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Biomedical subjects

B Dallapiccola

Publications and source records attributed to B Dallapiccola.

At least 127 records · Page 7Linked to original sources

A novel frameshift mutation 840delA and a novel polymorphism D203A in the steroidogenic acute regulatory protein gene in a Japanese patient with congenital lipoid adrenal hyperplasia. Mutations in brief no. 117. Online.

Congenital lipoid adrenal hyperplasia (CLAH) is an autosomalrecessive disorder characterized by impaired production of all steroids including glucocorticoids, mineralocorticoids and sexsteriods. It has recently been reported that mutations in the steriodogenic acute regulatory protein (StAR) gene cause CLAH. We analyzed the StAR gene in a Japanese patient with CLAH. The patient was revealed to be a compound heterozygote bearing a nonsense mutation Q258X, changing codon 258 (CAG) encoding Gln to the stop codon TAG, and a novel framshift mutation 840delA resulting from deletion of one of the three adenosines normally present in codon 238 (AAA), thus leading to a frameshift after codon 237 (Thr) in the StAR gene. The patient was also revealed to be homozygous for a novel missense point mutation D203A, changing codon 203 (GAC) encoding Asp to GCC encoding Ala in the StAR gene. To elucidate the significance of the D203A mutation, we analyzed the StAR gene sequence in twenty normal subjects, and found that all of them were homozygous for the D203A mutation, indicating that the D203A mutation is an innocent polymorphism. In conclusion, we have identified a novel frameshift mutation 840delA which seems to cause 840delA and the first polymorphism D203A in the human StAR gene.

Adrenal Hyperplasia, Congenital↗

Genomic instability associated with myotonic dystrophy does not involve p53 expression and activity.

We tested the hypothesis that the instability of the trinucleotide CTG at the myotonic dystrophy (DM) locus could be an intrinsic DNA damage recognisable by the p53 cell-cycle checkpoint system. p53 mRNA and protein levels were assayed in muscle biopsies and fibroblast cell lines of DM patients and unaffected controls. No differences in mRNA and protein levels were found between patients and controls, regardless of their expansion size. However, in the cells treated with adryamicin, p53 protein levels were comparable in DM and control cells. We conclude that the CTG trinucleotide expansion within the myotonin gene does not activate the p53 surveillance system, at least in adult tissues. The escape of trinucleotide expansion from the p53-mediated DNA repair system could explain some of the biological characteristics of genome instability.

Adult↗

Human UDP-galactose 4' epimerase (GALE) gene and identification of five missense mutations in patients with epimerase-deficiency galactosemia.

The galactosemias are a series of three inborn errors of metabolism caused by deficiency of any one of the three human galactose-metabolic enzymes: galactokinase (GALK), galactose-1-phosphate uridyl transferase (GALT), and UDP-galactose 4' epimerase (GALE). We report here the characterization of the entire coding sequence of the GALE gene and screening for mutations in epimerase-deficient individuals. The human GALE gene is about 4 kb in size and is divided into 11 exons on chromosome band 1p36. We have identified five mutations in the GALE gene of epimerase-deficient galactosemia patients. The patients were either homozygotes or compound heterozygotes for mutations. These results confirm that epimerase-deficiency galactosemia is the result of missense mutations in the GALE gene and indicate that the disease is characterized by extensive allelic heterogeneity.

Base Sequence↗

A single polymerase chain reaction-based protocol for detecting normal and expanded alleles in myotonic dystrophy.

The myotonic dystrophy (DM) expansion varies from 50 to 4000 CTG repeats in the 3' untranslated region of the DMPK gene. Direct analysis by Southern blot, after restriction enzyme digestion of genomic DNA, is the method of choice for studying the DM mutation. A long polymerase chain reaction (PCR)-formatted protocol, which involved a single genomic in vitro amplification followed by high concentration agarose gel electrophoresis and oligo-specific hybridization, was used to amplify normal alleles and DM alleles in all examined ranges of expansion (up to 3,700 CTGs) starting from a small amount of genomic DNA (> or = 15 pg). This method is quick, sensitive, and reproducible and reduces the cost of diagnostic laboratory processing.

Alleles↗

Intrafamilial variability of Pfeiffer-type cardiocranial syndrome.

We report on the occurrence of Pfeiffer-type cardiocranial syndrome in a brother and sister born to unaffected parents. The cardinal manifestations of the syndrome are congenital heart defect, sagittal craniosynostosis, genital anomalies, and mental and growth retardation. The craniosynostosis was present in only one of the sibs, suggesting intrafamilial variability of the syndrome. The clinical spectrum of cardiocranial syndrome is further expanded by the inclusion of renal, joint, and palpebral abnormalities detected in our patients. The occurrence of the syndrome in a brother-sister sib pair supports the hypothesis of an autosomal-recessive inheritance.

Adult↗

Progeroid syndrome with characteristic facial appearance and hand anomalies in father and son.

We report on the father-to-son transmission of a progeroid syndrome characterized by facial anomalies, sparse subcutaneous fat, and hand anomalies including syndactyly, camptodactyly, and finger deviation. Mild mental retardation, microcephaly, and congenital heart defect were found only in the son. To our knowledge, this syndrome has not been described previously.

Abnormalities, Multiple↗

Tricuspid atresia and 22q11 deletion.

Tricuspid atresia has not been reported in 22q11 microdeletions causing DiGeorge and velo-cardio-facial syndromes. We investigated the prevalence of 22q11 hemizygosity in 26 children with tricuspid atresia. Fluorescent hybridization with the Sc11.1 probe demonstrated a 22q11 microdeletion in 2 patients, one with and another without transposition of the great arteries. Both deletion patients had minor facial anomalies characteristic of DiGeorge syndrome. The present observations suggest that tricuspid atresia should be included in the list of cardiac malformations seen in del22q11 syndromes.

Adult↗

Expression of receptors for native and chemically modified low-density lipoproteins in brain microvessels.

Despite the importance of cholesterol metabolism in the central nervous system, only relatively few studies have dealt with the cerebral uptake and transport of lipids into the brain compartment. These functions are mediated by the endothelium of brain microvessels, which forms the anatomical basis of the blood-brain barrier. By a reverse transcriptase PCR study of messenger RNA expression we could show, in bovine brain microvessels, the presence of transcripts of native low-density lipoprotein receptor and of both type I and II scavenger receptors. Brain microvessels therefore appear to play an active role in the uptake of native and modified low-density lipoproteins.

Animals↗

Expression study of survival motor neuron gene in human fetal tissues.

In order to investigate the spinal muscular atrophy (SMA) disease processes, the expression of the survival motor neuron gene (SMN) has been analyzed in human fetal tissues using RT-PCR and in situ hybridization. These studies allowed the detection of SMN RNA in all the examined tissues, with no significant variation between different developmental stages. In particular, SMN mRNA was detected in spinal cord (dorsal and ventral portions), skeletal muscle, lung, heart, kidney, liver, and spleen. Moreover, RT-PCR studies demonstrated that the expression pattern of SMN isoforms was similar to that observed in adult tissues. The present data confirm a housekeeping role for the SMN protein and may have implications on the search for early therapeutic strategies.

Cyclic AMP Response Element-Binding Protein↗

Linkage analysis of Fanconi anaemia in Italy and mapping of the complementation group A gene.

Fanconi anaemia (FA) is an autosomal recessive disease characterised by genetic heterogeneity, with at least five complementation groups (FA-A to FA-E). The FAC gene has been cloned and localised to 9q22.3. The most frequent defective gene, FAA, was recently mapped to chromosome 16q24.3, in a region of 10 cM between D16S498 and the telomere. Eleven FA-A and 16 unclassified Italian families were analysed by microsatellite markers. To define the localisation of the FAA locus further, microsatellites were analysed at 16q24. All the families were consistent with linkage, the highest lod score being observed with D16S1320. Evidence for common haplotypes was obtained in two genetic isolates from the Brenta basin and the Naples region. Autozygosity mapping and haplotype analysis suggest that the FAA locus is distal to D16S305.

Cell Cycle Proteins↗