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1.
Am J Hum Genet ; 111(7): 1271-1281, 2024 07 11.
Article in English | MEDLINE | ID: mdl-38843839

ABSTRACT

There is mounting evidence of the value of clinical genome sequencing (cGS) in individuals with suspected rare genetic disease (RGD), but cGS performance and impact on clinical care in a diverse population drawn from both high-income countries (HICs) and low- and middle-income countries (LMICs) has not been investigated. The iHope program, a philanthropic cGS initiative, established a network of 24 clinical sites in eight countries through which it provided cGS to individuals with signs or symptoms of an RGD and constrained access to molecular testing. A total of 1,004 individuals (median age, 6.5 years; 53.5% male) with diverse ancestral backgrounds (51.8% non-majority European) were assessed from June 2016 to September 2021. The diagnostic yield of cGS was 41.4% (416/1,004), with individuals from LMIC sites 1.7 times more likely to receive a positive test result compared to HIC sites (LMIC 56.5% [195/345] vs. HIC 33.5% [221/659], OR 2.6, 95% CI 1.9-3.4, p < 0.0001). A change in diagnostic evaluation occurred in 76.9% (514/668) of individuals. Change of management, inclusive of specialty referrals, imaging and testing, therapeutic interventions, and palliative care, was reported in 41.4% (285/694) of individuals, which increased to 69.2% (480/694) when genetic counseling and avoidance of additional testing were also included. Individuals from LMIC sites were as likely as their HIC counterparts to experience a change in diagnostic evaluation (OR 6.1, 95% CI 1.1-∞, p = 0.05) and change of management (OR 0.9, 95% CI 0.5-1.3, p = 0.49). Increased access to genomic testing may support diagnostic equity and the reduction of global health care disparities.


Subject(s)
Genetic Testing , Rare Diseases , Whole Genome Sequencing , Humans , Male , Rare Diseases/genetics , Rare Diseases/diagnosis , Female , Child , Genetic Testing/methods , Child, Preschool , Adolescent , Adult , Infant , Genetic Diseases, Inborn/genetics , Genetic Diseases, Inborn/diagnosis
2.
Nat Genet ; 54(9): 1284-1292, 2022 09.
Article in English | MEDLINE | ID: mdl-35654974

ABSTRACT

The genetic etiology of autism spectrum disorder (ASD) is multifactorial, but how combinations of genetic factors determine risk is unclear. In a large family sample, we show that genetic loads of rare and polygenic risk are inversely correlated in cases and greater in females than in males, consistent with a liability threshold that differs by sex. De novo mutations (DNMs), rare inherited variants and polygenic scores were associated with various dimensions of symptom severity in children and parents. Parental age effects on risk for ASD in offspring were attributable to a combination of genetic mechanisms, including DNMs that accumulate in the paternal germline and inherited risk that influences behavior in parents. Genes implicated by rare variants were enriched in excitatory and inhibitory neurons compared with genes implicated by common variants. Our results suggest that a phenotypic spectrum of ASD is attributable to a spectrum of genetic factors that impact different neurodevelopmental processes.


Subject(s)
Autism Spectrum Disorder , Autistic Disorder , Autism Spectrum Disorder/genetics , Autistic Disorder/genetics , Child , Family , Female , Genetic Predisposition to Disease , Humans , Male , Multifactorial Inheritance/genetics
4.
Nat Hum Behav ; 6(3): 443-454, 2022 03.
Article in English | MEDLINE | ID: mdl-34980898

ABSTRACT

Affective speech, including motherese, captures an infant's attention and enhances social, language and emotional development. Decreased behavioural response to affective speech and reduced caregiver-child interactions are early signs of autism in infants. To understand this, we measured neural responses to mild affect speech, moderate affect speech and motherese using natural sleep functional magnetic resonance imaging and behavioural preference for motherese using eye tracking in typically developing toddlers and those with autism. By combining diverse neural-clinical data using similarity network fusion, we discovered four distinct clusters of toddlers. The autism cluster with the weakest superior temporal responses to affective speech and very poor social and language abilities had reduced behavioural preference for motherese, while the typically developing cluster with the strongest superior temporal response to affective speech showed the opposite effect. We conclude that significantly reduced behavioural preference for motherese in autism is related to impaired development of temporal cortical systems that normally respond to parental affective speech.


Subject(s)
Autism Spectrum Disorder , Speech , Attention , Autism Spectrum Disorder/diagnostic imaging , Eye-Tracking Technology , Humans , Infant , Language Development
6.
PLoS One ; 14(10): e0223603, 2019.
Article in English | MEDLINE | ID: mdl-31626646

ABSTRACT

BACKGROUND: Information is needed on the safety of adalimumab when used in pregnancy for the treatment of certain autoimmune diseases. METHODS AND FINDINGS: Between 2004 and 2016, the Organization of Teratology Information Specialists Research Center at the University of California San Diego conducted a prospective controlled observational cohort study in 602 pregnant women who had or had not taken adalimumab. Women in the adalimumab-exposed cohort had received at least one dose of the drug in the first trimester for the treatment of rheumatoid arthritis or Crohn's Disease (N = 257). Women in the disease comparison cohort had not used adalimumab in pregnancy (N = 120). Women in the healthy comparison cohort had no rheumatic or inflammatory bowel diseases (N = 225). Women and their infants were followed to one year postpartum with maternal interviews, medical records abstraction, and physical examinations. Study outcomes were major structural birth defects, minor defects, spontaneous abortion, preterm delivery, pre and post-natal growth deficiency, serious or opportunistic infections and malignancies. 42/602 (7.0%) of pregnancies were lost-to-follow-up. 22/221 (10.0%) in the adalimumab-exposed cohort had a live born infant with a major birth defect compared to 8/106 (7.5%) in the diseased unexposed cohort (adjusted odds ratio 1.10, 95% confidence interval [CI] 0.45 to 2.73). Women in the adalimumab-exposed cohort were more likely to deliver preterm compared to the healthy cohort (adjusted hazard ratio [aHR] 2.59, 95% CI 1.22 to 5.50), but not compared to the diseased unexposed cohort (aHR 0.82, 95% CI 0.66 to 7.20). No significant increased risks were noted with adalimumab exposure for any other study outcomes. CONCLUSIONS: Adalimumab exposure in pregnancy compared to diseased unexposed pregnancies was not associated with an increased risk for any of the adverse outcomes examined. Women with rheumatoid arthritis or Crohn's Disease were at increased risk of preterm delivery, irrespective of adalimumab exposure.


Subject(s)
Adalimumab/adverse effects , Antirheumatic Agents/adverse effects , Maternal Exposure/adverse effects , Pregnancy Outcome , Adalimumab/therapeutic use , Adult , Antirheumatic Agents/therapeutic use , Congenital Abnormalities/epidemiology , Congenital Abnormalities/etiology , Female , Humans , Live Birth , Middle Aged , Odds Ratio , Pregnancy , Pregnancy Complications/drug therapy , Pregnancy Complications/epidemiology , Risk Factors , Young Adult
9.
Am J Hum Genet ; 103(3): 431-439, 2018 09 06.
Article in English | MEDLINE | ID: mdl-30100084

ABSTRACT

ADP-ribosylation, the addition of poly-ADP ribose (PAR) onto proteins, is a response signal to cellular challenges, such as excitotoxicity or oxidative stress. This process is catalyzed by a group of enzymes referred to as poly(ADP-ribose) polymerases (PARPs). Because the accumulation of proteins with this modification results in cell death, its negative regulation restores cellular homeostasis: a process mediated by poly-ADP ribose glycohydrolases (PARGs) and ADP-ribosylhydrolase proteins (ARHs). Using linkage analysis and exome or genome sequencing, we identified recessive inactivating mutations in ADPRHL2 in six families. Affected individuals exhibited a pediatric-onset neurodegenerative disorder with progressive brain atrophy, developmental regression, and seizures in association with periods of stress, such as infections. Loss of the Drosophila paralog Parg showed lethality in response to oxidative challenge that was rescued by human ADPRHL2, suggesting functional conservation. Pharmacological inhibition of PARP also rescued the phenotype, suggesting the possibility of postnatal treatment for this genetic condition.

10.
Science ; 360(6386): 327-331, 2018 04 20.
Article in English | MEDLINE | ID: mdl-29674594

ABSTRACT

The genetic basis of autism spectrum disorder (ASD) is known to consist of contributions from de novo mutations in variant-intolerant genes. We hypothesize that rare inherited structural variants in cis-regulatory elements (CRE-SVs) of these genes also contribute to ASD. We investigated this by assessing the evidence for natural selection and transmission distortion of CRE-SVs in whole genomes of 9274 subjects from 2600 families affected by ASD. In a discovery cohort of 829 families, structural variants were depleted within promoters and untranslated regions, and paternally inherited CRE-SVs were preferentially transmitted to affected offspring and not to their unaffected siblings. The association of paternal CRE-SVs was replicated in an independent sample of 1771 families. Our results suggest that rare inherited noncoding variants predispose children to ASD, with differing contributions from each parent.


Subject(s)
Autism Spectrum Disorder/genetics , Genetic Predisposition to Disease , Genetic Variation , Paternal Inheritance , Promoter Regions, Genetic/genetics , Exons , Gene Expression Regulation , Genome, Human , Humans , Mutation , Pedigree , RNA, Untranslated/genetics , Selection, Genetic , Sequence Deletion , Transcription Factors/genetics
11.
JAMA ; 319(5): 474-482, 2018 02 06.
Article in English | MEDLINE | ID: mdl-29411031

ABSTRACT

Importance: Fetal alcohol spectrum disorders are costly, life-long disabilities. Older data suggested the prevalence of the disorder in the United States was 10 per 1000 children; however, there are few current estimates based on larger, diverse US population samples. Objective: To estimate the prevalence of fetal alcohol spectrum disorders, including fetal alcohol syndrome, partial fetal alcohol syndrome, and alcohol-related neurodevelopmental disorder, in 4 regions of the United States. Design, Setting, and Participants: Active case ascertainment methods using a cross-sectional design were used to assess children for fetal alcohol spectrum disorders between 2010 and 2016. Children were systematically assessed in the 4 domains that contribute to the fetal alcohol spectrum disorder continuum: dysmorphic features, physical growth, neurobehavioral development, and prenatal alcohol exposure. The settings were 4 communities in the Rocky Mountain, Midwestern, Southeastern, and Pacific Southwestern regions of the United States. First-grade children and their parents or guardians were enrolled. Exposures: Alcohol consumption during pregnancy. Main Outcomes and Measures: Prevalence of fetal alcohol spectrum disorders in the 4 communities was the main outcome. Conservative estimates for the prevalence of the disorder and 95% CIs were calculated using the eligible first-grade population as the denominator. Weighted prevalences and 95% CIs were also estimated, accounting for the sampling schemes and using data restricted to children who received a full evaluation. Results: A total of 6639 children were selected for participation from a population of 13 146 first-graders (boys, 51.9%; mean age, 6.7 years [SD, 0.41] and white maternal race, 79.3%). A total of 222 cases of fetal alcohol spectrum disorders were identified. The conservative prevalence estimates for fetal alcohol spectrum disorders ranged from 11.3 (95% CI, 7.8-15.8) to 50.0 (95% CI, 39.9-61.7) per 1000 children. The weighted prevalence estimates for fetal alcohol spectrum disorders ranged from 31.1 (95% CI, 16.1-54.0) to 98.5 (95% CI, 57.5-139.5) per 1000 children. Conclusions and Relevance: Estimated prevalence of fetal alcohol spectrum disorders among first-graders in 4 US communities ranged from 1.1% to 5.0% using a conservative approach. These findings may represent more accurate US prevalence estimates than previous studies but may not be generalizable to all communities.


Subject(s)
Fetal Alcohol Spectrum Disorders/epidemiology , Adult , Child , Child, Preschool , Cross-Sectional Studies , Female , Fetal Alcohol Spectrum Disorders/ethnology , Humans , Male , Mothers , Prevalence , Sampling Studies , Socioeconomic Factors , United States/epidemiology
12.
J Med Genet ; 54(9): 613-623, 2017 09.
Article in English | MEDLINE | ID: mdl-28735298

ABSTRACT

BACKGROUND: Mutations in forkhead box protein P1 (FOXP1) cause intellectual disability (ID) and specific language impairment (SLI), with or without autistic features (MIM: 613670). Despite multiple case reports no specific phenotype emerged so far. METHODS: We correlate clinical and molecular data of 25 novel and 23 previously reported patients with FOXP1 defects. We evaluated FOXP1 activity by an in vitro luciferase model and assessed protein stability in vitro by western blotting. RESULTS: Patients show ID, SLI, neuromotor delay (NMD) and recurrent facial features including a high broad forehead, bent downslanting palpebral fissures, ptosis and/or blepharophimosis and a bulbous nasal tip. Behavioural problems and autistic features are common. Brain, cardiac and urogenital malformations can be associated. More severe ID and NMD, sensorineural hearing loss and feeding difficulties are more common in patients with interstitial 3p deletions (14 patients) versus patients with monogenic FOXP1 defects (34 patients). Mutations result in impaired transcriptional repression and/or reduced protein stability. CONCLUSIONS: FOXP1-related ID syndrome is a recognisable entity with a wide clinical spectrum and frequent systemic involvement. Our data will be helpful to evaluate genotype-phenotype correlations when interpreting next-generation sequencing data obtained in patients with ID and/or SLI and will guide clinical management.


Subject(s)
Forkhead Transcription Factors/genetics , Intellectual Disability/genetics , Repressor Proteins/genetics , Autism Spectrum Disorder/genetics , Face/abnormalities , Female , Forkhead Transcription Factors/chemistry , Forkhead Transcription Factors/metabolism , Humans , Language Disorders/genetics , Male , Motor Skills Disorders/genetics , Mutation , Mutation, Missense , Neurodevelopmental Disorders/genetics , Phenotype , Protein Stability , Repressor Proteins/chemistry , Repressor Proteins/metabolism , Syndrome , Transcription, Genetic
13.
Am J Hum Genet ; 98(4): 667-79, 2016 Apr 07.
Article in English | MEDLINE | ID: mdl-27018473

ABSTRACT

Genetic studies of autism spectrum disorder (ASD) have established that de novo duplications and deletions contribute to risk. However, ascertainment of structural variants (SVs) has been restricted by the coarse resolution of current approaches. By applying a custom pipeline for SV discovery, genotyping, and de novo assembly to genome sequencing of 235 subjects (71 affected individuals, 26 healthy siblings, and their parents), we compiled an atlas of 29,719 SV loci (5,213/genome), comprising 11 different classes. We found a high diversity of de novo mutations, the majority of which were undetectable by previous methods. In addition, we observed complex mutation clusters where combinations of de novo SVs, nucleotide substitutions, and indels occurred as a single event. We estimate a high rate of structural mutation in humans (20%) and propose that genetic risk for ASD is attributable to an elevated frequency of gene-disrupting de novo SVs, but not an elevated rate of genome rearrangement.


Subject(s)
Autism Spectrum Disorder/genetics , Gene Deletion , Gene Duplication , Alleles , Amino Acid Sequence , Base Sequence , Case-Control Studies , Child , DNA Copy Number Variations , Female , Gene Frequency , Gene Rearrangement , Genetic Loci , Genome, Human , Genotyping Techniques , Humans , INDEL Mutation , Male , Microarray Analysis , Molecular Sequence Data , Pedigree , Reproducibility of Results , Sensitivity and Specificity
14.
Am J Med Genet A ; 170A(4): 992-8, 2016 Apr.
Article in English | MEDLINE | ID: mdl-27001912

ABSTRACT

Galloway-Mowat syndrome is a rare autosomal-recessive disorder classically described as the combination of microcephaly and nephrotic syndrome. Recently, homozygous truncating mutations in WDR73 (WD repeat domain 73) were described in two of 31 unrelated families with Galloway-Mowat syndrome which was followed by a report of two sibs in an Egyptian consanguineous family. In this report, seven affecteds from four families showing biallelic missense mutations in WDR73 were identified by exome sequencing and confirmed to follow a recessive model of inheritance. Three-dimensional modeling predicted conformational alterations as a result of the mutation, supporting pathogenicity. An additional 13 families with microcephaly and renal phenotype were negative for WDR73 mutations. Missense mutations in the WDR73 gene are reported for the first time in Galloway-Mowat syndrome. A detailed phenotypic comparison of all reported WDR73-linked Galloway-Mowat syndrome patients with WDR73 negative patients showed that WDR73 mutations are limited to those with classical Galloway-Mowat syndrome features, in addition to cerebellar atrophy, thin corpus callosum, brain stem hypoplasia, occasional coarse face, late-onset and mostly slow progressive nephrotic syndrome, and frequent epilepsy.


Subject(s)
Hernia, Hiatal/diagnosis , Hernia, Hiatal/genetics , Homozygote , Microcephaly/diagnosis , Microcephaly/genetics , Mutation, Missense , Nephrosis/diagnosis , Nephrosis/genetics , Proteins/genetics , Cohort Studies , Exome , Facies , Female , Genetic Association Studies , High-Throughput Nucleotide Sequencing , Humans , Male , Models, Molecular , Pedigree , Phenotype , Protein Conformation , Proteins/chemistry
15.
Elife ; 4: e06602, 2015 May 30.
Article in English | MEDLINE | ID: mdl-26026149

ABSTRACT

Defective primary ciliogenesis or cilium stability forms the basis of human ciliopathies, including Joubert syndrome (JS), with defective cerebellar vermis development. We performed a high-content genome-wide small interfering RNA (siRNA) screen to identify genes regulating ciliogenesis as candidates for JS. We analyzed results with a supervised-learning approach, using SYSCILIA gold standard, Cildb3.0, a centriole siRNA screen and the GTex project, identifying 591 likely candidates. Intersection of this data with whole exome results from 145 individuals with unexplained JS identified six families with predominantly compound heterozygous mutations in KIAA0586. A c.428del base deletion in 0.1% of the general population was found in trans with a second mutation in an additional set of 9 of 163 unexplained JS patients. KIAA0586 is an orthologue of chick Talpid3, required for ciliogenesis and Sonic hedgehog signaling. Our results uncover a relatively high frequency cause for JS and contribute a list of candidates for future gene discoveries in ciliopathies.


Subject(s)
Cell Cycle Proteins/genetics , Cerebellum/abnormalities , Genetic Predisposition to Disease , Mutant Proteins/genetics , Retina/abnormalities , Abnormalities, Multiple/genetics , Eye Abnormalities/genetics , Gene Frequency , Genetic Testing , Genome-Wide Association Study , Heterozygote , Humans , Kidney Diseases, Cystic/genetics , RNA, Small Interfering/genetics
16.
Nat Genet ; 47(7): 809-13, 2015 Jul.
Article in English | MEDLINE | ID: mdl-26005868

ABSTRACT

Docosahexanoic acid (DHA) is the most abundant omega-3 fatty acid in brain, and, although it is considered essential, deficiency has not been linked to disease. Despite the large mass of DHA in phospholipids, the brain does not synthesize it. DHA is imported across the blood-brain barrier (BBB) through the major facilitator superfamily domain-containing 2a (MFSD2A) protein. MFSD2A transports DHA as well as other fatty acids in the form of lysophosphatidylcholine (LPC). We identify two families displaying MFSD2A mutations in conserved residues. Affected individuals exhibited a lethal microcephaly syndrome linked to inadequate uptake of LPC lipids. The MFSD2A mutations impaired transport activity in a cell-based assay. Moreover, when expressed in mfsd2aa-morphant zebrafish, mutants failed to rescue microcephaly, BBB breakdown and lethality. Our results establish a link between transport of DHA and LPCs by MFSD2A and human brain growth and function, presenting the first evidence of monogenic disease related to transport of DHA in humans.


Subject(s)
Brain/metabolism , Fatty Acids, Omega-3/metabolism , Microcephaly/genetics , Tumor Suppressor Proteins/genetics , Adolescent , Animals , Biological Transport , Blood-Brain Barrier/metabolism , Case-Control Studies , Child , Child, Preschool , Consanguinity , Female , Genes, Lethal , Genetic Association Studies , HEK293 Cells , Humans , Infant , Male , Mice, Knockout , Mutation, Missense , Symporters , Syndrome , Zebrafish
17.
Nat Genet ; 47(5): 528-34, 2015 May.
Article in English | MEDLINE | ID: mdl-25848753

ABSTRACT

Pediatric-onset ataxias often present clinically as developmental delay and intellectual disability, with prominent cerebellar atrophy as a key neuroradiographic finding. Here we describe a new clinically distinguishable recessive syndrome in 12 families with cerebellar atrophy together with ataxia, coarsened facial features and intellectual disability, due to truncating mutations in the sorting nexin gene SNX14, encoding a ubiquitously expressed modular PX domain-containing sorting factor. We found SNX14 localized to lysosomes and associated with phosphatidylinositol (3,5)-bisphosphate, a key component of late endosomes/lysosomes. Patient-derived cells showed engorged lysosomes and a slower autophagosome clearance rate upon autophagy induction by starvation. Zebrafish morphants for snx14 showed dramatic loss of cerebellar parenchyma, accumulation of autophagosomes and activation of apoptosis. Our results characterize a unique ataxia syndrome due to biallelic SNX14 mutations leading to lysosome-autophagosome dysfunction.


Subject(s)
Cerebellar Diseases/genetics , Cerebellum/pathology , Lysosomes/metabolism , Phagosomes/metabolism , Sorting Nexins/genetics , Spinocerebellar Ataxias/genetics , Animals , Atrophy/genetics , Autophagy , Child, Preschool , Female , Gene Frequency , Humans , Infant , Lod Score , Lysosomal Storage Diseases/genetics , Male , Mutation , Syndrome , Zebrafish
18.
Science ; 343(6170): 506-511, 2014 Jan 31.
Article in English | MEDLINE | ID: mdl-24482476

ABSTRACT

Hereditary spastic paraplegias (HSPs) are neurodegenerative motor neuron diseases characterized by progressive age-dependent loss of corticospinal motor tract function. Although the genetic basis is partly understood, only a fraction of cases can receive a genetic diagnosis, and a global view of HSP is lacking. By using whole-exome sequencing in combination with network analysis, we identified 18 previously unknown putative HSP genes and validated nearly all of these genes functionally or genetically. The pathways highlighted by these mutations link HSP to cellular transport, nucleotide metabolism, and synapse and axon development. Network analysis revealed a host of further candidate genes, of which three were mutated in our cohort. Our analysis links HSP to other neurodegenerative disorders and can facilitate gene discovery and mechanistic understanding of disease.


Subject(s)
Exome/genetics , Genetic Association Studies , Motor Neuron Disease/genetics , Neurons/metabolism , Pyramidal Tracts/metabolism , Spastic Paraplegia, Hereditary/genetics , Animals , Axons/physiology , Biological Transport/genetics , Cohort Studies , Gene Regulatory Networks , Humans , Mutation , Nucleotides/genetics , Nucleotides/metabolism , Sequence Analysis, DNA , Synapses/physiology , Transcriptome , Zebrafish
19.
Dev Med Child Neurol ; 56(1): 12-8, 2014 Jan.
Article in English | MEDLINE | ID: mdl-24116704

ABSTRACT

Autism spectrum disorders (ASDs) are a group of heterogeneous neurodevelopmental disorders that show impaired communication and socialization, restricted interests, and stereotypical behavioral patterns. Recent advances in molecular medicine and high throughput screenings, such as array comparative genomic hybridization (CGH) and exome and whole genome sequencing, have revealed both novel insights and new questions about the nature of this spectrum of disorders. What has emerged is a better understanding about the genetic architecture of various genetic subtypes of ASD and correlations of genetic mutations with specific autism subtypes. Based on this new information, we outline a strategy for advancing diagnosis, prognosis, and counseling for patients and families.


Subject(s)
Child Development Disorders, Pervasive/genetics , Child Development Disorders, Pervasive/psychology , Gene Deletion , Gene Duplication , Child , Child Development Disorders, Pervasive/diagnosis , Child, Preschool , Chromosome Deletion , Chromosome Disorders/complications , Chromosome Disorders/genetics , Chromosomes, Human, Pair 22/genetics , Comparative Genomic Hybridization , DNA Copy Number Variations/genetics , Fragile X Syndrome/complications , Fragile X Syndrome/genetics , Humans , Infant , Intellectual Disability/genetics , Intellectual Disability/psychology , Methyl-CpG-Binding Protein 2/genetics , Muscular Dystrophy, Duchenne/complications , Nerve Tissue Proteins/genetics , PTEN Phosphohydrolase/genetics , Severity of Illness Index , Tuberous Sclerosis/complications , Tuberous Sclerosis/genetics , Tuberous Sclerosis Complex 1 Protein , Tuberous Sclerosis Complex 2 Protein , Tumor Suppressor Proteins/genetics
20.
Cell ; 154(3): 505-17, 2013 Aug 01.
Article in English | MEDLINE | ID: mdl-23911318

ABSTRACT

Purine biosynthesis and metabolism, conserved in all living organisms, is essential for cellular energy homeostasis and nucleic acid synthesis. The de novo synthesis of purine precursors is under tight negative feedback regulation mediated by adenosine and guanine nucleotides. We describe a distinct early-onset neurodegenerative condition resulting from mutations in the adenosine monophosphate deaminase 2 gene (AMPD2). Patients have characteristic brain imaging features of pontocerebellar hypoplasia (PCH) due to loss of brainstem and cerebellar parenchyma. We found that AMPD2 plays an evolutionary conserved role in the maintenance of cellular guanine nucleotide pools by regulating the feedback inhibition of adenosine derivatives on de novo purine synthesis. AMPD2 deficiency results in defective GTP-dependent initiation of protein translation, which can be rescued by administration of purine precursors. These data suggest AMPD2-related PCH as a potentially treatable early-onset neurodegenerative disease.


Subject(s)
AMP Deaminase/metabolism , Olivopontocerebellar Atrophies/metabolism , Purines/biosynthesis , AMP Deaminase/chemistry , AMP Deaminase/genetics , Animals , Brain Stem/pathology , Cerebellum/pathology , Child , Female , Guanosine Triphosphate/metabolism , Humans , Male , Mice , Mice, Knockout , Mutation , Neural Stem Cells/metabolism , Olivopontocerebellar Atrophies/genetics , Olivopontocerebellar Atrophies/pathology , Protein Biosynthesis , Saccharomyces cerevisiae/enzymology , Saccharomyces cerevisiae/metabolism
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