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1.
Nat Immunol ; 24(7): 1188-1199, 2023 07.
Artigo em Inglês | MEDLINE | ID: mdl-37322178

RESUMO

Spalt-like transcription factor 1 (SALL1) is a critical regulator of organogenesis and microglia identity. Here we demonstrate that disruption of a conserved microglia-specific super-enhancer interacting with the Sall1 promoter results in complete and specific loss of Sall1 expression in microglia. By determining the genomic binding sites of SALL1 and leveraging Sall1 enhancer knockout mice, we provide evidence for functional interactions between SALL1 and SMAD4 required for microglia-specific gene expression. SMAD4 binds directly to the Sall1 super-enhancer and is required for Sall1 expression, consistent with an evolutionarily conserved requirement of the TGFß and SMAD homologs Dpp and Mad for cell-specific expression of Spalt in the Drosophila wing. Unexpectedly, SALL1 in turn promotes binding and function of SMAD4 at microglia-specific enhancers while simultaneously suppressing binding of SMAD4 to enhancers of genes that become inappropriately activated in enhancer knockout microglia, thereby enforcing microglia-specific functions of the TGFß-SMAD signaling axis.


Assuntos
Microglia , Fatores de Transcrição , Animais , Camundongos , Sítios de Ligação , DNA , Camundongos Knockout , Microglia/metabolismo , Regiões Promotoras Genéticas/genética , Fatores de Transcrição/genética , Fatores de Transcrição/metabolismo , Fator de Crescimento Transformador beta/metabolismo
2.
Ann Neurol ; 92(1): 138-153, 2022 07.
Artigo em Inglês | MEDLINE | ID: mdl-35340043

RESUMO

OBJECTIVE: Collier/Olf/EBF (COE) transcription factors have distinct expression patterns in the developing and mature nervous system. To date, a neurological disease association has been conclusively established for only the Early B-cell Factor-3 (EBF3) COE family member through the identification of heterozygous loss-of-function variants in individuals with autism spectrum/neurodevelopmental disorders (NDD). Here, we identify a symptom severity risk association with missense variants primarily disrupting the zinc finger domain (ZNF) in EBF3-related NDD. METHODS: A phenotypic assessment of 41 individuals was combined with a literature meta-analysis for a total of 83 individuals diagnosed with EBF3-related NDD. Quantitative diagnostic phenotypic and symptom severity scales were developed to compare EBF3 variant type and location to identify genotype-phenotype correlations. To stratify the effects of EBF3 variants disrupting either the DNA-binding domain (DBD) or the ZNF, we used in vivo fruit fly UAS-GAL4 expression and in vitro luciferase assays. RESULTS: We show that patient symptom severity correlates with EBF3 missense variants perturbing the ZNF, which is a key protein domain required for stabilizing the interaction between EBF3 and the target DNA sequence. We found that ZNF-associated variants failed to restore viability in the fruit fly and impaired transcriptional activation. However, the recurrent variant EBF3 p.Arg209Trp in the DBD is capable of partially rescuing viability in the fly and preserved transcriptional activation. INTERPRETATION: We describe a symptom severity risk association with ZNF perturbations and EBF3 loss-of-function in the largest reported cohort to date of EBF3-related NDD patients. This analysis should have potential predictive clinical value for newly identified patients with EBF3 gene variants. ANN NEUROL 2022;92:138-153.


Assuntos
Transtorno do Espectro Autista , Transtornos do Neurodesenvolvimento , Fatores de Transcrição , Dedos de Zinco , Transtorno do Espectro Autista/genética , Humanos , Mutação de Sentido Incorreto/genética , Transtornos do Neurodesenvolvimento/genética , Fatores de Transcrição/genética , Fatores de Transcrição/metabolismo , Dedos de Zinco/genética
3.
Epilepsia ; 62(1): e13-e21, 2021 01.
Artigo em Inglês | MEDLINE | ID: mdl-33280099

RESUMO

Chromosome 1q41-q42 deletion syndrome is a rare cause of intellectual disability, seizures, dysmorphology, and multiple anomalies. Two genes in the 1q41-q42 microdeletion, WDR26 and FBXO28, have been implicated in monogenic disease. Patients with WDR26 encephalopathy overlap clinically with those with 1q41-q42 deletion syndrome, whereas only one patient with FBXO28 encephalopathy has been described. Seizures are a prominent feature of 1q41-q42 deletion syndrome; therefore, we hypothesized that pathogenic FBXO28 variants cause developmental and epileptic encephalopathies (DEEs). We describe nine new patients with FBXO28 pathogenic variants (four missense, including one recurrent, three nonsense, and one frameshift) and analyze all 10 known cases to delineate the phenotypic spectrum. All patients had epilepsy and 9 of 10 had DEE, including infantile spasms (3) and a progressive myoclonic epilepsy (1). Median age at seizure onset was 22.5 months (range 8 months to 5 years). Nine of 10 patients had intellectual disability, which was profound in six of nine and severe in three of nine. Movement disorders occurred in eight of 10 patients, six of 10 had hypotonia, four of 10 had acquired microcephaly, and five of 10 had dysmorphic features, albeit different to those typically seen in 1q41-q42 deletion syndrome and WDR26 encephalopathy. We distinguish FBXO28 encephalopathy from both of these disorders with more severe intellectual impairment, drug-resistant epilepsy, and hyperkinetic movement disorders.


Assuntos
Anormalidades Craniofaciais/genética , Deficiência Intelectual/genética , Epilepsias Mioclônicas Progressivas/genética , Proteínas Ligases SKP Culina F-Box/genética , Espasmos Infantis/genética , Adolescente , Adulto , Encefalopatias/complicações , Encefalopatias/genética , Encefalopatias/fisiopatologia , Criança , Pré-Escolar , Códon sem Sentido , Anormalidades Craniofaciais/complicações , Anormalidades Craniofaciais/fisiopatologia , Epilepsia Resistente a Medicamentos/complicações , Epilepsia Resistente a Medicamentos/genética , Epilepsia Resistente a Medicamentos/fisiopatologia , Eletroencefalografia , Síndromes Epilépticas/complicações , Síndromes Epilépticas/genética , Síndromes Epilépticas/fisiopatologia , Feminino , Mutação da Fase de Leitura , Humanos , Lactente , Deficiência Intelectual/complicações , Deficiência Intelectual/fisiopatologia , Masculino , Mutação de Sentido Incorreto , Epilepsias Mioclônicas Progressivas/complicações , Epilepsias Mioclônicas Progressivas/fisiopatologia , Fenótipo , Espasmos Infantis/complicações , Espasmos Infantis/fisiopatologia , Adulto Jovem
4.
Am J Med Genet A ; 167A(5): 931-73, 2015 May.
Artigo em Inglês | MEDLINE | ID: mdl-25790323

RESUMO

The following is a review of 50 X-linked syndromes and conditions associated with either arthrogryposis or other types of early contractures. These entities are categorized as those with known responsible gene mutations, those which are definitely X-linked, but the responsible gene has not been identified, and those suspected from family history to be X-linked. Several important ontology pathways for known disease genes have been identified and are discussed in relevance to clinical characteristics. Tables are included which help to identify distinguishing clinical features of each of the conditions.


Assuntos
Artrogripose/genética , Doenças Genéticas Ligadas ao Cromossomo X/genética , Atrofia Muscular Espinal/genética , Doenças Musculares/genética , Artrogripose/diagnóstico , Artrogripose/patologia , Contratura/diagnóstico , Contratura/genética , Contratura/patologia , Doenças Genéticas Ligadas ao Cromossomo X/diagnóstico , Doenças Genéticas Ligadas ao Cromossomo X/patologia , Humanos , Redes e Vias Metabólicas/genética , Atrofia Muscular Espinal/diagnóstico , Atrofia Muscular Espinal/patologia , Doenças Musculares/diagnóstico , Doenças Musculares/patologia , Mutação , Linhagem
5.
Curr Opin Genet Dev ; 84: 102146, 2024 02.
Artigo em Inglês | MEDLINE | ID: mdl-38171044

RESUMO

Microglia are the major immune cells of the central nervous system (CNS) that perform numerous adaptive functions required for normal CNS development and homeostasis but are also linked to neurodegenerative and behavioral diseases. Microglia development and function are strongly influenced by brain environmental signals that are integrated at the level of transcriptional enhancers to drive specific programs of gene expression. Here, we describe a conceptual framework for how lineage-determining and signal-dependent transcription factors interact to select and regulate the ensembles of enhancers that determine microglia development and function. We then highlight recent findings that advance these concepts and conclude with a consideration of open questions that represent some of the major hurdles to be addressed in the future.


Assuntos
Microglia , Doenças Neurodegenerativas , Humanos , Microglia/fisiologia , Doenças Neurodegenerativas/genética , Sistema Nervoso Central , Encéfalo , Fenótipo
6.
Mol Genet Genomic Med ; 3(4): 283-301, 2015 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-26247046

RESUMO

Neuromuscular diseases (NMD) account for a significant proportion of infant and childhood mortality and devastating chronic disease. Determining the specific diagnosis of NMD is challenging due to thousands of unique or rare genetic variants that result in overlapping phenotypes. We present four unique childhood myopathy cases characterized by relatively mild muscle weakness, slowly progressing course, mildly elevated creatine phosphokinase (CPK), and contractures. We also present two additional cases characterized by severe prenatal/neonatal myopathy. Prior extensive genetic testing and histology of these cases did not reveal the genetic etiology of disease. Here, we applied whole exome sequencing (WES) and bioinformatics to identify likely causal pathogenic variants in each pedigree. In two cases, we identified novel pathogenic variants in COL6A3. In a third case, we identified novel likely pathogenic variants in COL6A6 and COL6A3. We identified a novel splice variant in EMD in a fourth case. Finally, we classify two cases as calcium channelopathies with identification of novel pathogenic variants in RYR1 and CACNA1S. These are the first cases of myopathies reported to be caused by variants in COL6A6 and CACNA1S. Our results demonstrate the utility and genetic diagnostic value of WES in the broad class of NMD phenotypes.

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