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Biomedical subjects

H Galjaard

Publications and source records attributed to H Galjaard.

At least 19 recordsLinked to original sources

Functional reconstitution of the lysosomal sialic acid carrier into proteoliposomes.

The lysosomal carrier for the acidic monosaccharides sialic acid and glucuronic acid was solubilized from rat liver lysosomal membranes and reconstituted into phospholipid vesicles. Membrane proteins were extracted from lysosomal membranes with Triton X-100. Upon removal of the detergent by absorption on Amberlite XAD-2 beads, the solubilized proteins were incorporated in egg yolk phospholipids. The reconstituted proteoliposomes show proton-driven carrier-mediated uptake of acidic monosaccharides. The reconstituted carrier was compared in several characteristics with the transporter as present in the native lysosomal membrane. Transporter substrate affinity (Kt for glucuronic acid = 0.4 mM) and specificity for acidic monosaccharides are completely retained. The proteoliposomes also demonstrate trans-stimulation properties with both substrates sialic acid and glucuronic acid. The transporter is inhibited, both in its native and in the reconstituted state, by the sulfhydryl-modifying agents p-chloromercuribenzoic acid, N-ethylmaleimide, and phenyl isothiocyanate. In native membrane vesicles, arginine and histidine modifiers phenylglyoxal and diethyl pyrocarbonate inactivated transport in a substrate-protectable manner. In reconstituted proteoliposomes, similar inhibition was observed. However, protection by substrates was achieved only after treatment with phenylglyoxal. These data suggest that arginine or histidine residues or both are present at or near the substrate binding site of the carrier. Possibly, other essential histidines become exposed in the reconstituted state. The successful functional reconstitution of the lysosomal sialic acid carrier represents an important step towards its purification and its detailed molecular characterization.

Animals

Cultured epithelial cells from patients with cystic fibrosis have an increased expression of the 14 kDa Ca2(+)-binding protein CFA.

The Cystic Fibrosis antigen (CFA) is a 14 kDa. Ca2(+)-binding protein known to be expressed in cells of myeloid origin during normal cell differentiation. CFA serum levels are elevated in Cystic Fibrosis (CF) patients and heterozygotes. We examined the expression of CFA in different cultured epithelial cells from controls and patients with CF. The steady state level of CFA was in general higher in epithelial cells from CF patients compared to control cells and was found to increase during cell aging. The latter difference could be attributed to an increased rate of CFA synthesis rather than to an impairment of CFA degradation or secretion, as shown by pulse chase experiments.

Blood Proteins

G-proteins mediate intestinal chloride channel activation.

The localization of several GTP-binding regulatory proteins in teh apical membrane of intestinal epithelial cells has prompted us to investigate a possible role for G-proteins as modulators of apical Cl- channels. In membrane vesicles isolated from rat small intestine or human HT29-cl.19A colon carcinoma cells, the entrapment of guanosine 5'-O-(3-thiophosphate (GTP gamma S) led to a large increase in Cl- conductance, as evidenced by an increased 125I- uptake and faster SPQ quenching. The enhancement was observed in the presence, but not in the absence of the K+ ionophore valinomycin, indicating that the increased Cl- permeability is not secondary to the opening of K+ channels. The effect of GTP gamma S was counteracted by guanosine 5'-O-(2-thiophosphate (GDP beta S) and appeared to be independent of cytosolic messengers, including ATP, cAMP, and Ca2+, suggesting that protein phosphorylation and/or phospholipase C activation is not involved. Patch clamp analysis of apical membrane patches of HT29-cl.19A colonocytes revealed a GTP gamma S-activated, inwardly rectifying, anion-selective channel with a unitary conductance of 20 +/- 4 pS. No spontaneous channel openings were observed in the absence of GTP gamma S, while the open time probability (Po) increases dramatically to 0.81 +/- 0.09 upon addition with GTP gamma S. Since the electrophysiological characteristics and regulatory properties of this channel are markedly different from those of the more widely studied cAMP/protein kinase A-operated channel, we propose the existence of a separate Cl(-)-selective ion channel in the apical border of intestinal epithelial cells. Our results suggest an alternative regulatory pathway in transepithelial salt transport and a possible site for anomalous channel regulation as observed in cystic fibrosis patients.

Animals

A mutation in a mild form of galactosialidosis impairs dimerization of the protective protein and renders it unstable.

The lysosomal disorder galactosialidosis is caused by deficiency of the protective protein in the absence of which the activities of the enzymes beta-galactosidase and neuraminidase are reduced. Aside from its protective function towards the two glycosidases, this protein has cathepsin A-like activity. A point mutation in the protective protein gene, resulting in the substitution of Phe412 with Val in the gene product, was identified in two unrelated patients with the late infantile form of the disease. Expression in COS-1 cells of a protective protein cDNA with the base substitution resulted in the synthesis of a mutant protein that lacks cathepsin A-like activity. The newly made mutant precursor was shown to be partially retained in the endoplasmic reticulum. Only a fraction is transported to the lysosomes where it is degraded soon after proteolytic processing into the mature two-chain form. Since the mutant precursor, contrary to the wild type protein, does not form homodimers, the dimerization process might be a condition for the proper targeting and stable conformation of the protective protein. These results clarify the mechanism underlying the combined deficiency in these patients, and give new insight into the structure-function relationship of the wild type protein.

Base Sequence

Immunological localization of cystic fibrosis candidate gene products.

The recent identification of the cystic fibrosis (CF) gene and its putative protein product, the CF transmembrane conductance regulator (CFTR), enabled us to synthesize oligopeptides corresponding with a predicted extracellular domain (position 103-117; peptide A) and a cytoplasmic domain (position 501-515; peptide B) constituting the phenylalanine deletion (F 508) observed in the majority of CF mutations. Immunobiochemical studies with antibodies directed against these peptides revealed the presence of two CFTR candidate proteins (155 and 195 kDa) in various types of epithelial cells. Immunolocalization studies performed on slices of human duodenum showed the strongest expression in the endoplasmic reticulum (RER) of the mucus-producing Goblet cells. Labeling is also demonstrated in the RER and apical membranes of villus and crypt cells, however, to a weaker extent.

Amino Acid Sequence

A fluorimetric enzyme assay for the diagnosis of Morquio disease type A (MPS IV A).

4-Methylumbelliferyl-beta-D-galactopyranoside-6-sulphate was synthesized and used for the determination of galactose-6-sulphate sulphatase activity. Fibroblasts and leucocytes from 12 different Morquio A patients, showed 0.0-2.7% of mean normal galactose-6-sulphate sulphatase activity. Heterozygotes showed intermediate activities. The enzymatic liberation of the fluorochrome from 4-methylumbelliferyl-beta-D-galactopyranoside-6-sulphate requires the sequential action of galactose-6-sulphate sulphatase and beta-galactosidase. Normal beta-galactosidase activity caused nearly complete hydrolysis of non-fluorescing 4-methylumbelliferyl-galactoside, formed during incubation. In cell extracts with a beta-galactosidase deficiency however, a second incubation in the presence of excess beta-galactosidase is needed to avoid underestimation of galactose-6-sulphate sulphatase activity.

Chondroitinases and Chondroitin Lyases

Factors influencing the reproductive decision after genetic counseling.

Here we report a follow-up study involving interviews with 164 couples 2-3 years after genetic counseling to assess the influence of various factors on their reproductive planning. The results show that the desire to have children and the absence of personal experience with the disorder (no close relative being affected) are important single factors for the decision to opt for having children after genetic counseling. The magnitude of the genetic risk is of relative importance in reproductive planning. Seventy percent of the couples with a high genetic risk (greater than 15%) opted for having children. When the disorder was perceived as severe and the risk was interpreted as high, 72% opted for having children. The availability of prenatal diagnosis became important only in combination with a high genetic risk (greater than 15%). Forty-seven percent of the couples with a high genetic risk refrained from having children when prenatal diagnosis was not available. In the absence of prenatal diagnosis, couples who had an affected child were more cautious about trying again than those who did not--50% versus 14% decided to abstain. This study has provided some insight into the complexity of reproductive decision-making after genetic counseling. The findings may help genetic counselors and clinical geneticists understand and support counselees in their decision-making process, which is "multi-factorial."

Chromosome Aberrations

Characterization of a proton-driven carrier for sialic acid in the lysosomal membrane. Evidence for a group-specific transport system for acidic monosaccharides.

Highly purified lysosomal membrane vesicles, obtained from rat liver lysosomes, were used to study characteristics of NeuAc transport across the lysosomal membrane. Uptake of [14C]NeuAc was found to be strongly influenced by a pH gradient across the membrane. When a proton gradient (pHin greater than pHout) was generated by impermeable buffers, NeuAc uptake above equilibrium level (overshoot) was observed. The influence of membrane diffusion potentials was ruled out by experiments where K+ and valinomycin were present. The overshoot appeared to be specifically produced by protons, since gradients of other cations (Na+ and K+) did not give stimulation. Proton-driven uptake was saturable (Kt = 0.24 mM) and mediated by a single system, as shown by linearity of the Scatchard plot. Stimulation of transport was also obtained by preincubation of vesicles with MgATP and the effect was blocked by 4,4'-diisothiocyanostilbene-2,2'-disulfonic acid, but not by the protonophore carbonyl cyanide p-trifluoromethoxyphenyl hydrazone. Monocarboxylic sugars like glycuronic acids were competitive inhibitors of sialic acid transport. Transstimulation of [14C] NeuAc uptake was observed when vesicles were preloaded either with unlabeled NeuAc or with glucuronic acid. The data demonstrate that lysosomal membrane vesicles from rat liver are a suitable system for kinetic studies of solute transport events. The presence of a proton-driven carrier in the lysosomal membrane specific for sialic acid and other acidic sugars, including glucuronic acid, is shown. The possible physiological significance of these findings for the human lysosomal carrier and the patients with a sialic acid transport defect is discussed.

Amino Acids, Diamino

Identification and in vitro reconstitution of lysosomal neuraminidase from human placenta.

Lysosomal neuraminidase from human placenta has been obtained in its active form by association of an inactive neuraminidase polypeptide with beta-galactosidase and the protective protein. Using a specific antiserum, we have now identified a 66-kDa protein as the inactive neuraminidase polypeptide. It is specifically recognized on immunoblots only in its nonreduced state, and it coprecipitates with neuraminidase activity. The 66-kDa polypeptide is substantially glycosylated (38-kDa protein core with 7-14 N-linked oligosaccharide chains), a feature characteristic of lysosomal integral membrane proteins. Specific removal of the 66-kDa neuraminidase polypeptide from glycoprotein preparations prevents the generation of neuraminidase activity. Removal of beta-galactosidase or destruction of the protective protein also hinders the formation of active neuraminidase. Reconstitution of neuraminidase activity is observed after mixing glycoprotein preparations, depleted in different components of the beta-galactosidase-neuraminidase-protective protein complex, indicating that all three components of the complex are required for neuraminidase activity. Association of the neuraminidase polypeptide and the protective protein generates unstable neuraminidase activity, whereas association with beta-galactosidase is required for stability.

Chromatography, Affinity

Isolation and structural characterization of twenty-one sialyloligosaccharides from galactosialidosis urine. An intact N,N'-diacetylchitobiose unit at the reducing end of a diantennary structure.

Galactosialidosis urine was fractionated by gel-permeation chromatography on Bio-Gel P-6. The obtained sialic acid-containing carbohydrate fractions were purified by reversed-phase chromatography and separated according to charge by medium-pressure anion-exchange chromatography on Mono Q. The Mono Q fractions, being mixtures of sialyloligosaccharides differing mainly in sialic acid-linkage type (alpha 2-3/alpha 2-6), were subfractionated by high-performance liquid chromatography on Lichrosorb-NH2. The purified compounds were analysed by 500-MHz 1H-NMR spectroscopy. Twenty-one fully and partially sialylated N-acetyllactosamine-type compounds include mono-, di-, tri- and tetra-antennary structures. All structures have the sequence Man beta 1-4Glc-NAc at the reducing terminus in common, except one diantennary structure bearing an intact N,N'-diacetylchitobiose unit at the reducing end, which is a new feature in human glycoproteinosis urine.

Chromatography, Gel

Storage of sialic acid-containing carbohydrates in the placenta of a human galactosialidosis fetus. Isolation and structural characterization of 16 sialyloligosaccharides.

From the placenta of a human fetus with galactosialidosis, detected by prenatal diagnosis, sialyloligosaccharides were isolated by successively gel-permeation chromatography on Bio-Gel P-6, anion-exchange chromatography on Mono Q and high-performance liquid chromatography on Lichrosorb-NH2. 16 sialic acid-containing N-glycosidic N-acetyllactosamine type of structures were identified by sugar analysis and 500-MHz 1H-NMR spectroscopy. The fully sialylated oligosaccharides differ from each other in the type of branching (mono-, di-, tri-, tri'- and tetra-antennary) or sialic acid linkage types (alpha 2-3/alpha 2-6). The isolated carbohydrates, including six novel structures, can be presented as follows (the numerals in a column represents one compound). (formula; see text).

Carbohydrate Conformation

Expression of cDNA encoding the human "protective protein" associated with lysosomal beta-galactosidase and neuraminidase: homology to yeast proteases.

The "protective protein" is a glycoprotein that associates with lysosomal beta-galactosidase and neuraminidase and is deficient in the autosomal recessive disorder galactosialidosis. We have isolated the cDNA encoding human "protective protein". The clone recognizes a 2 kb mRNA in normal cells that is not evident in fibroblasts of an early infantile galactosialidosis patient. The cDNA directs the synthesis of a 452 amino acid precursor molecule that is processed in vivo to yield mature "protective protein," a heterodimer of 32 kd and 20 kd polypeptides held together by disulfide bridges. This mature form is also biologically functional since it restores beta-galactosidase and neuraminidase activities in galactosialidosis cells. The predicted amino acid sequence of the "protective protein" bears homology to yeast carboxypeptidase Y and the KEX1 gene product. This suggests a protease activity for the "protective protein."

Amino Acid Sequence

A comparative study of the accumulated sialic acid-containing oligosaccharides from cultured human galactosialidosis and sialidosis fibroblasts.

Sialic acid-containing storage material was isolated from cultured human galactosialidosis fibroblasts, by a combination of gel filtration and anion-exchange chromatography on Mono Q. The obtained sialyloligosaccharides were analyzed by 500-MHz 1H-NMR spectroscopy in combination with sugar analysis and analytical HPLC. The storage material consisted of a series of completely sialylated N-acetyl-lactosamine type of structures having Man beta 1-4GlcNAc at the reducing terminus in common, similar to those recently reported for human sialidosis fibroblasts. Comparison of the storage material from both sources revealed only differences in their relative amounts. In control fibroblasts these compounds could not be detected. The nature of the accumulated compounds is in accordance with the alpha-neuraminidase deficiency in both genetic diseases. The additional deficiency of beta-galactosidase in case of galactosialidosis is not reflected in the storage material.

Carbohydrate Metabolism, Inborn Errors

Isolation and structural characterization of sialic acid-containing storage material from mucolipidosis I (sialidosis) fibroblasts.

Sialic acid-containing storage material was isolated from cultured human mucolipidosis I (sialidosis) fibroblasts by gel permeation chromatography on Bio-Gel P-6 followed by medium-pressure anion-exchange chromatography on Mono Q. The structure determination of the isolated sialyloligosaccharides was carried out by 500-MHz 1H-NMR spectroscopy in conjunction with sugar analysis and analytical HPLC. The storage material showed completely sialylated mono-, di- and triantennary N-glycosidic N-acetyllactosamine oligosaccharides having the Man beta 1----4GlcNAc sequence at the reducing end in common. Heterogeneity occurred with respect to the linkages between terminal sialic acid and the penultimate galactose residues (alpha 2----3/alpha 2----6). It turned out that all the identified carbohydrate chains are consistent with the neuraminidase deficiency.

Carbohydrate Conformation

Impact of first-trimester chromosome, DNA, and metabolic studies on pregnancies at high genetic risk: experience with 1,000 cases.

We describe the results and follow-up of chorionic villus studies in 1,034 pregnancies at risk for chromosome or metabolic disorders. Direct chromosome studies were successful in 99.7% and yielded results within a few days. Fifty pregnancies at risk for an unbalanced translocation, inherited from parents with many small reciprocal translocations, were a good test for the quality of the direct method. The 101 metabolic studies involving 28 disorders were correct in 99 pregnancies in the first trimester. In two cases a correct diagnosis was obtained by the confirmatory amniocentesis. DNA studies were carried out in pregnancies of male fetuses at risk for Duchenne muscular dystrophy and a few metabolic disorders. The abortion rate after chorionic villus sampling was 5.1% but more than half of the pregnant women were greater than or equal to 36 years old and have a spontaneous abortion rate of 10% between the 10th and 14th week according to Gustavii [Lancet 1:562, 1984]. Follow-up studies confirmed results of all chromosome studies after termination when there was fetal cell growth; the outcome of 504 consecutive continuing pregnancies showed no discrepancies of the phenotype after birth. It was concluded that first-trimester chorionic villi studies gave reliable results and were increasingly preferred by the patients, while the sampling can be considered a safe procedure based on the currently available data.

Chorionic Villi