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

被引:8
作者
Sumathipala, Dulika [1 ,2 ]
Stromme, Petter [3 ,4 ]
Fattahi, Zohreh [5 ]
Luders, Torben [6 ,7 ]
Sheng, Ying [1 ,2 ]
Kahrizi, Kimia [5 ]
Einarsen, Ingunn Holm [1 ,2 ]
Sloan, Jennifer L. [8 ]
Najmabadi, Hossein [5 ]
van den Heuvel, Lambert [9 ]
Wevers, Ron A. [9 ,10 ]
Guerrero-Castillo, Sergio [11 ]
Morkrid, Lars [12 ,13 ]
Valayannopoulos, Vassili [14 ,15 ,18 ]
Backe, Paul Hoff [12 ,16 ]
Venditti, Charles P. [8 ]
van Karnebeek, Clara D. [9 ,10 ,17 ]
Nilsen, Hilde [6 ,7 ]
Frengen, Eirik [1 ,2 ]
Misceo, Doriana [1 ,2 ]
机构
[1] Oslo Univ Hosp, Dept Med Genet, Postboks 4956 Nydalen, N-0424 Oslo, Norway
[2] Univ Oslo, Postboks 4956 Nydalen, N-0424 Oslo, Norway
[3] Oslo Univ Hosp, Div Pediat & Adolescent Med, Oslo, Norway
[4] Univ Oslo, Fac Med, Oslo, Norway
[5] Univ Social Welf & Rehabil Sci, Genet Res Ctr, Tehran, Iran
[6] Univ Oslo, Dept Clin Mol Biol, Sect Clin Mol Biol EpiGen, Lorenskog, Norway
[7] Akershus Univ Hosp, Lorenskog, Norway
[8] NHGRI, Organ Acid Res Sect, Med Genom & Metab Genet Branch, NIH, Bethesda, MD 20892 USA
[9] Radboud Univ Nijmegen, Dept Lab Med, Translat Metab Lab, Med Ctr, Nijmegen, Netherlands
[10] United Metab Dis UMD, Nijmegen, Netherlands
[11] Univ Med Ctr Hamburg Eppendorf UKE, Univ Childrens Res Kinder UKE, Hamburg, Germany
[12] Oslo Univ Hosp, Dept Med Biochem, Oslo, Norway
[13] Univ Oslo, Inst Clin Med, Oslo, Norway
[14] Necker Enfants Malad Univ Hosp, Paris, France
[15] IMAGINE Inst, Paris, France
[16] Oslo Univ Hosp, Dept Microbiol, Oslo, Norway
[17] Univ British Columbia, Ctr Mol Med & Therapeut, Dept Pediat, Vancouver, BC, Canada
[18] Ultragenyx Pharmaceut, Cambridge, MA 02139 USA
基金
加拿大健康研究院;
关键词
chromatin immunoprecipitation (ChIP)-sequencing; malonic aciduria; methylmalonic aciduria; RNA-sequencing; ZBTB11; METHYLMALONIC ACIDURIA; TARP GAMMA-8; DNA-BINDING; EXPRESSION; ACSF3; PACKAGE; PROTEIN; CHAIN;
D O I
10.1093/brain/awac034
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
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. Mutations in ZBTB11 are associated with intellectual disability. Sumathipala et al. show that patients with ZBTB11 mutations display atrophy in multiple brain regions, and that malonic and methylmalonic aciduria are disease markers. In vitro studies indicate that ZBTB11 regulates mitochondrial translation and RNA processing.
引用
收藏
页码:2602 / 2616
页数:15
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