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1.
Acta Neuropathol ; 138(6): 1013-1031, 2019 12.
Article in English | MEDLINE | ID: mdl-31463572

ABSTRACT

MSTO1 encodes a cytosolic mitochondrial fusion protein, misato homolog 1 or MSTO1. While the full genotype-phenotype spectrum remains to be explored, pathogenic variants in MSTO1 have recently been reported in a small number of patients presenting with a phenotype of cerebellar ataxia, congenital muscle involvement with histologic findings ranging from myopathic to dystrophic and pigmentary retinopathy. The proposed underlying pathogenic mechanism of MSTO1-related disease is suggestive of impaired mitochondrial fusion secondary to a loss of function of MSTO1. Disorders of mitochondrial fusion and fission have been shown to also lead to mitochondrial DNA (mtDNA) depletion, linking them to the mtDNA depletion syndromes, a clinically and genetically diverse class of mitochondrial diseases characterized by a reduction of cellular mtDNA content. However, the consequences of pathogenic variants in MSTO1 on mtDNA maintenance remain poorly understood. We present extensive phenotypic and genetic data from 12 independent families, including 15 new patients harbouring a broad array of bi-allelic MSTO1 pathogenic variants, and we provide functional characterization from seven MSTO1-related disease patient fibroblasts. Bi-allelic loss-of-function variants in MSTO1 manifest clinically with a remarkably consistent phenotype of childhood-onset muscular dystrophy, corticospinal tract dysfunction and early-onset non-progressive cerebellar atrophy. MSTO1 protein was not detectable in the cultured fibroblasts of all seven patients evaluated, suggesting that pathogenic variants result in a loss of protein expression and/or affect protein stability. Consistent with impaired mitochondrial fusion, mitochondrial networks in fibroblasts were found to be fragmented. Furthermore, all fibroblasts were found to have depletion of mtDNA ranging from 30 to 70% along with alterations to mtDNA nucleoids. Our data corroborate the role of MSTO1 as a mitochondrial fusion protein and highlight a previously unrecognized link to mtDNA regulation. As impaired mitochondrial fusion is a recognized cause of mtDNA depletion syndromes, this novel link to mtDNA depletion in patient fibroblasts suggests that MSTO1-deficiency should also be considered a mtDNA depletion syndrome. Thus, we provide mechanistic insight into the disease pathogenesis associated with MSTO1 mutations and further define the clinical spectrum and the natural history of MSTO1-related disease.


Subject(s)
Cell Cycle Proteins/genetics , Cerebellar Diseases/genetics , Cytoskeletal Proteins/genetics , DNA, Mitochondrial , Mitochondrial Diseases/genetics , Muscular Dystrophies/genetics , Mutation , Adolescent , Adult , Atrophy , Cells, Cultured , Cerebellar Diseases/diagnostic imaging , Cerebellar Diseases/pathology , Cerebellar Diseases/physiopathology , Child , DNA Copy Number Variations , Female , Fibroblasts/metabolism , Fibroblasts/pathology , Humans , Male , Middle Aged , Mitochondrial Diseases/diagnostic imaging , Mitochondrial Diseases/pathology , Mitochondrial Diseases/physiopathology , Muscles/pathology , Muscular Dystrophies/diagnostic imaging , Muscular Dystrophies/pathology , Muscular Dystrophies/physiopathology , Phenotype , Young Adult
2.
Clin Genet ; 93(2): 301-309, 2018 02.
Article in English | MEDLINE | ID: mdl-28708278

ABSTRACT

The inherited peripheral neuropathies (IPNs) are characterized by marked clinical and genetic heterogeneity and include relatively frequent presentations such as Charcot-Marie-Tooth disease and hereditary motor neuropathy, as well as more rare conditions where peripheral neuropathy is associated with additional features. There are over 250 genes known to cause IPN-related disorders but it is estimated that in approximately 50% of affected individuals a molecular diagnosis is not achieved. In this study, we examine the diagnostic utility of whole-exome sequencing (WES) in a cohort of 50 families with 1 or more affected individuals with a molecularly undiagnosed IPN with or without additional features. Pathogenic or likely pathogenic variants in genes known to cause IPN were identified in 24% (12/50) of the families. A further 22% (11/50) of families carried sequence variants in IPN genes in which the significance remains unclear. An additional 12% (6/50) of families had variants in novel IPN candidate genes, 3 of which have been published thus far as novel discoveries (KIF1A, TBCK, and MCM3AP). This study highlights the use of WES in the molecular diagnostic approach of highly heterogeneous disorders, such as IPNs, places it in context of other published neuropathy cohorts, while further highlighting associated benefits for discovery.


Subject(s)
Charcot-Marie-Tooth Disease/genetics , Exome Sequencing , High-Throughput Nucleotide Sequencing , Peripheral Nervous System Diseases/genetics , Acetyltransferases/genetics , Charcot-Marie-Tooth Disease/diagnosis , Charcot-Marie-Tooth Disease/pathology , Exome/genetics , Female , Humans , Intracellular Signaling Peptides and Proteins/genetics , Kinesins/genetics , Male , Mutation , Peripheral Nervous System Diseases/diagnosis , Peripheral Nervous System Diseases/pathology , Protein Serine-Threonine Kinases/genetics
3.
Clin Genet ; 92(3): 281-289, 2017 Sep.
Article in English | MEDLINE | ID: mdl-28170084

ABSTRACT

BACKGROUND: Recent clinical whole exome sequencing (WES) cohorts have identified unanticipated multiple genetic diagnoses in single patients. However, the frequency of multiple genetic diagnoses in families is largely unknown. AIMS: We set out to identify the rate of multiple genetic diagnoses in probands and their families referred for analysis in two national research programs in Canada. MATERIALS & METHODS: We retrospectively analyzed WES results for 802 undiagnosed probands referred over the past 5 years in either the FORGE or Care4Rare Canada WES initiatives. RESULTS: Of the 802 probands, 226 (28.2%) were diagnosed based on mutations in known disease genes. Eight (3.5%) had two or more genetic diagnoses explaining their clinical phenotype, a rate in keeping with the large published studies (average 4.3%; 1.4 - 7.2%). Seven of the 8 probands had family members with one or more of the molecularly diagnosed diseases. Consanguinity and multisystem disease appeared to increase the likelihood of multiple genetic diagnoses in a family. CONCLUSION: Our findings highlight the importance of comprehensive clinical phenotyping of family members to ultimately provide accurate genetic counseling.


Subject(s)
Exome Sequencing , Family , Genetic Association Studies , Genetic Diseases, Inborn/diagnosis , Genetic Diseases, Inborn/genetics , Genetic Predisposition to Disease , Canada/epidemiology , Child, Preschool , Consanguinity , Female , Genetic Diseases, Inborn/epidemiology , Genetic Testing , Genotype , Humans , Male , Mutation , Pedigree , Phenotype , Retrospective Studies , Siblings , Exome Sequencing/methods
4.
Clin Genet ; 91(1): 92-99, 2017 01.
Article in English | MEDLINE | ID: mdl-27102954

ABSTRACT

THOC6 is a part of the THO complex, which is involved in coordinating mRNA processing with export. The THO complex interacts with additional components to form the larger TREX complex (transcription export complex). Previously, a homozygous missense mutation in THOC6 in the Hutterite population was reported in association with syndromic intellectual disability. Using exome sequencing, we identified three unrelated patients with bi-allelic mutations in THOC6 associated with intellectual disability and additional clinical features. Two of the patients were compound heterozygous for a stop and a missense mutation, and the third was homozygous for a missense mutation; the missense mutations were predicted to be pathogenic by in silico analysis and modeling. Clinical features of the three newly identified patients and those previously reported are reviewed; intellectual disability is moderate to severe, and malformations are variable including renal and heart defects, cleft palate, microcephaly, and corpus callosum dysgenesis. Facial features are variable and include tall forehead, short upslanting palpebral fissures +/- deep set eyes, and a long nose with overhanging columella. These subtle facial features render the diagnosis difficult to make in isolation with certainty. Our results expand the mutational and clinical spectrum of this rare disease, confirm that THOC6 is an intellectual disability causing gene, while providing insight into the importance of the THO complex in neurodevelopment.


Subject(s)
Genetic Predisposition to Disease/genetics , Intellectual Disability/genetics , Mutation, Missense , RNA-Binding Proteins/genetics , Adolescent , Child , Exome/genetics , Female , Genes, Recessive , Genotype , Humans , Intellectual Disability/pathology , Male , Models, Molecular , Phenotype , Protein Domains , RNA-Binding Proteins/chemistry , Sequence Analysis, DNA/methods , Severity of Illness Index , Syndrome
5.
Cell Death Differ ; 23(12): 1973-1984, 2016 12.
Article in English | MEDLINE | ID: mdl-27447114

ABSTRACT

Chromosomal abnormalities are implicated in a substantial number of human developmental syndromes, but for many such disorders little is known about the causative genes. The recently described 1q41q42 microdeletion syndrome is characterized by characteristic dysmorphic features, intellectual disability and brain morphological abnormalities, but the precise genetic basis for these abnormalities remains unknown. Here, our detailed analysis of the genetic abnormalities of 1q41q42 microdeletion cases identified TP53BP2, which encodes apoptosis-stimulating protein of p53 2 (ASPP2), as a candidate gene for brain abnormalities. Consistent with this, Trp53bp2-deficient mice show dilation of lateral ventricles resembling the phenotype of 1q41q42 microdeletion patients. Trp53bp2 deficiency causes 100% neonatal lethality in the C57BL/6 background associated with a high incidence of neural tube defects and a range of developmental abnormalities such as congenital heart defects, coloboma, microphthalmia, urogenital and craniofacial abnormalities. Interestingly, abnormalities show a high degree of overlap with 1q41q42 microdeletion-associated abnormalities. These findings identify TP53BP2 as a strong candidate causative gene for central nervous system (CNS) defects in 1q41q42 microdeletion syndrome, and open new avenues for investigation of the mechanisms underlying CNS abnormalities.


Subject(s)
Apoptosis Regulatory Proteins/deficiency , Chromosome Deletion , Tumor Suppressor Proteins/deficiency , Animals , Apoptosis Regulatory Proteins/metabolism , Brain/abnormalities , Brain/pathology , Embryo, Mammalian/abnormalities , Embryo, Mammalian/pathology , Female , Gene Deletion , Heart Ventricles/abnormalities , Heart Ventricles/pathology , Magnetic Resonance Imaging , Mice, Inbred BALB C , Mice, Inbred C57BL , Neural Tube Defects/pathology , Phenotype , Syndrome , Tumor Suppressor Proteins/metabolism
6.
Clin Genet ; 89(3): 275-84, 2016 Mar.
Article in English | MEDLINE | ID: mdl-26283276

ABSTRACT

An accurate diagnosis is an integral component of patient care for children with rare genetic disease. Recent advances in sequencing, in particular whole-exome sequencing (WES), are identifying the genetic basis of disease for 25-40% of patients. The diagnostic rate is probably influenced by when in the diagnostic process WES is used. The Finding Of Rare Disease GEnes (FORGE) Canada project was a nation-wide effort to identify mutations for childhood-onset disorders using WES. Most children enrolled in the FORGE project were toward the end of the diagnostic odyssey. The two primary outcomes of FORGE were novel gene discovery and the identification of mutations in genes known to cause disease. In the latter instance, WES identified mutations in known disease genes for 105 of 362 families studied (29%), thereby informing the impact of WES in the setting of the diagnostic odyssey. Our analysis of this dataset showed that these known disease genes were not identified prior to WES enrollment for two key reasons: genetic heterogeneity associated with a clinical diagnosis and atypical presentation of known, clinically recognized diseases. What is becoming increasingly clear is that WES will be paradigm altering for patients and families with rare genetic diseases.


Subject(s)
Exome , Genes , Genetic Diseases, Inborn/diagnosis , Mutation , Sequence Analysis, DNA , Canada , Child , Genetic Diseases, Inborn/genetics , High-Throughput Nucleotide Sequencing , Humans
7.
Clin Genet ; 89(4): 501-506, 2016 Apr.
Article in English | MEDLINE | ID: mdl-26497935

ABSTRACT

SHORT syndrome has historically been defined by its acronym: short stature (S), hyperextensibility of joints and/or inguinal hernia (H), ocular depression (O), Rieger abnormality (R) and teething delay (T). More recently several research groups have identified PIK3R1 mutations as responsible for SHORT syndrome. Knowledge of the molecular etiology of SHORT syndrome has permitted a reassessment of the clinical phenotype. The detailed phenotypes of 32 individuals with SHORT syndrome and PIK3R1 mutation, including eight newly ascertained individuals, were studied to fully define the syndrome and the indications for PIK3R1 testing. The major features described in the SHORT acronym were not universally seen and only half (52%) had four or more of the classic features. The commonly observed clinical features of SHORT syndrome seen in the cohort included intrauterine growth restriction (IUGR) <10th percentile, postnatal growth restriction, lipoatrophy and the characteristic facial gestalt. Anterior chamber defects and insulin resistance or diabetes were also observed but were not as prevalent. The less specific, or minor features of SHORT syndrome include teething delay, thin wrinkled skin, speech delay, sensorineural deafness, hyperextensibility of joints and inguinal hernia. Given the high risk of diabetes mellitus, regular monitoring of glucose metabolism is warranted. An echocardiogram, ophthalmological and hearing assessments are also recommended.

8.
Clin Genet ; 88(1): 34-40, 2015 Jul.
Article in English | MEDLINE | ID: mdl-25046240

ABSTRACT

Whole-exome sequencing (WES) has transformed our ability to detect mutations causing rare diseases. FORGE (Finding Of Rare disease GEnes) and Care4Rare Canada are nation-wide projects focused on identifying disease genes using WES and translating this technology to patient care. Rare forms of epilepsy are well-suited for WES and we retrospectively selected FORGE and Care4Rare families with clinical descriptions that included childhood-onset epilepsy or seizures not part of a recognizable syndrome or an early-onset encephalopathy where standard-of-care investigations were unrevealing. Nine families met these criteria and a diagnosis was made in seven, and potentially eight, of the families. In the eight families we identified mutations in genes associated with known neurological and epilepsy disorders: ASAH1, FOLR1, GRIN2A (two families), SCN8A, SYNGAP1 and SYNJ1. A novel and rare mutation was identified in KCNQ2 and was likely responsible for the benign seizures segregating in the family though additional evidence would be required to be definitive. In retrospect, the clinical presentation of four of the patients was considered atypical, thereby broadening the phenotypic spectrum of these conditions. Given the extensive clinical and genetic heterogeneity associated with epilepsy, our findings suggest that WES may be considered when a specific gene is not immediately suspected as causal.


Subject(s)
Epilepsy/genetics , Genetic Predisposition to Disease , Mutation , Adolescent , Adult , Brain Diseases/genetics , Child , Child, Preschool , DNA Mutational Analysis , Exome , Female , Humans , Infant , Infant, Newborn , Male , Pedigree , Phenotype , Retrospective Studies
9.
Eur J Med Genet ; 57(9): 524-6, 2014 Sep.
Article in English | MEDLINE | ID: mdl-24980513

ABSTRACT

We present an individual with a generalized and infantile onset lipodystrophy who later developed hypertriglyceridemia, pancreatitis, refractory diabetes, irregular menses and renal failure. She showed the hallmark features of a congenital, generalized lipodystrophy (CGL). Sequencing PPARG identified two pathogenic mutations; c.413_416delAATG; p.Glu138ValfsX168 and c.490C>T; p.R164W. The phenotype and presence of two mutations suggests that biallelic mutations at PPARG cause a CGL similar to that observed with biallelic AGPAT2 or BSCL2 mutations.


Subject(s)
Alleles , Lipodystrophy, Congenital Generalized/diagnosis , Lipodystrophy, Congenital Generalized/genetics , Mutation , PPAR gamma/genetics , Adult , Female , Humans , Models, Molecular , PPAR gamma/chemistry , Phenotype , Protein Conformation , Protein Interaction Domains and Motifs , Sequence Analysis, DNA
10.
Mol Syndromol ; 2(3-5): 202-212, 2012 Apr.
Article in English | MEDLINE | ID: mdl-22670141

ABSTRACT

Kleefstra syndrome is characterized by the core phenotype of developmental delay/intellectual disability, (childhood) hypotonia and distinct facial features. The syndrome can be either caused by a microdeletion in chromosomal region 9q34.3 or by a mutation in the euchromatin histone methyltransferase 1 (EHMT1) gene. Since the early 1990s, 85 patients have been described, of which the majority had a 9q34.3 microdeletion (>85%). So far, no clear genotype-phenotype correlation could be observed by studying the clinical and molecular features of both 9q34.3 microdeletion patients and patients with an intragenic EHMT1 mutation. Thus, to further expand the genotypic and phenotypic knowledge about the syndrome, we here report 29 newly diagnosed patients, including 16 patients with a 9q34.3 microdeletion and 13 patients with an EHMT1 mutation, and review previous literature. The present findings are comparable to previous reports. In addition to our former findings and recommendations, we suggest cardiac screening during follow-up, because of the possible occurrence of cardiac arrhythmias. In addition, clinicians and caretakers should be aware of the regressive behavioral phenotype that might develop at adolescent/adult age and seems to have no clear neurological substrate, but is rather a so far unexplained neuropsychiatric feature.

12.
Clin Genet ; 78(5): 424-31, 2010 Nov.
Article in English | MEDLINE | ID: mdl-20618352

ABSTRACT

Bardet-Biedl syndrome (BBS) is a multisystem genetically heterogeneous disorder, the clinical features of which are largely the consequence of ciliary dysfunction. BBS is typically inherited in an autosomal recessive fashion, and mutations in at least 14 genes have been identified. Here, we report the identification of a founder mutation in the BBS2 gene as the cause for the increased incidence of this developmental disorder in the Hutterite population. To ascertain the Hutterite BBS locus, we performed a genome-wide single nucleotide polymorphism (SNP) analysis on a single patient and his three unaffected siblings from a Hutterite family. The analysis identified two large SNP blocks that were homozygous in the patient but not in his unaffected siblings, one of these regions contained the BBS2 gene. Sequence analysis and subsequent RNA studies identified and confirmed a novel splice site mutation, c.472-2A>G, in BBS2. This mutation was also found in homozygous form in three subsequently studied Hutterite BBS patients from two different leuts, confirming that this is a founder mutation in the Hutterite population. Further studies are required to determine the frequency of this mutation and its role, if any, in the expression of other ciliopathies in this population.


Subject(s)
Bardet-Biedl Syndrome/genetics , Ethnicity/genetics , Founder Effect , Adolescent , Adult , Child , Child, Preschool , DNA Mutational Analysis , Genome-Wide Association Study , Humans , Infant , Infant, Newborn , Male , Polymorphism, Single Nucleotide , RNA Splice Sites/genetics , White People/genetics
13.
Neuropediatrics ; 38(2): 64-70, 2007 Apr.
Article in English | MEDLINE | ID: mdl-17712733

ABSTRACT

We present four children, three of them boys, affected with an identical clinical pattern consisting of early-onset ataxia, delayed dentition, hypomyelination and cerebellar atrophy. Dental radiographs showed variable absence of succedaneous teeth. Proton MR spectroscopy in one child showed elevated white matter myo-inositol. As the clinical and radiological picture in these patients is identical to that of four cases described earlier, we suggest that this disorder with ataxia, delayed dentition and hypomyelination (ADDH) represents a new entity. With the characteristic tooth abnormalities it should be straightforward to identify new patients in order to facilitate the search for the underlying genetic defect.


Subject(s)
Ataxia/complications , Brain Diseases/complications , Brain Diseases/diagnosis , Myelin Sheath/physiology , Tooth Abnormalities/complications , Adolescent , Child , Child, Preschool , Female , Humans , Male
15.
Am J Med Genet A ; 120A(3): 423-8, 2003 Jul 30.
Article in English | MEDLINE | ID: mdl-12838567

ABSTRACT

The purpose of the study was to delineate the anomalies and the natural life history of persons with the Bowen-Conradi syndrome [Bowen and Conradi 1976: Birth Defects: Orig Artic Ser XII(6):101-108]. We ascertained 39 cases and personally examined almost all. For those who were not seen, their clinical record were scrutinized. Pedigree analysis of all 39 was done and kinship coefficients computed. The birth prevalence was estimated to be 1/355 live births.


Subject(s)
Craniofacial Abnormalities/physiopathology , Fetal Growth Retardation/physiopathology , Psychomotor Disorders/physiopathology , Craniofacial Abnormalities/genetics , Female , Fetal Growth Retardation/genetics , Humans , Karyotyping , Male , Pedigree , Psychomotor Disorders/genetics
16.
Clin Genet ; 61(4): 263-7, 2002 Apr.
Article in English | MEDLINE | ID: mdl-12030890

ABSTRACT

This brief account of Woody Guthrie is instructive to clinical geneticists. It tells the story of one famous man's understanding of, and struggle with, Huntington's disease. The philatelic illustration depicts Woody Guthrie playing his guitar in the years before advancement of the disease.


Subject(s)
Famous Persons , Huntington Disease/history , Music/history , Philately , History, 20th Century , Humans , Huntington Disease/diagnosis , Male , United States
18.
J Neurosurg ; 95(3): 513-7, 2001 Sep.
Article in English | MEDLINE | ID: mdl-11565877

ABSTRACT

The authors report the case of a 45-year-old woman with medically intractable trigeminal neuralgia (TN) in whom a good clinical response to partial sectioning of the trigeminal nerve was attained. No evidence of vascular compression was found intraoperatively. Several other members of her family, involving three generations, also suffered from TN. The treatment of all affected patients is discussed in the context of a literature review in which the controversies surrounding the origins of the disease and treatment options for patients with the familial variant of TN are addressed.


Subject(s)
Trigeminal Neuralgia/genetics , Craniotomy , Electrocoagulation , Female , Humans , Magnetic Resonance Imaging , Middle Aged , Pedigree , Rhizotomy , Trigeminal Nerve/pathology , Trigeminal Nerve/surgery , Trigeminal Neuralgia/surgery
19.
Am J Med Genet ; 102(1): 44-7, 2001 Jul 22.
Article in English | MEDLINE | ID: mdl-11471171

ABSTRACT

CODAS syndrome (MIM# 600373) is a rare multiple congenital anomalies syndrome. The disorder is highly distinctive with characteristic features consisting of developmental delay, cataracts, unusual enamel projections, overfolded and crumpled ears, epiphyseal dysplasia, and dysmorphic features (grooved nose, ptosis). To date, there have been two affected female children reported. The first was a Canadian girl of Mennonite descent, reported by our group, and the second was a girl from Brazil. The etiology and pattern of inheritance of CODAS is unknown. Herein we report a third affected child, a Canadian male infant of Mennonite ancestry. The child, now two years old, exhibits ptosis, cataracts, overfolded ears, grooved nasal tip, dental projections, developmental delay, and characteristic skeletal anomalies. The findings are characteristic for CODAS syndrome. All investigations including karyotype, metabolic screening, peroxisomal studies, and studies of cholesterol biosynthesis were normal. The underlying defect responsible for CODAS syndrome remains unknown. Many of the features suggest a possible underlying collagen gene defect. The fact that this child is the second child from the Manitoba Mennonite community, a genetic isolate, suggests the possibility of autosomal recessive inheritance. To date, there has not been a familial recurrence.


Subject(s)
Abnormalities, Multiple/pathology , Bone and Bones/abnormalities , Ear/abnormalities , Eye Abnormalities/pathology , Tooth Abnormalities/pathology , Abnormalities, Multiple/genetics , Humans , Infant , Male , Syndrome
20.
Mol Genet Metab ; 73(1): 55-63, 2001 May.
Article in English | MEDLINE | ID: mdl-11350183

ABSTRACT

We describe six patients with hepatic carnitine palmitoyl transferase (CPT1 A) deficiency who are members of a large extended Hutterite kindred living in widely scattered communities in the United States and Canadian Prairies. Two patients have significant neurological impairment due to severe recurrent hypoglycemic crises. The remaining four patients with earlier detection and treatment have near normal outcomes. The Canadian and American Hutterite families share two common ancestors who married in 1812, about 60 years before the Hutterites arrived in North America and prior to their subdivision into the three groups (Schmiedeleut, Dariusleut, and the Lehrerleut). These patients share a common haplotype on chromosome 11q13 and are all homozygous for a common CPT1 A G710E mutation, suggesting a founder effect. The clustering of such a rare disorder of fatty acid oxidation prompted us to initiate a pilot DNA-based neonatal screening program to determine the carrier frequency of this mutation in Hutterite newborns with the participation and support of the community. To date our carrier frequency is 1/16, close to the predicted frequency based on diagnosed patients and number of births. We believe our newborn screening program for CPT1 A deficiency in the Hutterite community will serve as a prototype model for delivery of targeted genetic services to other similar unique genetic isolates.


Subject(s)
Carnitine O-Palmitoyltransferase/genetics , Ethnicity/genetics , Liver/enzymology , Adolescent , Adult , Carnitine O-Palmitoyltransferase/deficiency , Child , Child, Preschool , Chromosomes, Human, Pair 11/genetics , DNA/chemistry , DNA/genetics , DNA Mutational Analysis , Family Health , Female , Founder Effect , Genetic Linkage , Haplotypes , Humans , Infant, Newborn , Infant, Newborn, Diseases/diagnosis , Infant, Newborn, Diseases/enzymology , Infant, Newborn, Diseases/genetics , Male , Manitoba , Microsatellite Repeats , Mutation , Neonatal Screening/methods , North America , Pedigree , Pilot Projects
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