ZBTB11 dysfunction: spectrum of brain abnormalities, biochemical signature and cellular consequences

Author:

Sumathipala Dulika1,Strømme Petter23,Fattahi Zohreh4,Lüders Torben5,Sheng Ying1,Kahrizi Kimia4,Einarsen Ingunn Holm1,Sloan Jennifer L6,Najmabadi Hossein4,van den Heuvel Lambert7,Wevers Ron A78,Guerrero-Castillo Sergio9,Mørkrid Lars1011,Valayannopoulos Vassili12,Backe Paul Hoff1013ORCID,Venditti Charles P6ORCID,van Karnebeek Clara D7814,Nilsen Hilde5,Frengen Eirik1ORCID,Misceo Doriana1ORCID

Affiliation:

1. Department of Medical Genetics, Oslo University Hospital and University of Oslo , Oslo , Norway

2. Division of Pediatric and Adolescent Medicine, Division of Pediatric and Adolescent Medicine, Oslo University Hospital , Oslo , Norway

3. Faculty of Medicine, University of Oslo , Oslo , Norway

4. Genetics Research Center, University of Social Welfare and Rehabilitation Sciences , Tehran , Iran

5. Department of Clinical Molecular Biology, Section of Clinical Molecular Biology (EpiGen), University of Oslo and Akershus University Hospital , Lørenskog , Norway

6. Organic Acid Research Section, Medical Genomics and Metabolic Genetics Branch, NHGRI, NIH , Bethesda, MD , USA

7. Translational Metabolic Laboratory, Department Laboratory Medicine, Radboud University Medical Center , Nijmegen , The Netherlands

8. United for Metabolic Disease—UMD , The Netherlands

9. University Children’s Research@Kinder-UKE, University Medical Center Hamburg-Eppendorf (UKE) , Hamburg , Germany

10. Department of Medical Biochemistry, Oslo University Hospital , Oslo , Norway

11. Institute of Clinical Medicine, University of Oslo , Oslo , Norway

12. Necker-Enfants Malades University Hospital and IMAGINE Institute , Paris , France

13. Department of Microbiology, Oslo University Hospital , Oslo , Norway

14. Department of Pediatrics, Centre for Molecular Medicine and Therapeutics, University of British Columbia , Vancouver , Canada

Abstract

Abstract Bi-allelic pathogenic variants in ZBTB11 have been associated with intellectual developmental disorder, autosomal recessive 69 (MRT69; OMIM 618383). We report five patients from three families with novel, bi-allelic variants in ZBTB11. We have expanded the clinical phenotype of MRT69, documenting varied severity of atrophy affecting different brain regions and described combined malonic and methylmalonic aciduria as a biochemical manifestation. As ZBTB11 encodes for a transcriptional regulator, we performeded chromatin immunoprecipitation–sequencing targeting ZBTB11 in fibroblasts from patients and controls. Chromatin immunoprecipitation–sequencing revealed binding of wild-type ZBTB11 to promoters in 238 genes, among which genes encoding proteins involved in mitochondrial functions and RNA processing are over-represented. Mutated ZBTB11 showed reduced binding to 61 of the targeted genes, indicating that the variants act as loss of function. Most of these genes are related to mitochondrial functions. Transcriptome analysis of the patient fibroblasts revealed dysregulation of mitochondrial functions. In addition, we uncovered that reduced binding of the mutated ZBTB11 to ACSF3 leads to decreased ACSF3 transcript level, explaining combined malonic and methylmalonic aciduria. Collectively, these results expand the clinical spectrum of ZBTB11-related neurological disease and give insight into the pathophysiology in which the dysfunctional ZBTB11 affect mitochondrial functions and RNA processing contributing to the neurological and biochemical phenotypes.

Funder

Norwegian State Educational Loan Fund

South-East Norway Regional Health

Children’s Hospital Foundation

Canadian Institutes of Health Research

Publisher

Oxford University Press (OUP)

Subject

Neurology (clinical)

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