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Published in: Journal of Inherited Metabolic Disease 6/2018

Open Access 01-11-2018 | Original Article

Spectrum of movement disorders and neurotransmitter abnormalities in paediatric POLG disease

Authors: A. Papandreou, S. Rahman, C. Fratter, J. Ng, E. Meyer, L. J. Carr, M. Champion, A. Clarke, P. Gissen, C. Hemingway, N. Hussain, S. Jayawant, M. D. King, B. J. Lynch, L. Mewasingh, J. Patel, P. Prabhakar, V. Neergheen, S. Pope, S. J. R. Heales, J. Poulton, Manju A. Kurian

Published in: Journal of Inherited Metabolic Disease | Issue 6/2018

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Abstract

Objectives

To describe the spectrum of movement disorders and cerebrospinal fluid (CSF) neurotransmitter profiles in paediatric patients with POLG disease.

Methods

We identified children with genetically confirmed POLG disease, in whom CSF neurotransmitter analysis had been undertaken. Clinical data were collected retrospectively. CSF neurotransmitter levels were compared to both standardised age-related reference ranges and to non-POLG patients presenting with status epilepticus.

Results

Forty-one patients with POLG disease were identified. Almost 50% of the patients had documented evidence of a movement disorder, including non-epileptic myoclonus, choreoathetosis and ataxia. CSF neurotransmitter analysis was undertaken in 15 cases and abnormalities were seen in the majority (87%) of cases tested. In many patients, distinctive patterns were evident, including raised neopterin, homovanillic acid and 5-hydroxyindoleacetic acid levels.

Conclusions

Children with POLG mutations can manifest with a wide spectrum of abnormal movements, which are often prominent features of the clinical syndrome. Underlying pathophysiology is probably multifactorial, and aberrant monoamine metabolism is likely to play a role.
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Literature
go back to reference Allen NM, Winter T, Shahwan A, King MD (2014) Explosive onset non-epileptic jerks and profound hypotonia in an infant with Alpers–Huttenlocher syndrome. Seizure 23:237–239CrossRefPubMed Allen NM, Winter T, Shahwan A, King MD (2014) Explosive onset non-epileptic jerks and profound hypotonia in an infant with Alpers–Huttenlocher syndrome. Seizure 23:237–239CrossRefPubMed
go back to reference Ashley N, Adams S, Slama A et al (2007) Defects in maintenance of mitochondrial DNA are associated with intramitochondrial nucleotide imbalances. Hum Mol Genet 16:1400–1411CrossRefPubMed Ashley N, Adams S, Slama A et al (2007) Defects in maintenance of mitochondrial DNA are associated with intramitochondrial nucleotide imbalances. Hum Mol Genet 16:1400–1411CrossRefPubMed
go back to reference Aylett SB, Neergheen V, Hargreaves IP et al (2013) Levels of 5-methyltetrahydrofolate and ascorbic acid in cerebrospinal fluid are correlated: implications for the accelerated degradation of folate by reactive oxygen species. Neurochem Int 63:750–755CrossRefPubMed Aylett SB, Neergheen V, Hargreaves IP et al (2013) Levels of 5-methyltetrahydrofolate and ascorbic acid in cerebrospinal fluid are correlated: implications for the accelerated degradation of folate by reactive oxygen species. Neurochem Int 63:750–755CrossRefPubMed
go back to reference Cario H, Bode H, Debatin KM, Opladen T, Schwarz K (2009) Congenital null mutations of the FOLR1 gene: a progressive neurologic disease and its treatment. Neurology 73:2127–2129CrossRefPubMed Cario H, Bode H, Debatin KM, Opladen T, Schwarz K (2009) Congenital null mutations of the FOLR1 gene: a progressive neurologic disease and its treatment. Neurology 73:2127–2129CrossRefPubMed
go back to reference Cohen BH, Naviaux RK (2010) The clinical diagnosis of POLG disease and other mitochondrial DNA depletion disorders. Methods 51:364–373CrossRefPubMed Cohen BH, Naviaux RK (2010) The clinical diagnosis of POLG disease and other mitochondrial DNA depletion disorders. Methods 51:364–373CrossRefPubMed
go back to reference Dale RC, Brilot F, Fagan E, Earl J (2009) Cerebrospinal fluid neopterin in paediatric neurology: a marker of active central nervous system inflammation. Dev Med Child Neurol 51:317–323CrossRefPubMed Dale RC, Brilot F, Fagan E, Earl J (2009) Cerebrospinal fluid neopterin in paediatric neurology: a marker of active central nervous system inflammation. Dev Med Child Neurol 51:317–323CrossRefPubMed
go back to reference García-Cazorla A, Serrano M, Pérez-Dueñas B et al (2007) Secondary abnormalities of neurotransmitters in infants with neurological disorders. Dev Med Child Neurol 49:740–744CrossRefPubMed García-Cazorla A, Serrano M, Pérez-Dueñas B et al (2007) Secondary abnormalities of neurotransmitters in infants with neurological disorders. Dev Med Child Neurol 49:740–744CrossRefPubMed
go back to reference Garcia-Cazorla A, Duarte S, Serrano M et al (2008a) Mitochondrial diseases mimicking neurotransmitter defects. Mitochondrion 8:273–278CrossRefPubMed Garcia-Cazorla A, Duarte S, Serrano M et al (2008a) Mitochondrial diseases mimicking neurotransmitter defects. Mitochondrion 8:273–278CrossRefPubMed
go back to reference Garcia-Cazorla A, Quadros EV, Nascimento A et al (2008b) Mitochondrial diseases associated with cerebral folate deficiency. Neurology 70:1360–1362CrossRefPubMed Garcia-Cazorla A, Quadros EV, Nascimento A et al (2008b) Mitochondrial diseases associated with cerebral folate deficiency. Neurology 70:1360–1362CrossRefPubMed
go back to reference Hasselmann O, Blau N, Ramaekers VT, Quadros EV, Sequeira JM, Weissert M (2010) Cerebral folate deficiency and CNS inflammatory markers in Alpers disease. Mol Genet Metab 99:58–61CrossRefPubMed Hasselmann O, Blau N, Ramaekers VT, Quadros EV, Sequeira JM, Weissert M (2010) Cerebral folate deficiency and CNS inflammatory markers in Alpers disease. Mol Genet Metab 99:58–61CrossRefPubMed
go back to reference Hikmat O, Tzoulis C, Chong WK et al (2017) The clinical spectrum and natural history of early-onset diseases due to DNA polymerase gamma mutations. Genet Med 19:1217–1225CrossRefPubMed Hikmat O, Tzoulis C, Chong WK et al (2017) The clinical spectrum and natural history of early-onset diseases due to DNA polymerase gamma mutations. Genet Med 19:1217–1225CrossRefPubMed
go back to reference Hinnell C, Haider S, Delamont S, Clough C, Hadzic N, Samuel M (2012) Dystonia in mitochondrial spinocerebellar ataxia and epilepsy syndrome associated with novel recessive POLG mutations. Mov Disord 27:162–163CrossRefPubMed Hinnell C, Haider S, Delamont S, Clough C, Hadzic N, Samuel M (2012) Dystonia in mitochondrial spinocerebellar ataxia and epilepsy syndrome associated with novel recessive POLG mutations. Mov Disord 27:162–163CrossRefPubMed
go back to reference Hyland K, Surtees RA, Heales SJ, Bowron A, Howells DW, Smith I (1993) Cerebrospinal fluid concentrations of pterins and metabolites of serotonin and dopamine in a pediatric reference population. Pediatr Res 34:10–14CrossRefPubMed Hyland K, Surtees RA, Heales SJ, Bowron A, Howells DW, Smith I (1993) Cerebrospinal fluid concentrations of pterins and metabolites of serotonin and dopamine in a pediatric reference population. Pediatr Res 34:10–14CrossRefPubMed
go back to reference Leen WG, Willemsen MA, Wevers RA, Verbeek MM (2012) Cerebrospinal fluid glucose and lactate: age-specific reference values and implications for clinical practice. PLoS One 7:e42745CrossRefPubMedPubMedCentral Leen WG, Willemsen MA, Wevers RA, Verbeek MM (2012) Cerebrospinal fluid glucose and lactate: age-specific reference values and implications for clinical practice. PLoS One 7:e42745CrossRefPubMedPubMedCentral
go back to reference Martikainen MH, Ng YS, Gorman GS et al (2016) Clinical, genetic, and radiological features of extrapyramidal movement disorders in mitochondrial disease. JAMA Neurol 73:668–674CrossRefPubMed Martikainen MH, Ng YS, Gorman GS et al (2016) Clinical, genetic, and radiological features of extrapyramidal movement disorders in mitochondrial disease. JAMA Neurol 73:668–674CrossRefPubMed
go back to reference McCoy B, Owens C, Howley R et al (2011) Partial status epilepticus—rapid genetic diagnosis of Alpers’ disease. Eur J Paediatr Neurol 15:558–562CrossRefPubMed McCoy B, Owens C, Howley R et al (2011) Partial status epilepticus—rapid genetic diagnosis of Alpers’ disease. Eur J Paediatr Neurol 15:558–562CrossRefPubMed
go back to reference Morten KJ, Ashley N, Wijburg F et al (2007) Liver mtDNA content increases during development: a comparison of methods and the importance of age- and tissue-specific controls for the diagnosis of mtDNA depletion. Mitochondrion 7:386–395CrossRefPubMed Morten KJ, Ashley N, Wijburg F et al (2007) Liver mtDNA content increases during development: a comparison of methods and the importance of age- and tissue-specific controls for the diagnosis of mtDNA depletion. Mitochondrion 7:386–395CrossRefPubMed
go back to reference Ng J, Papandreou A, Heales SJ, Kurian MA (2015) Monoamine neurotransmitter disorders—clinical advances and future perspectives. Nat Rev Neurol 11:567–584CrossRefPubMed Ng J, Papandreou A, Heales SJ, Kurian MA (2015) Monoamine neurotransmitter disorders—clinical advances and future perspectives. Nat Rev Neurol 11:567–584CrossRefPubMed
go back to reference Pickrell AM, Huang CH, Kennedy SR et al (2015) Endogenous Parkin preserves dopaminergic substantia Nigral neurons following mitochondrial DNA mutagenic stress. Neuron 87:371–381CrossRefPubMedPubMedCentral Pickrell AM, Huang CH, Kennedy SR et al (2015) Endogenous Parkin preserves dopaminergic substantia Nigral neurons following mitochondrial DNA mutagenic stress. Neuron 87:371–381CrossRefPubMedPubMedCentral
go back to reference Pineda M, Ormazabal A, López-Gallardo E et al (2006) Cerebral folate deficiency and leukoencephalopathy caused by a mitochondrial DNA deletion. Ann Neurol 59:394–398CrossRefPubMed Pineda M, Ormazabal A, López-Gallardo E et al (2006) Cerebral folate deficiency and leukoencephalopathy caused by a mitochondrial DNA deletion. Ann Neurol 59:394–398CrossRefPubMed
go back to reference Rahman S (2015) Pathophysiology of mitochondrial disease causing epilepsy and status epilepticus. Epilepsy Behav 49:71–75CrossRefPubMed Rahman S (2015) Pathophysiology of mitochondrial disease causing epilepsy and status epilepticus. Epilepsy Behav 49:71–75CrossRefPubMed
go back to reference Rahman S, Poulton J (2009) Diagnosis of mitochondrial DNA depletion syndromes. Arch Dis Child 94:3–5CrossRefPubMed Rahman S, Poulton J (2009) Diagnosis of mitochondrial DNA depletion syndromes. Arch Dis Child 94:3–5CrossRefPubMed
go back to reference Rajakulendran S, Pitceathly RD, Taanman JW et al (2016) A clinical, neuropathological and genetic study of homozygous A467T POLG-related mitochondrial disease. PLoS One 11:e0145500CrossRefPubMedPubMedCentral Rajakulendran S, Pitceathly RD, Taanman JW et al (2016) A clinical, neuropathological and genetic study of homozygous A467T POLG-related mitochondrial disease. PLoS One 11:e0145500CrossRefPubMedPubMedCentral
go back to reference Tzoulis C, Schwarzlmüller T, Biermann M, Haugarvoll K, Bindoff LA (2016) Mitochondrial DNA homeostasis is essential for nigrostriatal integrity. Mitochondrion 28:33–37CrossRefPubMed Tzoulis C, Schwarzlmüller T, Biermann M, Haugarvoll K, Bindoff LA (2016) Mitochondrial DNA homeostasis is essential for nigrostriatal integrity. Mitochondrion 28:33–37CrossRefPubMed
Metadata
Title
Spectrum of movement disorders and neurotransmitter abnormalities in paediatric POLG disease
Authors
A. Papandreou
S. Rahman
C. Fratter
J. Ng
E. Meyer
L. J. Carr
M. Champion
A. Clarke
P. Gissen
C. Hemingway
N. Hussain
S. Jayawant
M. D. King
B. J. Lynch
L. Mewasingh
J. Patel
P. Prabhakar
V. Neergheen
S. Pope
S. J. R. Heales
J. Poulton
Manju A. Kurian
Publication date
01-11-2018
Publisher
Springer Netherlands
Published in
Journal of Inherited Metabolic Disease / Issue 6/2018
Print ISSN: 0141-8955
Electronic ISSN: 1573-2665
DOI
https://doi.org/10.1007/s10545-018-0227-7

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