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De Novo Mutations in PDE10A Cause Childhood-Onset Chorea with Bilateral Striatal Lesions

Chorea is a hyperkinetic movement disorder resulting from dysfunction of striatal medium spiny neurons (MSNs), which form the main output projections from the basal ganglia. Here, we used whole-exome sequencing to unravel the underlying genetic cause in three unrelated individuals with a very simila...

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Autores principales: Mencacci, Niccolò E., Kamsteeg, Erik-Jan, Nakashima, Kosuke, R’Bibo, Lea, Lynch, David S., Balint, Bettina, Willemsen, Michèl A.A.P., Adams, Matthew E., Wiethoff, Sarah, Suzuki, Kazunori, Davies, Ceri H., Ng, Joanne, Meyer, Esther, Veneziano, Liana, Giunti, Paola, Hughes, Deborah, Raymond, F. Lucy, Carecchio, Miryam, Zorzi, Giovanna, Nardocci, Nardo, Barzaghi, Chiara, Garavaglia, Barbara, Salpietro, Vincenzo, Hardy, John, Pittman, Alan M., Houlden, Henry, Kurian, Manju A., Kimura, Haruhide, Vissers, Lisenka E.L.M., Wood, Nicholas W., Bhatia, Kailash P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4833291/
https://www.ncbi.nlm.nih.gov/pubmed/27058447
http://dx.doi.org/10.1016/j.ajhg.2016.02.015
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author Mencacci, Niccolò E.
Kamsteeg, Erik-Jan
Nakashima, Kosuke
R’Bibo, Lea
Lynch, David S.
Balint, Bettina
Willemsen, Michèl A.A.P.
Adams, Matthew E.
Wiethoff, Sarah
Suzuki, Kazunori
Davies, Ceri H.
Ng, Joanne
Meyer, Esther
Veneziano, Liana
Giunti, Paola
Hughes, Deborah
Raymond, F. Lucy
Carecchio, Miryam
Zorzi, Giovanna
Nardocci, Nardo
Barzaghi, Chiara
Garavaglia, Barbara
Salpietro, Vincenzo
Hardy, John
Pittman, Alan M.
Houlden, Henry
Kurian, Manju A.
Kimura, Haruhide
Vissers, Lisenka E.L.M.
Wood, Nicholas W.
Bhatia, Kailash P.
author_facet Mencacci, Niccolò E.
Kamsteeg, Erik-Jan
Nakashima, Kosuke
R’Bibo, Lea
Lynch, David S.
Balint, Bettina
Willemsen, Michèl A.A.P.
Adams, Matthew E.
Wiethoff, Sarah
Suzuki, Kazunori
Davies, Ceri H.
Ng, Joanne
Meyer, Esther
Veneziano, Liana
Giunti, Paola
Hughes, Deborah
Raymond, F. Lucy
Carecchio, Miryam
Zorzi, Giovanna
Nardocci, Nardo
Barzaghi, Chiara
Garavaglia, Barbara
Salpietro, Vincenzo
Hardy, John
Pittman, Alan M.
Houlden, Henry
Kurian, Manju A.
Kimura, Haruhide
Vissers, Lisenka E.L.M.
Wood, Nicholas W.
Bhatia, Kailash P.
author_sort Mencacci, Niccolò E.
collection PubMed
description Chorea is a hyperkinetic movement disorder resulting from dysfunction of striatal medium spiny neurons (MSNs), which form the main output projections from the basal ganglia. Here, we used whole-exome sequencing to unravel the underlying genetic cause in three unrelated individuals with a very similar and unique clinical presentation of childhood-onset chorea and characteristic brain MRI showing symmetrical bilateral striatal lesions. All individuals were identified to carry a de novo heterozygous mutation in PDE10A (c.898T>C [p.Phe300Leu] in two individuals and c.1000T>C [p.Phe334Leu] in one individual), encoding a phosphodiesterase highly and selectively present in MSNs. PDE10A contributes to the regulation of the intracellular levels of cyclic adenosine monophosphate (cAMP) and cyclic guanosine monophosphate (cGMP). Both substitutions affect highly conserved amino acids located in the regulatory GAF-B domain, which, by binding to cAMP, stimulates the activity of the PDE10A catalytic domain. In silico modeling showed that the altered residues are located deep in the binding pocket, where they are likely to alter cAMP binding properties. In vitro functional studies showed that neither substitution affects the basal PDE10A activity, but they severely disrupt the stimulatory effect mediated by cAMP binding to the GAF-B domain. The identification of PDE10A mutations as a cause of chorea further motivates the study of cAMP signaling in MSNs and highlights the crucial role of striatal cAMP signaling in the regulation of basal ganglia circuitry. Pharmacological modulation of this pathway could offer promising etiologically targeted treatments for chorea and other hyperkinetic movement disorders.
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spelling pubmed-48332912016-06-23 De Novo Mutations in PDE10A Cause Childhood-Onset Chorea with Bilateral Striatal Lesions Mencacci, Niccolò E. Kamsteeg, Erik-Jan Nakashima, Kosuke R’Bibo, Lea Lynch, David S. Balint, Bettina Willemsen, Michèl A.A.P. Adams, Matthew E. Wiethoff, Sarah Suzuki, Kazunori Davies, Ceri H. Ng, Joanne Meyer, Esther Veneziano, Liana Giunti, Paola Hughes, Deborah Raymond, F. Lucy Carecchio, Miryam Zorzi, Giovanna Nardocci, Nardo Barzaghi, Chiara Garavaglia, Barbara Salpietro, Vincenzo Hardy, John Pittman, Alan M. Houlden, Henry Kurian, Manju A. Kimura, Haruhide Vissers, Lisenka E.L.M. Wood, Nicholas W. Bhatia, Kailash P. Am J Hum Genet Report Chorea is a hyperkinetic movement disorder resulting from dysfunction of striatal medium spiny neurons (MSNs), which form the main output projections from the basal ganglia. Here, we used whole-exome sequencing to unravel the underlying genetic cause in three unrelated individuals with a very similar and unique clinical presentation of childhood-onset chorea and characteristic brain MRI showing symmetrical bilateral striatal lesions. All individuals were identified to carry a de novo heterozygous mutation in PDE10A (c.898T>C [p.Phe300Leu] in two individuals and c.1000T>C [p.Phe334Leu] in one individual), encoding a phosphodiesterase highly and selectively present in MSNs. PDE10A contributes to the regulation of the intracellular levels of cyclic adenosine monophosphate (cAMP) and cyclic guanosine monophosphate (cGMP). Both substitutions affect highly conserved amino acids located in the regulatory GAF-B domain, which, by binding to cAMP, stimulates the activity of the PDE10A catalytic domain. In silico modeling showed that the altered residues are located deep in the binding pocket, where they are likely to alter cAMP binding properties. In vitro functional studies showed that neither substitution affects the basal PDE10A activity, but they severely disrupt the stimulatory effect mediated by cAMP binding to the GAF-B domain. The identification of PDE10A mutations as a cause of chorea further motivates the study of cAMP signaling in MSNs and highlights the crucial role of striatal cAMP signaling in the regulation of basal ganglia circuitry. Pharmacological modulation of this pathway could offer promising etiologically targeted treatments for chorea and other hyperkinetic movement disorders. Elsevier 2016-04-07 2016-04-07 /pmc/articles/PMC4833291/ /pubmed/27058447 http://dx.doi.org/10.1016/j.ajhg.2016.02.015 Text en © 2016 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 Report
Mencacci, Niccolò E.
Kamsteeg, Erik-Jan
Nakashima, Kosuke
R’Bibo, Lea
Lynch, David S.
Balint, Bettina
Willemsen, Michèl A.A.P.
Adams, Matthew E.
Wiethoff, Sarah
Suzuki, Kazunori
Davies, Ceri H.
Ng, Joanne
Meyer, Esther
Veneziano, Liana
Giunti, Paola
Hughes, Deborah
Raymond, F. Lucy
Carecchio, Miryam
Zorzi, Giovanna
Nardocci, Nardo
Barzaghi, Chiara
Garavaglia, Barbara
Salpietro, Vincenzo
Hardy, John
Pittman, Alan M.
Houlden, Henry
Kurian, Manju A.
Kimura, Haruhide
Vissers, Lisenka E.L.M.
Wood, Nicholas W.
Bhatia, Kailash P.
De Novo Mutations in PDE10A Cause Childhood-Onset Chorea with Bilateral Striatal Lesions
title De Novo Mutations in PDE10A Cause Childhood-Onset Chorea with Bilateral Striatal Lesions
title_full De Novo Mutations in PDE10A Cause Childhood-Onset Chorea with Bilateral Striatal Lesions
title_fullStr De Novo Mutations in PDE10A Cause Childhood-Onset Chorea with Bilateral Striatal Lesions
title_full_unstemmed De Novo Mutations in PDE10A Cause Childhood-Onset Chorea with Bilateral Striatal Lesions
title_short De Novo Mutations in PDE10A Cause Childhood-Onset Chorea with Bilateral Striatal Lesions
title_sort de novo mutations in pde10a cause childhood-onset chorea with bilateral striatal lesions
topic Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4833291/
https://www.ncbi.nlm.nih.gov/pubmed/27058447
http://dx.doi.org/10.1016/j.ajhg.2016.02.015
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