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R Szargel

Publications and source records attributed to R Szargel.

At least 19 recordsLinked to original sources

Hypotrichosis with juvenile macular dystrophy is caused by a mutation in CDH3, encoding P-cadherin.

Congenital hypotrichosis associated with juvenile macular dystrophy (HJMD; MIM601553) is an autosomal recessive disorder of unknown etiology, characterized by hair loss heralding progressive macular degeneration and early blindness. We used homozygosity mapping in four consanguineous families to localize the gene defective in HJMD to 16q22.1. This region contains CDH3, encoding P-cadherin, which is expressed in the retinal pigment epithelium and hair follicles. Mutation analysis shows in all families a common homozygous deletion in exon 8 of CDH3. These results establish the molecular etiology of HJMD and implicate for the first time a cadherin molecule in the pathogenesis of a human hair and retinal disorder.

Adolescent↗

The deoxyguanosine kinase gene is mutated in individuals with depleted hepatocerebral mitochondrial DNA.

Mitochondrial DNA (mtDNA)-depletion syndromes (MDS; OMIM 251880) are phenotypically heterogeneous, autosomal-recessive disorders characterized by tissue-specific reduction in mtDNA copy number. Affected individuals with the hepatocerebral form of MDS have early progressive liver failure and neurological abnormalities, hypoglycemia and increased lactate in body fluids. Affected tissues show both decreased activity of the mtDNA-encoded respiratory chain complexes (I, III, IV, V) and mtDNA depletion. We used homozygosity mapping in three kindreds of Druze origin to map the gene causing hepatocerebral MDS to a region of 6.1 cM on chromosome 2p13, between markers D2S291 and D2S2116. This interval encompasses the gene (DGUOK) encoding the mitochondrial deoxyguanosine kinase (dGK). We identified a single-nucleotide deletion (204delA) within the coding region of DGUOK that segregates with the disease in the three kindreds studied. Western-blot analysis did not detect dGK protein in the liver of affected individuals. The main supply of deoxyribonucleotides (dNTPs) for mtDNA synthesis comes from the salvage pathway initiated by dGK and thymidine kinase-2 (TK2). The association of mtDNA depletion with mutated DGUOK suggests that the salvage-pathway enzymes are involved in the maintenance of balanced mitochondrial dNTP pools.

Base Sequence↗

The spectrum of mutations, including four novel ones, in the thiamine-responsive megaloblastic anemia gene SLC19A2 of eight families.

Thiamine responsive megaloblastic anemia (TRMA) is an autosomal recessive disorder with a triad of symptoms: megaloblastic anemia, deafness, and non-type 1 diabetes mellitus. Occasionally, cardiac abnormalities and abnormalities of the optic nerve and retina occur as well. Patients with TRMA often respond to treatment with pharmacological doses of thiamine. Recently, mutations were found in patients with TRMA in a thiamine transporter gene (SLC19A2). We here describe the mutations found in eight additional families. We found four novel mutations and three that were previously described. Of the novel ones, one is a nonsense mutation in exon 1 (E65X), two are missense mutations in exon 2 (S142F, D93H), and another is a mutation in the splicing donor site at the 5' end of intron 4 (C1223+1G>A). We also summarize the state of knowledge on all mutations found to date in TRMA patients. SLC19A2 is the first thiamine transporter gene to be described in humans. Reviewing the location and effect of the disease causing mutations can shed light on the way the protein functions and suggest ways to continue its investigation.

Alleles↗

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Journal Article↗

Androgenetic alopecia in heterozygous carriers of a mutation in the human hairless gene.

BACKGROUND: Androgenetic alopecia is considered to be genetically determined. Recently, a rare autosomal recessive form of hereditary alopecia, termed atrichia with papular lesions (APL), was found to result from mutations in the human hairless gene. OBJECTIVE: Our aim was to assess the pattern of androgenetic alopecia in heterozygous carriers of a deleterious mutation in the human hairless gene. METHODS: Healthy male second-degree relatives (n = 31) of patients affected with APL and belonging to a large consanguineous kindred were interviewed and given a Hamilton score of baldness. DNA was obtained from each subject and analyzed for the presence of a mutation in the human hairless gene known to affect this family. The age at onset and extent of baldness were compared in healthy homozygotes and heterozygous carriers of the mutation. RESULTS: Statistical analysis of the results revealed no differences in age at onset and extent of androgenetic alopecia between the two groups of subjects. CONCLUSION: The present study reports the first attempt to characterize the phenotype of heterozygous carriers of a mutation in the human hairless gene. It indicates that the presence of a deleterious mutation in one allele of the hairless gene does not affect the pattern of androgenetic hair loss.

Adult↗

Mutations in SLC19A2 cause thiamine-responsive megaloblastic anaemia associated with diabetes mellitus and deafness.

Thiamine-responsive megaloblastic anaemia (TRMA), also known as Rogers syndrome, is an early onset, autosomal recessive disorder defined by the occurrence of megaloblastic anaemia, diabetes mellitus and sensorineural deafness, responding in varying degrees to thiamine treatment (MIM 249270). We have previously narrowed the TRMA locus from a 16-cM to a 4-cM interval on chromosomal region 1q23.3 (refs 3,4) and this region has been further refined to a 1.4-cM interval. Previous studies have suggested that deficiency in a high-affinity thiamine transporter may cause this disorder. Here we identify the TRMA gene by positional cloning. We assembled a P1-derived artificial chromosome (PAC) contig spanning the TRMA candidate region. This clarified the order of genetic markers across the TRMA locus, provided 9 new polymorphic markers and narrowed the locus to an approximately 400-kb region. Mutations in a new gene, SLC19A2, encoding a putative transmembrane protein homologous to the reduced folate carrier proteins, were found in all affected individuals in six TRMA families, suggesting that a defective thiamine transporter protein (THTR-1) may underlie the TRMA syndrome.

Amino Acid Sequence↗

Atrichia with papular lesions resulting from a nonsense mutation within the human hairless gene.

Atrichia with papular lesions is a rare autosomal recessive form of alopecia characterized by hair loss soon after birth and the development during childhood of a diffuse papular rash. We have previously shown that this disorder results from a deleterious mutation in the human hairless gene, a gene also involved in the pathogenesis of a related but clinically distinct form of congenital alopecia, termed alopecia universalis congenita. In this report, we describe a novel nonsense mutation in exon 4 of the human hairless gene in a consanguineous kindred affected with atrichia with papular lesions. This report provides additional evidence for phenotypic heterogeneity among inherited atrichias and for an association between the papular rash of atrichia with papular lesions and nonsense mutations in the human hairless gene.

Alopecia↗

Identification of a genetic defect in the hairless gene in atrichia with papular lesions: evidence for phenotypic heterogeneity among inherited atrichias.

Recently, we showed that atrichia with papular lesions (APL), a rare inherited form of alopecia, is transmitted as an autosomal recessive trait in a large inbred kindred of Israeli-Arab origin. Furthermore, we mapped the APL locus to a 5-cM region of chromosome 8p12 in this family. The human "hairless" gene is a candidate target gene for the disease mutation because it maps to the APL locus and because it was recently found to be mutated in a related but clinically distinct form of alopecia known as "alopecia universalis" or "congenital alopecia." In the present study, the coding sequence of the hairless gene was compared by reverse transcription-PCR in fibroblast cell lines derived from an affected patient and an unrelated individual. We identified a single-base deletion (3434delC) in the hairless gene that cosegregated with the disease phenotype in the family. This deletion is predicted to cause a frameshift mutation in the highly conserved C-terminal part of the hairless protein, a region putatively involved in the transcription factor activity of the hairless gene product. The present results are indicative of phenotypic heterogeneity in inherited atrichias caused by mutations in the hairless gene, suggesting different roles for the regions mutated in APL and in other forms of congenital atrichia during hair development.

Age of Onset↗

Atrichia with papular lesions maps to 8p in the region containing the human hairless gene.

Atrichia with papular lesions (APL) (OMIM 209500) is a hereditary form of alopecia. Hair loss occurs soon after birth and is followed years later by the development of a diffuse papular eruption. Its mode of transmission is still uncertain. A related but clinically distinct form of alopecia, known as alopecia universalis (OMIM 203655), has recently been found to be associated with a mutation in the human hairless gene. The present report describes the largest consanguineous kindred of APL reported to date and provides strong evidence for autosomal recessive inheritance of this rare disorder. On the basis of a linkage analysis of this kindred using six microsatellite markers spanning the human hairless gene region, we found that the APL locus maps to chromosome region 8p12 in a 5 cM interval between marker D8S560 and marker D8S1739. A maximum lodscore of 3.7 was obtained with marker D8S1786, at a recombination fraction of 0. Our results suggest phenotypic variability at the hairless locus although they do not rule out the existence of a gene cluster associated with hair disorders in the same region.

Alopecia↗

Refined mapping of the gene for thiamine-responsive megaloblastic anemia syndrome and evidence for genetic homogeneity.

Thiamine-responsive megaloblastic anemia (TRMA, also known as Rogers syndrome, OMIM 249270) is a rare autosomal recessive disorder characterized by a triad of megaloblastic anemia, diabetes mellitus, and sensorineural deafness. Patients respond, to varying degrees, to treatment with megadoses of thiamine. We have recently shown genetic linkage of the TRMA gene to a 16-centimorgan (cM) region on 1q23.2-1q23.3 based on the analysis of four large, inbred families of Alaskan, Italian, and Israeli-Arab origin. Here we narrow the TRMA interval down to 4 cM based on genetic recombination, homozygosity mapping, and linkage disequilibrium (highest LOD score of 12.5 at D1S2799, at a recombination fraction of 0). We provide further evidence that the TRMA gene is located in this region and confirm the homogeneity of the disease. In this analysis, we genotyped seven additional families of diverse ethnic origin (Pakistani, Indian, Italian, Brazilian, and Japanese), and analyzed additional markers in two previously reported families showing evidence of linkage disequilibrium in a large area of their haplotypes. The multi-system manifestations of TRMA suggest that thiamine has a pivotal role in a multiplicity of physiological processes. Mapping the TRMA gene and understanding the molecular basis of the disease might, thus, shed light on the role of thiamine in common disorders such as deafness, anemia, and diabetes.

Anemia, Megaloblastic↗

Localization of a gene for molybdenum cofactor deficiency, on the short arm of chromosome 6, by homozygosity mapping.

Molybdenum cofactor deficiency (MoCoD) is a fatal disorder manifesting, shortly after birth, with profound neurological abnormalities, mental retardation, and severe seizures unresponsive to any therapy. The disease is a monogenic, autosomal recessive disorder, and the existence of at least two complementation groups suggests genetic heterogeneity. In humans, MoCoD leads to the combined deficient activities of sulfite oxidase, xanthine dehydrogenase, and aldehyde oxidase. By using homozygosity mapping and two consanguineous affected kindreds of Israeli-Arab origin, including five patients, we demonstrated linkage of a MoCoD gene to an 8-cM region on chromosome 6p21.3, between markers D6S1641 and D6S1672. Linkage analysis generated the highest combined LOD-score value, 3.6, at a recombination fraction of 0, with marker D6S1575. These results now can be used to perform prenatal diagnosis with microsatellite markers. They also provide the only tool for carrier detection of this fatal disorder.

Aldehyde Oxidase↗

Localization of the gene for thiamine-responsive megaloblastic anemia syndrome, on the long arm of chromosome 1, by homozygosity mapping.

Thiamine-responsive megaloblastic anemia, also known as "TRMA" or "Rogers syndrome," is an early-onset autosomal recessive disorder defined by the occurrence of megaloblastic anemia, diabetes mellitus, and sensorineural deafness, responding in varying degrees to thiamine treatment. On the basis of a linkage analysis of affected families of Alaskan and of Italian origin, we found, using homozygosity mapping, that the TRMA-syndrome gene maps to a region on chromosome 1q23.2-23.3 (maximum LOD score of 3.7 for D1S1679). By use of additional consanguineous kindreds of Israeli-Arab origin, the putative disease-gene interval also has been confirmed and narrowed, suggesting genetic homogeneity. Linkage analysis generated the highest combined LOD-score value, 8.1 at a recombination fraction of 0, with marker D1S2799. Haplotype analysis and recombination events narrowed the TRMA locus to a 16-cM region between markers D1S194 and D1S2786. Several heterozygote parents had diabetes mellitus, deafness, or megaloblastic anemia, which raised the possibility that mutations at this locus predispose carriers in general to these manifestations. Characterization of the metabolic defect of TRMA may shed light on the role of thiamine deficiency in such common diseases.

Alaska↗

Salivary flow-rate and composition in schizophrenic patients on clozapine: subjective reports and laboratory data.

The extent of hypersalivation was evaluated in a group of 25 schizophrenic patients on clozapine. A high prevalence of the complaint was detected by a questionnaire; up to 80% of the patients complained of hypersalivation at night. Salivary flow-rate and composition was examined in 17 patients who agreed to participate and in a matched group of healthy controls. No significant differences were detected in composition or flow-rates of resting and stimulated saliva. The salivary flow-rates in the schizophrenic patients on clozapine did not correlate with the subjective complaint of hypersalivation. Because the severity and prevalence of the complaint was higher at night, a possibility of an altered circadian rhythm of salivation might be suggested in these patients.

Adult↗

Whole saliva in systemic lupus erythematosus patients.

Whole saliva composition and flow rate were examined in 22 patients with systemic lupus erythematosus and compared with matched healthy controls. Significantly lowered salivary flow rate was observed in patients with systemic lupus erythematosus unrelated to the subjective complaint of xerostomia. Salivary sodium, calcium, and magnesium concentrations were significantly higher in the SLE patients with systemic lupus erythematosus, whereas potassium and total protein concentrations and amylase activity did not differ significantly from the controls. Salivary IgA and IgM levels were significantly higher in the patients than in controls. IgA, IgG, IgM, C3, C4, antinuclear antibody, and anti-DNA antibody levels were measured in serum of the patients with systemic lupus erythematosus and correlated with salivary immunoglobulins. The only significant correlation between saliva and serum was found between levels of salivary IgG and serum anti-DNA antibody. The altered salivary composition might indicate a subclinical involvement of salivary glands in the patients.

Adult↗

Salivary secretion and seasickness susceptibility.

The salivary flow rate and composition of 2 groups of 31 subjects, one group at each extreme of the seasickness susceptibility scale, were compared. No significant differences were found between the two groups in flow rates and electrolyte concentrations of whole resting and stimulated saliva. Amylase activity and rate of secretion in resting saliva were significantly higher in subjects susceptible to seasickness as compared with nonsusceptible subjects. Also, the total protein rate of secretion in resting saliva was significantly higher in the susceptible group. The present findings could be explained in terms of higher sympathetic tone in subjects susceptible to seasickness, and salivary amylase levels might be recommended as an additional parameter in the evaluation of seasickness susceptibility.

Adult↗

Composition of whole unstimulated saliva of healthy children: changes with age.

Whole unstimulated saliva was collected from 136 healthy subjects divided into 5 groups according to age: (1) 25 infants, 7-11 months old; (2) 28 toddlers, 2-3 yr old; (3) 28 children, 6-8 yr old; (4) 28 adolescents, 12-14 yr old; (5) 27 adults, 25-63 yr old. The concentrations of Na, K, total protein, IgA and amylase activity were measured. A significant ascending linear correlation with age was found for concentrations of Na, total protein, IgA and amylase activity. There were significant differences between age groups in K and IgA concentrations. Salivary amylase activity was very variable, and a significant difference was found between infants and toddlers only. Salivary composition thus changes significantly during childhood, implying a process of development and maturation of the salivary glands and indicating the need of age-matched controls for the clinical use of saliva.

Adolescent↗

Comparison of unbound and total serum theophylline concentrations with those of stimulated and unstimulated saliva in asthmatic children.

Unstimulated saliva, citric acid stimulated saliva, and serum were collected from 31 asthmatic children taking theophylline. Salivary theophylline concentrations, and total and unbound serum theophylline concentrations were measured. The correlation coefficients between both types of saliva, and total and unbound serum theophylline were all statistically significant (p less than 0.001). The highest correlation coefficients were obtained with stimulated saliva and total serum concentrations (r = 0.98), and stimulated saliva and unbound serum (r = 0.96). The coefficients when unstimulated saliva was compared to either total or unbound serum concentrations were 0.90 and 0.89, respectively. Serum binding of theophylline averaged 58.1%. Unstimulated saliva had a higher mean theophylline concentration than stimulated saliva. The results suggest that salivary monitoring using stimulated saliva may be used to predict serum concentrations with a high degree of confidence when the saliva levels are substantially lower than, higher than, or in the middle of the therapeutic range, but there is a considerable degree of uncertainty when the salivary values are near the lower or upper end of the therapeutic range.

Adolescent↗

Salivary changes associated with seasickness.

Salivary composition and flow rate were measured in 13 healthy male volunteers exposed to a real seasickness situation. The flow rates of whole unstimulated and stimulated saliva were significantly reduced at sea in about 80% of the subjects. Salivary flow rate was negatively correlated with seasickness severity. These results contrast with the classic concept of increased salivation during seasickness. At sea, the potassium concentration of both unstimulated and stimulated saliva was significantly reduced, while sodium concentration was consistently elevated. The sodium and protein concentrations were positively correlated with seasickness severity. Thus, objective measurements of salivary flow rate and composition may be recommended for evaluation of the seasickness syndrome.

Adolescent↗