome sequencing in a cohort of over 10,000 individuals with neurodevelopmental diseases. Effects of HPDL loss were investigated in vitro and in vivo, and through mass spectrometry analysis. Evolutionary analysis was performed to investigate the potential functional separation of HPDL from HPD.
Results
We identified biallelic variants in
HPDL
in eight families displaying recessive inheritance. Knockout mice closely phenocopied humans and showed evidence of apoptosis in multiple cellular lineages within the cerebral cortex.
HPDL
is a single-exonic gene that likely arose from a retrotransposition event at the base of the tetrapod lineage, and unlike HPD, HPDL is mitochondria-localized. Metabolic profiling of
HPDL
mutant cells and mice showed no evidence of altered tyrosine metabolites, but rather notable accumulations in other metabolic pathways.
Conclusion
The mitochondrial localization, along with its disrupted metabolic profile, suggests
HPDL
loss in humans links to a unique neurometabolic mitochondrial infantile neurodegenerative condition.
Publisher
Nature Publishing Group US,Elsevier Limited
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