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Clinico-radiological features, molecular spectrum, and identification of prognostic factors in developmental and epileptic encephalopathy due to inosine triphosphate pyrophosphatase (ITPase) deficiency.

Authors :
Scala M
Wortmann SB
Kaya N
Stellingwerff MD
Pistorio A
Glamuzina E
van Karnebeek CD
Skrypnyk C
Iwanicka-Pronicka K
Piekutowska-Abramczuk D
Ciara E
Tort F
Sheidley B
Poduri A
Jayakar P
Jayakar A
Upadia J
Walano N
Haack TB
Prokisch H
Aldhalaan H
Karimiani EG
Yildiz Y
Ceylan AC
Santiago-Sim T
Dameron A
Yang H
Toosi MB
Ashrafzadeh F
Akhondian J
Imannezhad S
Mirzadeh HS
Maqbool S
Farid A
Al-Muhaizea MA
Alshwameen MO
Aldowsari L
Alsagob M
Alyousef A
AlMass R
AlHargan A
Alwadei AH
AlRasheed MM
Colak D
Alqudairy H
Khan S
Lines MA
García Cazorla MÁ
Ribes A
Morava E
Bibi F
Haider S
Ferla MP
Taylor JC
Alsaif HS
Firdous A
Hashem M
Shashkin C
Koneev K
Kaiyrzhanov R
Efthymiou S
Genomics QS
Schmitt-Mechelke T
Ziegler A
Issa MY
Elbendary HM
Striano P
Alkuraya FS
Zaki MS
Gleeson JG
Barakat TS
Bierau J
van der Knaap MS
Maroofian R
Houlden H
Source :
Human mutation [Hum Mutat] 2022 Mar; Vol. 43 (3), pp. 403-419. Date of Electronic Publication: 2022 Jan 12.
Publication Year :
2022

Abstract

Developmental and epileptic encephalopathy 35 (DEE 35) is a severe neurological condition caused by biallelic variants in ITPA, encoding inosine triphosphate pyrophosphatase, an essential enzyme in purine metabolism. We delineate the genotypic and phenotypic spectrum of DEE 35, analyzing possible predictors for adverse clinical outcomes. We investigated a cohort of 28 new patients and reviewed previously described cases, providing a comprehensive characterization of 40 subjects. Exome sequencing was performed to identify underlying ITPA pathogenic variants. Brain MRI (magnetic resonance imaging) scans were systematically analyzed to delineate the neuroradiological spectrum. Survival curves according to the Kaplan-Meier method and log-rank test were used to investigate outcome predictors in different subgroups of patients. We identified 18 distinct ITPA pathogenic variants, including 14 novel variants, and two deletions. All subjects showed profound developmental delay, microcephaly, and refractory epilepsy followed by neurodevelopmental regression. Brain MRI revision revealed a recurrent pattern of delayed myelination and restricted diffusion of early myelinating structures. Congenital microcephaly and cardiac involvement were statistically significant novel clinical predictors of adverse outcomes. We refined the molecular, clinical, and neuroradiological characterization of ITPase deficiency, and identified new clinical predictors which may have a potentially important impact on diagnosis, counseling, and follow-up of affected individuals.<br /> (© 2022 The Authors. Human Mutation published by Wiley Periodicals LLC.)

Details

Language :
English
ISSN :
1098-1004
Volume :
43
Issue :
3
Database :
MEDLINE
Journal :
Human mutation
Publication Type :
Academic Journal
Accession number :
34989426
Full Text :
https://doi.org/10.1002/humu.24326