Characterization of the TBR1 interactome: variants associated with neurodevelopmental disorders disrupt novel protein interactions

Author:

Sollis Elliot1ORCID,den Hoed Joery1ORCID,Quevedo Marti23ORCID,Estruch Sara B1ORCID,Vino Arianna1,Dekkers Dick H W4ORCID,Demmers Jeroen A A4ORCID,Poot Raymond2ORCID,Deriziotis Pelagia1ORCID,Fisher Simon E15ORCID

Affiliation:

1. Max Planck Institute for Psycholinguistics Language and Genetics Department, , Nijmegen, XD 6525, Th e Netherlands

2. Erasmus University Medical Center Department of Cell Biology, , Rotterdam, CN 3015, Th e Netherlands

3. Umeå Plant Science Centre Department of Plant Physiology, , Umeå, 90736 , Sweden

4. Proteomics Center, Erasmus University Medical Center , Rotterdam, CN 3015, Th e Netherlands

5. Donders Institute for Brain, Cognition and Behaviour , Radboud University, Nijmegen, AJ 6525, Th e Netherlands

Abstract

Abstract TBR1 is a neuron-specific transcription factor involved in brain development and implicated in a neurodevelopmental disorder (NDD) combining features of autism spectrum disorder (ASD), intellectual disability (ID) and speech delay. TBR1 has been previously shown to interact with a small number of transcription factors and co-factors also involved in NDDs (including CASK, FOXP1/2/4 and BCL11A), suggesting that the wider TBR1 interactome may have a significant bearing on normal and abnormal brain development. Here, we have identified approximately 250 putative TBR1-interaction partners by affinity purification coupled to mass spectrometry. As well as known TBR1-interactors such as CASK, the identified partners include transcription factors and chromatin modifiers, along with ASD- and ID-related proteins. Five interaction candidates were independently validated using bioluminescence resonance energy transfer assays. We went on to test the interaction of these candidates with TBR1 protein variants implicated in cases of NDD. The assays uncovered disturbed interactions for NDD-associated variants and identified two distinct protein-binding domains of TBR1 that have essential roles in protein–protein interaction.

Funder

The Max Planck Society

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology,General Medicine

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