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Biomedical subjects

F A Hommes

Publications and source records attributed to F A Hommes.

At least 19 recordsLinked to original sources

Myelin turnover in hyperphenylalaninaemia. A re-evaluation with the HPH-5 mouse.

Myelin turnover has been studied in the 25-day-old HPH-5 mouse, a phenylalanine hydroxylase-deficient mouse mutant. The half-life of the fast component of myelin decreased from 15 days in control mice to 4.5 days at blood phenylalanine levels of 2.5 mmol/L. The slow component of myelin seems also to be affected by the high phenylalanine level. These observations confirm similar observations obtained with chemically induced models of hyperphenylalaninaemia and are therefore due to the hyperphenylalaninaemia per se, independently of the inhibitors of phenylalanine hydroxylase. An intermediate blood level of phenylalanine (0.7 mmol/L) likewise seems to interfere with myelin metabolism, although to a lesser degree.

Aging

High-performance liquid chromatography of urinary oligosaccharides in the diagnosis of glycoprotein degradation disorders.

Urinary oligosaccharides can be separated by high-performance anion-exchange chromatography using a Dionex CarboPac PA1 column, elution with aqueous sodium hydroxide and sodium acetate solutions and detection by pulsed amperometry. Each of the urines of patients with glycoprotein degradation disorders yielded a pattern of oligosaccharide excretion unique for that disorder, facilitating an unambiguous diagnosis. The method is sensitive (10 microliters of urine required) and fast (40 min).

Carbohydrate Metabolism, Inborn Errors

N-acetylglutamate synthetase deficiency: clinical and laboratory observations.

Two male siblings presented in the first 6 weeks of life with emesis, diarrhoea, metabolic acidosis and lethargy. A male sibling had previously died at 14 months of age from liver failure of unknown aetiology. Both of the current cases had mild hyperammonaemia with normal orotic acid, organic acid and argininosuccinic acid levels. Citrulline and arginine levels were normal or mildly decreased. One of the brothers was biopsied and had no detectable N-acetylglutamate synthetase activity and normal values for other enzymes of the urea cycle in liver. Treatment with a low-protein diet and sodium benzoate/sodium phenylacetate resulted in near normal blood ammonia levels, except during viral illness. Subsequent neurological development has been normal to mildly delayed. These patients differ from those previously described with N-acetylglutamate synthetase deficiency in that their presentation and subsequent course were relatively benign.

Acetyltransferases

The control of 5-hydroxytryptamine and dopamine synthesis in the brain: a theoretical approach.

The transport of the eight amino acids (phenylalanine, tyrosine, tryptophan, valine, leucine, isoleucine, histidine and methionine) using the large neutral amino acid transporter of the blood-brain barrier (BBB) has been calculated using published kinetic data. The fate of the amino acids has been followed from blood to interstitial space, to cell and through metabolism which included, for tyrosine and tryptophan, the hydroxylases. The system was analysed in terms of flux control coefficients. Since the summation theorem did not hold, the system clearly behaved as a non-homogeneous system. At physiological levels of these eight amino acids, the largest contribution to the control of the flux of tyrosine is given by the hydroxylase step, followed by the diffusional component of the transport across the BBB. For tryptophan it is the hydroxylase step, followed by the carrier-mediated transport across the BBB. For the other amino acids it is the metabolism, followed by the diffusional component of the BBB transport. These parameters for tyrosine and tryptophan were determined at increased levels of blood phenylalanine, tyrosine or histidine. The flux through tryptophan hydroxylase can be affected by high blood levels of tyrosine and histidine to values also observed in hyperphenylalaninaemia. Since hypertyrosinaemia (type II) and hyperhistidinaemia are not associated with mental retardation, it is concluded that interference with transport across the BBB of tyrosine and tryptophan, as well as the flux through tryptophan hydroxylase leading to the synthesis of 5-hydroxytryptamine, do not contribute to the cause of permanent brain dysfunction in hyperphenylalaninaemia. It can be calculated that addition of tyrosine to the diet to raise the blood tyrosine level in phenylketonuria patients may have a beneficial effect for the synthesis of neurotransmitters derived from tyrosine.

Amino Acids

The effect of plasma valine, isoleucine and leucine on the control of the flux through tyrosine- and tryptophan-hydroxylase in the brain.

The effect of increasing blood levels of valine, isoleucine and leucine on the fluxes through tyrosine and tryptophan hydroxylase in brain has been calculated and analysed in terms of flux control coefficients. It is concluded that any beneficial effect of increasing the concentration of these amino acids in phenylketonuria patients is not due to a decrease in brain phenylalanine or an improved neurotransmitter synthesis through tyrosine or tryptophan hydroxylase.

Blood-Brain Barrier

The role of the blood-brain barrier in the aetiology of permanent brain dysfunction in hyperphenylalaninaemia.

Calculations on the rate of entry of the neutral amino acids into the brain via the blood-brain barrier show that a considerable decrease in this rate, particularly for tryptophan and tyrosine, takes place in histidinaemia and tyrosinaemia, type II. These conditions are, however, not associated with mental retardation. It is therefore concluded that effects at the blood-brain barrier alone do not provide an adequate explanation for the aetiology of permanent brain dysfunction in hyperphenylalaninaemia.

Amino Acid Metabolism, Inborn Errors

Adult-onset chorea and dementia with propionic acidemia.

Propionic acidemia usually presents in the newborn period with severe metabolic acidosis and lethargy. A 31-year-old man with adult onset chorea and dementia had propionic acidemia due to propionyl CoA carboxylase deficiency. Metabolic investigations may prove useful in patients with movement disorder of unknown etiology.

Adult

Kearns-Sayre syndrome and complex II deficiency.

A 25-year-old woman with Kearns-Sayre syndrome (KSS) had complete external ophthalmoplegia, short stature, ataxia, cardiac conduction defects, and pigmentary retinopathy. Muscle biopsy revealed ragged-red fibers. Electron microscopy showed increased numbers of mitochondria with disordered structure and paracrystalline inclusions. Enzymatic analysis revealed a deficiency of complex II of the mitochondrial respiratory chain, and, more specifically, a deficiency of succinic dehydrogenase, although both subunits of this enzyme proved to be present by immunologic analysis. Therapy with vitamin cofactors did not result in short-term improvement. This appears to be the first report of complex II deficiency in a patient with KSS.

Adult

The development of the muscarinic acetylcholine receptor in normal and hyperphenylalaninemic rat cerebrum.

The effect of hyperphenylalaninemia on the development of the muscarinic acetylcholine receptor in rat cerebrum has been studied. Rats were subjected to the hyperphenylalaninemic regimen as of 5 days of age. A gradual and steady decrease in the number of binding sites for L-[3H]quinuclidinylbenzilate was observed, with the white matter more affected than the gray matter. A return to normal blood phenylalanine levels after the age of 21 days does not lead to an increase in this number of binding sites.

Aging

Activity of arylsulfatase A, B-glucosidase and hexosaminidases in chorionic villi at six, eight and ten weeks' gestational age.

Chorionic villus sampling is becoming an accepted method of prenatally diagnosing metabolic diseases. There are few published data on sampling at various gestational ages. Different investigators, using different methods of chorionic biopsy, perform the sampling at various gestational ages. Accurate interpretation of results is dependent on reliable normal values, which could differ on the basis of gestational age. The enzymatic activities of arylsulfatase A, B-glucosidase and hexosaminidases were compared in trophoblast from six-, eight- and ten-week gestations. No significant differences in activity levels were detected. This finding confirms the accuracy of metabolic diagnosis for these enzyme-deficiency syndromes in trophoblastic tissue at gestational ages of six to ten weeks without a requirement for gestational-age-specific normal values.

Cerebroside-Sulfatase

Purification and some properties of liver adenylylsulfate kinase.

Adenylylsulfate kinase (ATP:adenylylsulfate 3'-phosphotransferase, EC 2.7.1.25) has been purified over 1300-fold from rat liver in 10% yield. The enzyme has a molecular weight of 58,000 and is composed of four subunits of equal molecular weight. ATP is an allosteric activator of adenylylsulfate kinase, with a Hill coefficient of 2.2 and a K0.5 of 2.5 mM. Adenosine phosphosulfate is a potent inhibitor of adenylylsulfate kinase, but the adenosine phosphosulfate concentration for maximal reaction is dependent on the ATP concentration. At the physiological levels of ATP the inhibition by adenosine phosphosulfate is not likely to play a role, while the allosteric regulation of adenylylsulfate kinase by ATP may be operative.

Adenosine Phosphosulfate

Properties of the 3'-phosphoadenosine-5'-phosphosulfate (PAPS) synthesizing systems of brain and liver.

Chromatography of brain and liver 100,000 g supernatants over HPLC molecular sieve columns revealed striking differences in the molecular weight distribution of ATP-sulfurylase and APS-kinase of the two tissues, pointing to different enzymic species for both enzymes in brain and liver. This was further substantiated by kinetic characterization of the two enzymes of both tissues. APS-kinase of liver is allosterically activated by ATP, while the brain enzyme is not. ATP-sulfurylase of brain is activated at high, but still physiological concentrations of ATP. Brain ATP-sulfurylase is inhibited by phenylalanine.

Adenine Nucleotides

HPLC assay of phenylalanine and tyrosine in blood spots on filter paper.

Blood spots on filter paper are used to screen for phenylketonuria. We have developed a high pressure liquid chromatographic assay of phenylalanine and tyrosine after elution of these amino acids from filter paper. The analysis time is 20 min. The amino acids are separated using an ion-exchange resin with post-column ortho-phthalaldehyde derivatization and subsequent fluorescence detection. Other common amino acids do not interfere. The assay is linear from 20 pmol to at least 2,000 pmol with a coefficient of variation of 3%. The assay is as accurate as the determination of phenylalanine by ion-exchange ninhydrin-reactive methods currently in use, but is 100 times more sensitive. The method has the advantages of avoiding venipuncture, is cost effective, has a high sensitivity, and a rapid turnaround.

Adult

Combined xanthine and sulphite oxidase defect due to a deficiency of molybdenum cofactor.

Increased urinary excretion of xanthine, hypoxanthine, sulphite, thiosulphate and decreased serum uric acid were observed in an infant with profound failure to thrive. Other clinical findings included refractory seizures, spastic quadriplegia and profound psychomotor retardation. The patient died at 20 months of age. There were no detectable activities for xanthine oxidase and sulphite oxidase in the postmortem liver. Urothione, which is the metabolic excretory product of the molybdenum cofactor for molybdoenzymes was not present in the urine. A deficiency of the molybdenum cofactor which is common to both xanthine and sulphite oxidase is presumed to be the metabolic defect responsible for the absent activities of both enzymes.

Coenzymes

The assay of ATP-sulfurylase.

An assay method for ATP-sulfurylase is described, based on the incorporation of 35SO4(2-) into adenosine-5'-phosphosulfate (and 3-phosphoadenosine-5'-phosphosulfate) and the separation of these compounds by HPLC. Since the enzyme is easily inactivated at temperatures above 20 degrees C during the assay, the reaction time should not exceed 10 min.

Adenosine Phosphosulfate