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Functional analysis of TLK2variants and their proximal interactomes implicates impaired kinase activity and chromatin maintenance defects in their pathogenesis

Authors :
Pavinato, Lisa
Villamor-Payà, Marina
Sanchiz-Calvo, Maria
Andreoli, Cristina
Gay, Marina
Vilaseca, Marta
Arauz-Garofalo, Gianluca
Ciolfi, Andrea
Bruselles, Alessandro
Pippucci, Tommaso
Prota, Valentina
Carli, Diana
Giorgio, Elisa
Radio, Francesca Clementina
Antona, Vincenzo
Giuffrè, Mario
Ranguin, Kara
Colson, Cindy
De Rubeis, Silvia
Dimartino, Paola
Buxbaum, Joseph D
Ferrero, Giovanni Battista
Tartaglia, Marco
Martinelli, Simone
Stracker, Travis H
Brusco, Alfredo
Source :
Journal of Medical Genetics (JMG); 2022, Vol. 59 Issue: 2 p170-179, 10p
Publication Year :
2022

Abstract

IntroductionThe Tousled-like kinases 1 and 2 (TLK1 and TLK2) are involved in many fundamental processes, including DNA replication, cell cycle checkpoint recovery and chromatin remodelling. Mutations in TLK2were recently associated with ‘Mental Retardation Autosomal Dominant 57’ (MRD57, MIM# 618050), a neurodevelopmental disorder characterised by a highly variable phenotype, including mild-to-moderate intellectual disability, behavioural abnormalities, facial dysmorphisms, microcephaly, epilepsy and skeletal anomalies.MethodsWe re-evaluate whole exome sequencing and array-CGH data from a large cohort of patients affected by neurodevelopmental disorders. Using spatial proteomics (BioID) and single-cell gel electrophoresis, we investigated the proximity interaction landscape of TLK2and analysed the effects of p.(Asp551Gly) and a previously reported missense variant (c.1850C>T; p.(Ser617Leu)) on TLK2 interactions, localisation and activity.ResultsWe identified three new unrelated MRD57 families. Two were sporadic and caused by a missense change (c.1652A>G; p.(Asp551Gly)) or a 39 kb deletion encompassing TLK2, and one was familial with three affected siblings who inherited a nonsense change from an affected mother (c.1423G>T; p.(Glu475Ter)). The clinical phenotypes were consistent with those of previously reported cases. The tested mutations strongly impaired TLK2kinase activity. Proximal interactions between TLK2 and other factors implicated in neurological disorders, including CHD7, CHD8, BRD4 and NACC1, were identified. Finally, we demonstrated a more relaxed chromatin state in lymphoblastoid cells harbouring the p.(Asp551Gly) variant compared with control cells, conferring susceptibility to DNA damage.ConclusionOur study identified novel TLK2pathogenic variants, confirming and further expanding the MRD57-related phenotype. The molecular characterisation of missense variants increases our knowledge about TLK2 function and provides new insights into its role in neurodevelopmental disorders.

Details

Language :
English
ISSN :
00222593 and 14686244
Volume :
59
Issue :
2
Database :
Supplemental Index
Journal :
Journal of Medical Genetics (JMG)
Publication Type :
Periodical
Accession number :
ejs58738366
Full Text :
https://doi.org/10.1136/jmedgenet-2020-107281