Search PubMed⌕ Search

Biomedical subjects

P Aula

Publications and source records attributed to P Aula.

At least 73 records · Page 4Linked to original sources

Sialic acid storage disorders: observations on clinical and biochemical variation.

Lysosomal accumulation of free sialic acid results in two phenotypically distinct inherited metabolic disorders, Salla disease and infantile sialic acid storage disease. Clinical and biochemical findings in both diseases are reviewed. Recent studies indicate that sialic acid storage is a consequence of defective function of a lysosomal membrane transport system specific for sialic acid and some other acidic monosaccharides.

Adult↗

A new mtDNA mutation associated with Leber hereditary optic neuroretinopathy.

A single base mutation at nucleotide position 3460 (nt 3460) in the ND1 gene in human mtDNA was found to be associated with Leber hereditary optic neuroretinopathy (LHON). The G-to-A mutation converts an alanine to a threonine at the 52d codon of the gene. The mutation also abolishes an AhaII restriction site and thus can be detected easily by RFLP analysis. The mutation was found in three independent Finnish LHON families but in none of the 60 controls. None of the families with the nt 3460 mutation in ND1 had the previously reported nt 11778 mutation in the ND4 gene. The G-to-A change at nt 3460 is the second mutation so far detected in LHON.

Animals↗

Optic atrophy in Leber hereditary optic neuroretinopathy is probably determined by an X-chromosomal gene closely linked to DXS7.

Leber hereditary optic neuroretinopathy (LHON) is a maternally inherited disease, probably transmitted by mutations in mtDNA. The variation in the clinical expression of the disease among family members has remained unexplained, but pedigree data suggest an involvement of an X-chromosomal factor. We have studied genetic linkage of the liability to develop optic atrophy to 15 polymorphic markers on the X chromosome in six pedigrees with LHON. The results show evidence of linkage to the locus DXS7 on the proximal Xp. Tight linkage to the other marker loci was excluded. Multipoint linkage analysis placed the liability locus at DXS7 with a maximum lod score (Zmax) of 2.48 at a recombination fraction (theta) of .0 and with a Zmax - 1 support interval theta = .09 distal to theta = .07 proximal of DXS7. No evidence of heterogeneity was found among different types of families, with or without a known mtDNA mutation associated with LHON.

Adult↗

Linkage of aspartylglucosaminuria (AGU) to marker loci on the long arm of chromosome 4.

Aspartylglucosaminuria (AGU) is caused by deficient activity of the enzyme aspartylglucosaminidase (AGA). The structural gene for AGA has been assigned to the region 4q21-qter of chromosome 4. We have studied the map position of the AGU locus in relation to other marker loci on the long arm of chromosome 4 using linkage analyses. Restriction fragment length polymorphism alleles for the ADH2, ADH3, EGF, FG alpha and FG beta loci and blood group antigens for the MNS locus were determined in a panel of 12 Finnish AGU families. The heterozygous family members were identified by reduced activity of AGA in lymphocytes. Linkage studies were performed using both pairwise and multipoint analyses. Loose linkage of the AGU locus to the FG and MNS loci was observed (z = 1.16, z = 1.39, respectively). Multipoint analysis to the fixed map [ADH-(0.03)-EGF-(0.35)-FG-(0.11)-MNS] suggests that the location of the AGU locus is 0.05-0.30 recombination units distal to MNS (z = 3.03). The order cen-ADH-EGF-FG-MNS-AGU is 35 times more likely than the next best order cen-ADH-EGF-AGU-FG-MNS.

Alcohol Dehydrogenase↗

Analysis of mitochondrial ND4 gene DNA sequence in Finnish families with Leber hereditary optic neuroretinopathy.

A mutation in the mitochondrial DNA at nt 11,778 has recently been found in Leber hereditary optic neuroretinopathy (LHON), a maternally inherited ocular disease. The mutation is located in the ND4 gene encoding subunit 4 of the respiratory chain enzyme NADH dehydrogenase. The mutation was subsequently not found in 9 of the 20 known Finnish families with LHON, implying that there are at least two different mutations associated with the disease. Using direct sequencing of PCR-amplified mtDNA, we have now sequenced the entire ND4 region in the families without the nt 11,778 mutation to find the other mutations. No new mutations in the ND4 region were found, suggesting that the putative mtDNA mutation in these families may be in the coding regions for other subunits of NADH dehydrogenase enzyme. The sequence of ND4 gene as found to be highly homogeneous.

Animals↗

Prenatal diagnosis in Pelizaeus-Merzbacher disease using RFLP analysis.

Pelizaeus-Merzbacher disease (PMD) is a rare X-linked recessive disorder with severe psychomotor retardation and neurological symptoms due to an inborn abnormality of proteolipid protein (PLP), the major protein component of myelin. A tight linkage between the gene of PLP and PMD locus has been suggested. We have carried out a series of RFLP studies using a cDNA probe for PLP and an anonymous DNA-fragment DXYS12 in a large Finnish family with at least three affected individuals. DNA analysis on chorionic villus specimens allowed us to exclude the disease in a male fetus of a possible carrier mother and, likewise, to demonstrate carrier status in a female fetus in another at-risk pregnancy.

Adolescent↗

Isolation of a human hepatic 60 kDa aspartylglucosaminidase consisting of three non-identical polypeptides.

We have characterized the properties of human aspartylglucosaminidase (EC 3.5.1.26), the lysosomal enzyme which is deficient in the human inherited disease aspartylglucosaminuria. The purification procedure from human liver included affinity chromatography, gel filtration, strong-anion- and strong-cation-exchange h.p.l.c., chromatofocusing and reverse-phase h.p.l.c. In a denaturing SDS/polyacrylamide-gel electrophoresis, the 6600-fold purified enzyme was shown to be composed of three non-identical inactive polypeptide chains of molecular masses 24, 18 and 17 kDa. In a native polyacrylamide-gel electrophoresis, these polypeptide chains ran as one active enzyme complex. As judged from the elution position of the native enzyme in a Biogel P-100 gel filtration, the approximate molecular mass of this complex was 60 kDa. The enzyme had a pI of 5.7, a pH optimum at 6, of 0.48 mM and a specific activity of 200,000 nkat for the substrate 2-acetamido-1-beta-(L-aspartamido)-1,2-dideoxy-D-glucose. The enzyme showed a 57% loss of activity at 60 degrees C after 45 h but was practically inactive after incubation at 72 degrees C for a few minutes. The molecular structure, Km and specific activity as well as the thermostability of the enzyme described here are different from those reported previously for human aspartylglucosaminidase.

Amidohydrolases↗

First-trimester prenatal diagnosis of aspartylglucosaminuria.

Fetal aspartylglucosaminuria (AGU) was studied during the first trimester of pregnancy in six at-risk pregnancies using chorionic villus samples. The activity of aspartylglucosaminidase (AGA) was high in five cases, indicating an unaffected fetus. This was confirmed through delivery of healthy newborns with a normal pattern of urinary oligosaccharides. Low enzyme activity in an uncultured biopsy specimen and in cultured amniotic fluid cells in one case demonstrated that the fetus was affected. The pregnancy was terminated and the prenatal diagnosis was confirmed by showing reduced AGA activity in cultured fibroblasts of the fetus.

Amidohydrolases↗

Prostaglandin F2 alpha binding to bovine ocular and synthetic melanins in vitro.

The binding of 3H-prostaglandin F2 alpha to bovine iris and synthetic melanin was studied in vitro using a ligand binding assay. Prostaglandin F2 alpha was reversibly bound to both types of melanin. The binding was saturable and the Scatchard analysis revealed the existence of at least two binding sites with the corresponding K(D) values of 3.71 nM and 1.99 microM for natural and 4.99 nM and 0.19 microM for synthetic melanin, respectively. The high affinity Bmax values were 3.4 nM/g for natural and 2.5 nM/g for synthetic melanin. The dissociation of prostaglandin F2 alpha from melanin after dilution of the complex was rapid and uniform.

Animals↗

Timolol binding to bovine ocular melanin in vitro.

The binding characteristics of 3H-timolol to bovine iris melanin were determined by using a ligand binding assay. The association and dissociation kinetics were performed using 100 nM 3H-timolol and 0.5 mg/ml melanin at 37 degrees C. The effects of pH, ethanol, 2.5 microM isoxuprine and 1 microM d- and 1-propranolol on 100 nM 3H-timolol binding were also determined. In saturation experiments 3H-timolol (from 1.25 nM to 5 microM) was equilibrated with 0.5 mg/ml melanin. The binding was saturable with the binding maximum of about 1 microM timolol/g melanin. The binding of 100 nM 3H-timolol to melanin increased up to 5 hours and amounted 24% of the added radioactivity. The best fit of the association constants was obtained by using a two fit model. The association rate constants were 4.92 x 10(5) M-1 min-1 and 5.95 x 10(6) M-1 min-1. The dissociation was rapid in vitro and uniphasic with a dissociation rate constant of 5.08 x 10(-3) min-1. The pH, ethanol and both enantiomers of propranolol did not appreciably alter the timolol binding, while isoxuprine diminished it.

Animals↗

Prenatal detection of Salla disease based upon increased free sialic acid in amniocytes.

Salla disease is an autosomal recessive lysosomal storage disease relatively common in the Finnish population. The main manifestations of more than 70 patients detected to date are severe psychomotor retardation and ataxia of early onset. Intracellular free N-acetylneuraminic acid (sialic acid) is increased 10-20-fold and localized in the lysosomes. Four pregnancies at risk were monitored by quantitation of free and total sialic acid in amniocytes and supernatant amniotic fluid by high-performance liquid chromatography. In 3 children results were normal. Free sialic acid content of the amniocytes from one affected child was 2.6 nmol/mg protein, which was approximately 5 times higher than that of the 3 unaffected children (0.3 to 0.8) and 14 control samples (0.3 to 0.9). The ratio of free/total sialic acid of the amniocytes also clearly distinguished the affected pregnancy (13.8%) from the unaffected (2.3-4.8%) and control individuals (1.8-5.3%). This represents the first successful prenatal identification of a patient with Salla disease and indicates that both free sialic acid and free/total sialic acid ratio should be monitored in pregnancies at risk for the disease.

Amniocentesis↗

Screening of inherited oligosaccharidurias among mentally retarded patients in northern Finland.

Urinary oligosaccharides were screened with thin-layer chromatography among 1058 mentally retarded patients of a geographically defined area with an approximate population of 200,000. Aspartylglucosaminuria was detected in 26 cases and Salla disease in 24 cases. All patients with aspartylglucosaminuria had the correct diagnosis before the screening, whereas two new cases of Salla disease were detected. No other inherited metabolic diseases were found. The results demonstrate the accuracy of the TLC method, and indicate a high gene frequency of those two lysosomal storage diseases in the population of northern Finland.

Adolescent↗

Studies on the defect underlying the lysosomal storage of sialic acid in Salla disease. Lysosomal accumulation of sialic acid formed from N-acetyl-mannosamine or derived from low density lipoprotein in cultured mutant fibroblasts.

Salla disease is a lysosomal storage disorder characterized by mental retardation and disturbed sialic acid metabolism. To study endogenous synthesis and breakdown of sialic acid, fibroblasts were incubated for 5 d in the presence and then in the absence of N-[3H]acetylmannosamine. Labeling of free sialic acid was 5-10 times higher in mutant than in normal cells. Radioactivity decreased in 4 d by 75% in normal but only by 30% in mutant fibroblasts. The labeling pattern was not normalized upon coculture of mutant and normal cells. To study the metabolism of extracellular sialic acid, low-density lipoprotein (LDL) was labeled in the sialic acid moiety (periodate-NaB3H4) or in the protein moiety (125I). Binding, internalization, lysosomal degradation, and exit of products of protein catabolism were similar in normal and mutant fibroblasts. Upon incubation with LDL labeled in the sialic acid moiety, mutant cells accumulated 2-3 times more free sialic acid radioactivity than normal fibroblasts, mostly in the lysosomal fraction. After a 24-h chase incubation, radioactivity in free sialic acid decreased by 70-80% in normal but only by 10-30% in mutant cells. In mutant fibroblasts, 40% of the radioactivity remained in lysosomes, whereas no labeled free sialic acid was detected in lysosomes from normal fibroblasts. We conclude that in Salla disease, fibroblast endogenous synthesis of sialic acid and lysosomal cleavage of exogenous glycoconjugates is normal, but free sialic acid cannot leave the lysosome. These findings suggest that the basic defect in Salla disease is deficient transport of free sialic acid through the lysosomal membrane.

Cells, Cultured↗