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Characterization of alpha-L-fucosidase from two different families with fucosidosis.

1. Two different families with a different type of fucosidase deficiency are described. 2. In the first family the activity of alpha-L-fucosidase in leucocytes of two patients with fucosidosis type I was about 4 to 8% of the normal value. The activity of alpha-L-fucosidase in the leucocytes of the father and the mother are in the heterozygote range, while a sister of the propositus showed normal values. 3. The activity of alpha-L-fucosidase of the propositus from urine, serum and liver were also severely decreased. The activity of alpha-L-fucosidase in the urine of the parents and the healthy sister of thr propositus were about 5% of the mean normal value. However in the serum these values were above 50%. 4. The KM value for alpha-L-fucosidase from leucocytes of the patient was increased about 10 times and in serum this value was even higher. The KM values from the enzyme of the parents were in the normal range. 5. The abnormal enzyme from the propositus is unique in its thermal behaviour since after heating its activity increased. 6. In the second fanily the activity of alpha-L-fucosidase in the leucocytes of the patient is about 30% of the mean normal value, while the arylsulphatase A activity is also decreased (25% of the mean normal value). 7. The activity of alpha-L-fucosidase from the leucocytes of the father and the healthy brother are about 50% of the mean normal level, while the enzyme of the mother showed a normal activity. 8. The alpha-L-fucosidase activity in the urine and the liver of the propositus is also decreased. The serum enzyme activity however was in the normal range. 9. The KM value of alpha-L-fucosidase and heat stability of the enzyme of the patient were normal. In the leectrophoretic pattern of the whole family one bond was missing.

Acetylglucosaminidase↗

Human leucocyte alpha-L-fucosidase.

1. Human alpha-L-fucosidase (EC 3.2.1.51) was studied from leucocytes, urine and serum. 2. The leucocyte and urine enzymes are similar in many properties (KM, pH optimum, electrophoretic pattern, heat stability). 3. The serum alpha-L-fucosidase differs from the leucocyte and 4rine enzyme wit,respect to: electrophoretic pattern, pH optimum and heat stapility. 4. The molecular weight of leucocyte alpha-L-fucosidase was determined to be 80 000 +/- 5000. 5. Cu2+, Hg2+ and PCMB are strong inhibitors of leucocyte alpha-L-fucosidase. This inhibition could be completely reversed by beta-mercaptoethanol, indicating that thiol groups are essential for catalytic activity.

Anions↗

alpha-L-fucosidase in cultured skin fibroblasts from normal subjects and fucosidosis patients.

alpha-L-Fucosidase (EC 3.2.1.51) activity was studied in cultured skin fibroblasts obtained from 23 members of a family in which two cases of fucosidosis type 2 had occurred and in the fibroblasts of a patient with fucosidosis type 1. Both the 4-methylumbelliferyl glycoside and the p-nitrophenyl derivative were used as substrates. pH activity profiles showed two major peaks of activity. With the fluorogenic substrate pH optimum was at 4.5, whereas with the colorigenic substrate maximum activity was at pH 5.7. No activity was found in the fibroblasts of the three patients with the colorimetric assay. With the fluorometric assay the mean activity in the two patients with fucosidosis type 2 was 4.1 and 2.8 (range 1.3-9.9); activity in the patient with fucosidosis type 1 was 4.6 nmol 4-methylumbelliferone/mg protein/hr (range 1.0-8.6). The specific activity in the lysates of the patients' fibroblasts decreased as the amount of cellular protein used per assay increased. Fucosidosis fibroblasts cultured for 3 and 5 days in medium without fetal calf serum showed almost the same levels of apparent residual activity as fibroblasts cultured in medium containing fetal calf serum. Maximum activity in the deficient fibroblasts was at pH 4.5-4.75. Mixing experiments between lysates of both of fucosidosis and a normal fibroblast strain showed the expected enzymatic activities. The mean alpha-fucosidase activity in four heterozygotes for fucosidosis was 37.6 (range 24.1-48.7) and 30.3 (range 19.0-44.1) nmol final product split/mg protein/hr with the fluorogenic and the colorigenic substrate, respectively. In 12 normal fibroblast strains the mean activity +/- SD was 85.3 +/- 24.4 (range 50.8-129.3) and 67.6 +/- 21.1 (range 31.1-118.3). However, in four family members in which the alpha-L-fucosidase phenotype (by isoelectric focusing) was type 2-1, and who should therefore be carrying two normal alleles, the activity was within the heterozygote range. This indicates that occasional overlap between normal subjects and carriers may be present in cultured skin fibroblasts. Increased specific activity of alpha-L-fucosidase at pH 3.2-4.0 was observed after incubation of cell lysates with neuraminidase. The alpha-L-fucosidase activity did not show any increase after fusion between fucosidosis fibroblasts type 1 and 2.

Biopsy↗

The purification and characterization of rat liver lysosomal alpha-L-fucosidase.

The alpha-L-fucosidase from rat liver lysosomes was purified approximately 27,000-fold (from cytoplasmic extract) by a rapid procedure requiring only 7 h anf providing enzyme in a 20 per cent yield. The procedure is based upon affinity chromatography with agarose-epsilon-aminocaproyl-fucosamine. The isolated enzyme was found to be pure by a number of different analytical gel techniques and is essentially free of other lysosomal gylcosidases. The purified enzyme exhibits a positive periodic acid-Schiff stain, suggesting that it is a glycoprotein. The purified enzyme has a pH optimum of 5.7 to 5.9, a Vmax of 27 mumol/min/mg of protein, and a Km of 0.19 mM with p-nitrophenyl alpha-L-fucopyranoside as substrate. L-Fucose was the only possibly physiological effector of the enzyme which was identified; it exhibited a Ki of 1.6 mM, with p-nitrophenyl alpha-L-fucopyranoside as substrate. The enzyme has a subunit molecular weight of approximately 55,000 by Na dodecyl-SO4 electrophoresis in a variety of gel systems. The molecular weight of the native enzyme was indicated to be approximately 160,000 by sucrose density centrifugation, 300,000 by molecular sieve chromatography on Sephadex G-200, and 217,000 by sedimentation equilibrium centrifugation. The weight of evidence suggests that the enzyme is a tetramer. Incubation on the absence of sulfhydryl reagents under appropriate conditions generates a second alpha-L-fucosidase activity band on gels corresponding to a molecular weight of approximately 40,000 to 50,000. This result suggests that the subunit is relatively stable and may reassociate to form active enzyme. Alpha-L-Fucosidase requires a high concentration of protein and the presence of a sulfhydryl reagent for stabilization. It is rapidly inactivated by p-chloromercuriphenyl sulfonic acid, this inactivation being rapidly reversible by the addition of 10 mM 2-mercaptoethanol. The enzyme catalyzed the hydrolysis of 1 leads to 2, 1 leads to 3, and 1 leads to 4 fucosyl linkages and was found to be active on glycopeptides but not on native glycoproteins. The amino acid and carbohydrate composition of the enzyme was determined. The native enzyme contains the following sugars (residues per tetramer): fucose (3.5), mannose (32), galactose (8), glucose (9), glucosamine (32), and sialic acid (8). Rat liver lysosomal alpha-glucosidase, also produced in the rapid isolation procedure described herein, contained less than 0.1 residue of sialic acid per subunit.

Amino Acids↗

Purification of alpha-L-fucosidase from various sources by affinity chromatography.

An affinity column for alpha-L-fucosidases was constructed by linking p-amino-phenyl 1-thio-alpha-L-fucopyranoside to Sepharose 4B through linkers of succinyl 3,3'-diamino-dipropylamine. Excellent purification of alpha-L-fucosidase from rat epididymis, Clostridium perfringens and Limulus polyphemus (horse shoecrab) could be effected inone step with good yield. An affinity column purification step can be introduced at any point in published purification procedures. The purified enzyme is essentially free of other glycosidases and proteolytic enzymes. The column material is stable and can be reused for at least two years.

Animals↗

Glycosidases of molluscs. Purification and properties of alpha-L-fucosidase from Chamelea gallina L.

An alpha-L-fucosidase had been purified approximately 300-fold from the liver (hepatopancreas) of the marine mollusc Chamelea gallina L. (= Venus gallina L.). During the different steps of the purification procedure it was difficult to remove the contaminant N-acetylglucosaminidase activity; but, after electrofocusing, a final preparation free of this and other glycosidades present in the crude extract was obtained. The purified enzyme has a broad specificity; it hydrolyzes p-nitrophenyl alpha-L-fucoside and natural substrates such as oligosaccharides containing fucosidic residues with alpha 1--2, alpha 1--3 and alpha 1--4 linkages; also it hydrolyzes fucose-containing glycopeptides, such as thyroglobulin glycopeptide, and glycoproteins as procine submaxillary mucin (previously rendered free of sialic acid). The enzyme has a pH optimum of 5.2 +/- 0.2, with a Km of 7 X 10(-5) M using p-nitrophenyl L-fucoside as substrate. It is inhibited by Hg2+ and some sugars, and activated by CN-, Zn2+, Ca2+ and EDTA. It shows two peaks by isoelectric focusing (at 6.3 and 6.6). The molecular weight of the alpha-L-fucosidase by gel filtration was over 2000000.

Animals↗

Comparison of postnatal development of several acid glycosidases in the rat forebrain and cerebellum.

Changes of activity of several glycosidases (beta-galactosidase, beta-glucuronidase, N-acetyl-beta-D-glucosaminidase, alpha-D-mannosidase and alpha-L-fucosidase) were compared in the forebrain and cerebellum during postnatal development of the rat. Detailed analysis of the data showed similarities, but also substantial differences in their development in both organs. This is interpreted as an indication of the presence of common regulatory mechanisms, as well as of other factors which differently influence development of the glycosidases studied in both CNS parts.

Acetylglucosaminidase↗

Lysosomal hydrolase secretion by Tetrahymena: a comparison of several intralysosomal enzymes with the isoenzymes released into the medium.

Tetrahymena pyriformis were grown in proteose-peptone medium and then washed and incubated in a dilute salt solution for one hour. The cells were then discarded and the lysosomal hydrolases that had been secreted were subjected to DEAE cellulose column chromatography. At least three isoenzymes of acid phosphatase, three of acid protease, and two of beta-N-acetylhexoseaminidase were found, as well as single peaks of alpha-mannosidase, beta-galactosidase, and beta-fucosidase. The latter two activities were not resolved by the DEAE column and could not be separated in a second chromatographic step on CM-cellulose. Cells were also grown under identical conditions and homogenized in 0.25 M sucrose in order to allow comparison of some of the intracellular lysosomal hydrolases with their secreted counterparts. Two lysosomal populations were resolved by sucrose density gradient sedimentation, a heavy lysosomal fraction, contered at a density of about 1.25 gm/cm3, and a light lysosomal fraction, centered at a density of about 1.16 gm/cm3. These two populations differed in that the light lysosomes did not appear to contain significant amounts of beta-fucosidase, beta-galactosidase, or acid protease, whereas all six of the hydrolase activities studied were present in the heavy lysosomes. The light lysosomal peak occurred in cells grown to transition phase, but was markedly reduced in cells from cultures grown to stationary phase. In addition to these two fractions a third very light particle, containing only alpha-mannosidase activity, was detected just inside the gradient. Measurements were made of the effect of heat (10 minutes at 66 degrees) and of a change in pH from 4.5 (standard assay condition) to 6.0 on the three acid phosphatases and two beta-N-acetylhexoseaminidase isoenzymes resolved by DEAE column chromatography of the secreted hydrolases and on these hydrolyases in the heavy and light lysosomal fractions on the sucrose gradient. Use of the thermostability and pH criteria permitted computation of the expected properties of the intralysosomal acid phosphatase and hexoseaminidase activities if these consisted of the respective isoenzymes in the proportions secreted. It was found that neither the intralysosomal acid phosphatase nor the intralysosomal hexoseaminidase had the properties expected if they consisted of the secreted mixture of the respective isoenzymes, indicating that modification of some of these isoenzymes may have occurred during the 1-hour starvation period or after secretion.

Acid Phosphatase↗

Human alpha-fucosidase. Single residual enzymatic form in fucosidosis.

Four major forms of alpha-fucosidase (EC 3.2.1.51) activity were separated by isoelectrofocusing from sera of normal control individuals. All forms shifted towards less acidic pI values after neuraminidase treatment. In two patients affected with fucosidosis, only a single major acidic peak was observed and this was affected to a lesser degree by neuraminidase treatment. The kinetics of heat inactivation of the residual activity found in these two patients showed two decay rates while the controls showed only one rate. These data are considered in relation to the hypothesis of the existence of interconvertible thermolabile and thermostable forms of the enzyme which has been discussed in the preceeding paper. The residual alpha-fucosidase found in patients could be structurally altered so that its ability to form the thermostable higher molecular weight aggregates is impaired.

Adolescent↗

Heritable catabolic and anabolic disorders of lipid metabolism.

The principal manifestations and metabolic defects in ten heritable disorders of lipid metabolism are discussed. Facile procedures have been developed for the diagnosis of patients with these conditions, the identification of heterozygous carriers, and the prenatal detection of any of these diseases. Enzyme replacement appears promising for patients with Fabry's disease and Gaucher's disease who do not have central nervous system damage. The clinical and biochemical abnormalities that occur in patients with a novel inherited disorder of ganglioside anabolism are described.

Adult↗

Rapid diagnosis of Enterobacteriaceae. I. Detection of bacterial glycosidases.

The paper describes a number of tests for the rapid detection of glycosidases including alpha-glucosidase, beta-glucosidase, beta-glucuronidase, beta-xylosidase and alpha-fucosidase. The methods use heavy suspensions of viable but non-multiplying bacteria in a buffered solution of a chromogenic substrate. The results of the tests are readable within 4 h. The application of these tests to a collection of 633 strains of Enterobacteriaceae and Vibrionaceae demonstrates that some of the tests may be valuable additions to the present tests available for the identification of bacteria belonging to these families. beta-glucuronidase activity was observed only in strains of the Escherichia-Shigella group. 97 per cent of the Escherichia strains possessed beta-glucuronidase activity. beta-xylosidase activity was almost completely restricted to strains of the Klebsiella-Enterobacter group in addition to Yersinia strains. None of the strains possessed alpha-fucosidase activity.

Bacteriological Techniques↗