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Biallelic Mutations in PDE10A Lead to Loss of Striatal PDE10A and a Hyperkinetic Movement Disorder with Onset in Infancy.

Authors :
Diggle CP
Sukoff Rizzo SJ
Popiolek M
Hinttala R
Schülke JP
Kurian MA
Carr IM
Markham AF
Bonthron DT
Watson C
Sharif SM
Reinhart V
James LC
Vanase-Frawley MA
Charych E
Allen M
Harms J
Schmidt CJ
Ng J
Pysden K
Strick C
Vieira P
Mankinen K
Kokkonen H
Kallioinen M
Sormunen R
Rinne JO
Johansson J
Alakurtti K
Huilaja L
Hurskainen T
Tasanen K
Anttila E
Marques TR
Howes O
Politis M
Fahiminiya S
Nguyen KQ
Majewski J
Uusimaa J
Sheridan E
Brandon NJ
Source :
American journal of human genetics [Am J Hum Genet] 2016 Apr 07; Vol. 98 (4), pp. 735-43.
Publication Year :
2016

Abstract

Deficits in the basal ganglia pathways modulating cortical motor activity underlie both Parkinson disease (PD) and Huntington disease (HD). Phosphodiesterase 10A (PDE10A) is enriched in the striatum, and animal data suggest that it is a key regulator of this circuitry. Here, we report on germline PDE10A mutations in eight individuals from two families affected by a hyperkinetic movement disorder due to homozygous mutations c.320A>G (p.Tyr107Cys) and c.346G>C (p.Ala116Pro). Both mutations lead to a reduction in PDE10A levels in recombinant cellular systems, and critically, positron-emission-tomography (PET) studies with a specific PDE10A ligand confirmed that the p.Tyr107Cys variant also reduced striatal PDE10A levels in one of the affected individuals. A knock-in mouse model carrying the homologous p.Tyr97Cys variant had decreased striatal PDE10A and also displayed motor abnormalities. Striatal preparations from this animal had an impaired capacity to degrade cyclic adenosine monophosphate (cAMP) and a blunted pharmacological response to PDE10A inhibitors. These observations highlight the critical role of PDE10A in motor control across species.<br /> (Copyright © 2016 The American Society of Human Genetics. Published by Elsevier Inc. All rights reserved.)

Details

Language :
English
ISSN :
1537-6605
Volume :
98
Issue :
4
Database :
MEDLINE
Journal :
American journal of human genetics
Publication Type :
Academic Journal
Accession number :
27058446
Full Text :
https://doi.org/10.1016/j.ajhg.2016.03.015