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2-acetamido-2-deoxy-alpha-D-galactosidases of Clostridium perfringens. Separation and characterization of an exoglycosidase and an oligosaccharidase.

Two distinct 2-acetamido-2-deoxy-alpha-D-galactosidases have been separated from filtrates of cultured Clostridium perfringens by electrophoresis in 6.5% poly(acrylamide) gels. One of the enzymes had a mobility of 0.32--0.36 (relative to Bromophenol Blue) and was identified as the exoglycosidase, 2-acetamido-2-deoxy-alpha-D-galactosidase. It appears to be the same enzyme as that reported in 1972 by McGuire et al. The second of the two enzymes, having a relative mobility of 0.42--0.46, corresponds to the oligosaccharidase reported in 1972 by Huang and Aminoff. The A-specificities of human type-A erythrocytes and of water-soluble glycoproteins having A-activity are both destroyed by incubation with the 2-acetamido-2-deoxy-alpha-D-galactosidase, but not on incubation with the oligosaccharidase. A concomitant rise in blood-group O(H) activity, as indicated by the use of a lectin from Ulex europeus, occurred in the A-erythrocytes treated with the exoglycosidase 2-acetamido-2-deoxy-alpha-D-galactosidase.

ABO Blood-Group System↗

The lectin from the mushroom Pleurotus ostreatus: a phosphatase-activating protein that is closely associated with an alpha-galactosidase activity. A part of this paper has been presented as a preliminary report at the 17th Interlec. Meeting 1997 in Würzburg, Germany.

The lectin from the mushroom Pleurotus ostreatus described earlier [F. Conrad, H. Rüdiger, The lectin from Pleurotus ostreatus: purification, characterization and interaction with a phosphatase, Phytochemistry 36 (1994) 277-283] was further characterized. Determination of the isoelectric point by capillary electrophoresis gave a value of 7.6. The dissociation constant of the lectin-alpha-lactose-1-phosphate complex determined by capillary electrophoresis is 3 mM. The activation of an endogenous phosphatase by the lectin as found earlier for the pseudosubstrate p-nitrophenylphosphate was confirmed also for naturally occurring substrates as ADP and ATP. We observed that at all purification steps the lectin is accompanied by an alpha-galactosidase activity. Both activities could neither be resolved by electrophoresis under non-denaturing conditions nor by affinity chromatography. However, carbohydrate binding by the lectin and carbohydrate processing by the enzyme are not due to the same site since: (i) the lectin accepts both alpha- and beta-glycosides whereas the enzyme activity is restricted to the alpha-anomer; (ii) the interaction with erythrocytes leads to a stable agglutinate, i.e. no 'clot-dissolving activity' [C.N. Hankins, J.I. Kindinger, L.M. Shannon, Legume alpha-galactosidases which have hemagglutinin properties, Plant Physiol. 65 (1980) 618-622] is observed; (iii) the alpha-galactosidase activity is inhibited by galactose but not by a beta-galactoside. Therefore, lectin and enzymatic activities are either properties of two tightly associated proteins, or of just one molecule. The kinetic parameters of the lectin-associated alpha-galactosidase activity for p-nitrophenyl-alpha-galactopyranoside are: K(M)=2.5 mM, k(cat)=66 s(-1), and K(I)=20mM for the inhibitor D-galactose.

Journal Article↗

Deletion and insertion of a 192-residue peptide in the active-site domain of glycosyl hydrolase family-2 beta-galactosidases.

The monomeric multimetal-binding beta-galactosidase of Saccharopolyspora rectivirgula (srbg), a glycosyl hydrolase family-2 enzyme, has a unique sequence consisting of 192 amino acid residues with no similarity to known proteins. This 192-residue sequence (termed the "iota [iota] sequence") appears to be inserted into a sequence homologous to the active-site domain of the Escherichia coli lacZ enzyme (lacZbg). To assess the effects of the t sequence at specific sites of beta-galactosidase on the catalytic functioning and molecular properties of beta-galactosidase, deletion or insertion mutants of beta-galactosidases were constructed, expressed in LacZ- E. coli strains, and characterized: srbgdelta in which the iota sequence was deleted from srbg, and lacZbgI, in which the 192-residue iota sequence was inserted into the corresponding position (between Asp591 and Phe592) in the active-site domain of lacZbg. srbgdelta was a catalytically inactive, dimeric protein which retained multimetal-binding characteristics, suggesting that the iota sequence is very important for maintaining the structure necessary for the catalytic functioning and the monomeric structure of srbg but is not responsible for the unique metal ion requirements of srbg. On the other hand, lacZbgI existed as a mixture of a monomer, a tetramer, and higher multimers. The monomeric species was inactive, whereas the tetramer and other multimers were catalytically active (V(max )K(m) value, 25% of that of lacZbg) and highly specific for beta-D-galactoside. The tetrameric lacZbgI was activated by Mg2+ and Mn2+ with lowered metal affinities, and the stoichiometry of metal binding was unchanged from that of lacZbg. These results, along with the published stereo structure of lacZbg, suggest that, in lacZbgI, the inserted 192-residue iota peptide could fold independently of the lacZbg domains into a "sub-domain," lying distant from the active site and subunit interfaces.

Journal Article↗

Utilization of protein-hydrolyzed cheese whey for production of beta-galactosidase by Kluyveromyces marxianus.

We studied the utilization of protein-hydrolyzed sweet cheese whey as a medium for the production of beta-galactosidase by the yeasts Kluyveromyces marxianus CBS 712 and CBS 6556. The conditions for growth were determined in shake cultures. The best growth occurred at pH 5.5 and 37 degrees C. Strain CBS 6556 grew in cheese whey in natura, while strain CBS 712 needed cheese whey supplemented with yeast extract. Each yeast was grown in a bioreactor under these conditions. The strains produced equivalent amounts of beta-galactosidase. To optimize the process, strain CBS 6556 was grown in concentrated cheese whey, resulting in a higher beta-galactosidase production. The beta-galactosidase produced by strain CBS 6556 produced maximum activity at 37 degrees C, and had low stability at room temperature (30 degrees C) as well as at a storage temperature of 4 degrees C. At -4 degrees C and -18 degrees C, the enzyme maintained its activity for over 9 weeks.

Journal Article↗

Expression of beta-galactosidase controlled by a nitrogenase promoter in stem nodules of Aeschynomene scabra.

A 365-base-pair (bp) DNA fragment, containing the promoter region of the nitrogenase reductase (nifH) gene from stem Rhizobium BTAi1, has been isolated and sequenced. The transcription initiation sites were localized at positions 152 (major initiation) and 114 (minor initiation) nucleotides upstream of the translation initiation codon. The 200-bp nucleotide sequence upstream of the nifH structural gene shows substantial homology to the corresponding nifH regions of cowpea Rhizobium (100%), Parasponia Rhizobium (89%), and Rhizobium japonicum (88%). The nifH promoter region of stem Rhizobium BTAi1 was fused to the lacZ gene of Escherichia coli. The fusion and a 1.6-kilobase DNA specifying neomycin phosphotransferase were inserted into a 3,4-kilobase fragment of stem Rhizobium chromosome, and the resulting construct was placed on a mobilizable vector, pREV1000. Stem Rhizobium transconjugants resistant to kanamycin were found to contain the nifH promoter region-lacZ fusion linked to the neomycin phosphotransferase gene at the site of chromosomal homology. Analysis of the DNA from stable transconjugants showed integration of a single copy of these sequences into the chromosome by a double-reciprocal crossover event. The transconjugants formed nitrogen-fixing nodules, indicating that the insertion occurred in a "nonessential" region of the stem Rhizobium chromosome. Transconjugant strain BTAi1000 grows on beta-galactosidase indicator plates under aerobic conditions as white colonies, whereas under microaerobic conditions (97% N(2)/3% O(2)), which derepress nitrogenase, the colonies turn blue within 15-24 hr. beta-Galactosidase activity in derepressed cultures of BTAi1000 showed a 200-fold increase in comparison to the wild-type strain, whereas stem nodules formed by BTAi1000 exhibited 15- to 20-fold higher beta-galactosidase values than wild-type nodules. Nitrogenase promoter-dependent expression of beta-galactosidase in stem nodules was inhibited by fixed nitrogen, suggesting that the nifH promoter-lacZ fusion is controlled coordinately in trans with the native nif region.

Journal Article↗

Atypical expression of beta-galactosidase deficiency in a child with Hurler-like features but without neurological abnormalities.

A 28-month-old child was found to have several clinical features of lysosomal storage diseases, including: coarse facies, hepatosplenomegaly, lumbar kyphosis due to hypoplastic beaked L1 and L2 vertebral bodies, vacuolated lymphocytes in blood smears and rare foamy hystiocytes in bone marrow. However, no signs of neurological or ocular abnormalities were detected. A beta-galactosidase deficiency was demonstrated in leukocytes and cultured skin fibroblasts, with a residual activity toward 4-methylumbelliferyl-beta-galactopyranoside ranging between 5 and 15% of the normal mean. Normal activities were found for several other lysosomal acid hydrolases. beta-Galactosidase activities in leukocytes and cultured skin fibroblasts from both parents were within the normal ranges. The patient seems to represent an atypical expression of acid beta-galactosidase deficiency, since his clinical picture does not exaclty correspond to that of either the two classical types of GM1-gangliosidosis or other atypical patients reported in the literature havining beta-galactosidase deficiency.

Eye Abnormalities↗

Generation and Characterization of Environmentally Sensitive Variants of the beta-Galactosidase from Lactobacillus delbrueckii subsp. bulgaricus.

A method is described for generating and screening variants of the beta-galactosidase from Lactobacillus delbrueckii subsp. bulgaricus sensitive to several environmental stresses, with potential application in the food industry. Chemical mutagenesis with hydroxylamine or methoxylamine was performed on the beta-galactosidase gene carried on an Escherichia coli expression vector. Mutants sensitive to cold, heat, low pH, low magnesium concentration, and the presence of urea were isolated by screening for reduced color development on beta-galactosidase indicator plates. The mutations responsible for three variant beta-galactosidases were localized, and the base substitutions were determined by DNA sequencing. The amino acid alterations associated with one low-pH-sensitive (pHs) and two urea-sensitive (Us) variants correspond to P584L (pHs1), G400S/R479Q (Us26), and G167E/E168K/E363K/V492M (Us17), respectively. Mutant pHs1 is also heat, cold, low magnesium, and urea sensitive; Us26 is also cold sensitive; and Us17 is also low-pH sensitive.

Journal Article↗

[Use of the gnotobiotic rat for determination of the in vivo activity of Bifidobacterium beta-galactosidase].

Under the conditions of in vitro cultivation, the height of the beta-galactosidase activity of Bifidobacterium spec. is essentially influenced by the composition of the culture medium. The use of gnotobiotic (germ-free and monoassociated with Bifidobacterium longum) rats permitted to differentiate in the chyme between beta-galactosidase activities of mucosal and microbial origin. In germ-free animals, the chyme in the small intestine and the colon contains nearly 10-20% of the activity measured in the mucosa (in each case expressed as g on a wet-weight basis). Monoassociation with B. longum does not affect the lactose-splitting activity of the chyme in the small intestine, but increases the activity of the chyme in the colon to twice the value of the mucosal activity. In the monoassociated animals, feeding of lactose leads to a further multiple increase of the chymal beta-galactosidase activity in the caecum, colon and faeces.

Animals↗

Enhanced expression of cro-beta-galactosidase fusion proteins under the control of the PR promoter of bacteriophage lambda.

Hybrid plasmids carrying cro-lacZ gene fusions have been constructed by joining DNA segments carrying the PR promoter and the start of the cro gene of bacteriophage lambda to the lacZ gene fragment carried by plasmid pLG400 . Plasmids in which the translational reading frames of the cro and lacZ genes are joined in-register (type I) direct the synthesis of elevated levels of cro-beta-galactosidase fusion protein amounting to 30% of the total cellular protein, while plasmids in which the genes are fused out-of-register (type II) produce a low level of beta-galactosidase protein. Sequence rearrangements downstream of the cro initiator AUG were found to influence the efficiency of translation, and have been correlated with alterations in the RNA secondary structure of the ribosome-binding site. Plasmids which direct the synthesis of high levels of beta-galactosidase are conditionally lethal and can only be propagated when the PR promoter is repressed. Deletion of sequences downstream of the lacZ gene restored viability, indicating that this region of the plasmid encodes a function which inhibits the growth of the cells. The different applications of these plasmids for expression of cloned genes are discussed.

Bacteriophage lambda↗

Effect of treatment with phospholipase A2, colchicine, and beta-galactosidase on agglutination of rat hepatocytes.

The effects of phospholipase A2, colchicine, and beta-galactosidase on concanavalin A-induced agglutination of viable hepatocytes isolated from normal and diabetic rats are reported. Phospholipase A2 (0.92 microgram/mL), colchicine (400 micrograms/mL), and beta-galactosidase (300 micrograms/mL) treatments caused a significant increase in the agglutination rate of hepatocytes. These findings suggest that phospholipase A2 treatment resulted in the unshielding of lectin receptors. Colchicine treatment seemed to release those receptors from cellular restraints which tend to separate and/or direct them. The promoting effect of beta-galactosidase could be attributed to a decrease in repulsive forces due to a reduction in net negative charge density after removal of N-acetylneuraminic acid residues. Normal rat hepatocytes seem to be richer in galactosides, phospholipids, and the microfilament-microtubule network than their diabetic counterparts.

Agglutination↗

Lysosomal alpha-galactosidase in endothelial cell cultures established from a Fabry hemizygous and normal umbilical veins.

An endothelial cell line has been established from the umbilical vein obtained after abortion of a male fetus suffering from Fabry disease. This X-linked inborn error of glycosphingolipid catabolism results from deficiency of the lysosomal hydrolase alpha-galactosidase A. The clinical manifestations of the disease are mainly caused by glycosphingolipid depositions in the endothelium of all vessels. The hemizygous cell line and eight endothelial cell lines originating from the umbilical cords of normal newborns were grown for more than 10 passages. They had a short generation time that allowed us to get sufficient cells for qualitative and quantitative investigations of alpha-galactosidase. The enzyme in normal endothelial cells had a similar thermostability and isoelectric focusing pattern as that in fibroblasts, but the activity was essentially higher in endothelial cells. The hemizygous endothelial cells were deficient in alpha-galactosidase A. It is concluded that endothelial cell lines are an important alternative to fibroblasts for in vitro studies of the lysosomal storage diseases.

Cell Line↗

Ganglioside GM1 metabolism in living human fibroblasts with beta-galactosidase deficiency.

The uptake and catabolism of [3H-ceramide]-GM1 was followed in living fibroblasts from patient with different forms of beta-galactosidase deficiency. Gangliosides are identified according to the nomenclature of Svennerholm (1963). A total inability to metabolize the ingested substrate was found in infantile GM1-gangliosidosis whereas cells from an adult GM1-gangliosidosis variant showed a slower rate of degradation, compared with controls. Morquio B fibroblasts had a comparable catabolism of GM1 as controls. Fibroblasts from different types of galactosialidosis, a recessive disease associated with a coexistent beta-galactosidase/neuraminidase deficiency all showed degradation of ingested GM1. In view of the molecular defect in this disease, this catabolism must be due to the 10-20% of monomeric beta-galactosidase molecules present in the lysosomes. Unexpectedly, in these cells an impaired metabolism of GM3 was found. The same finding was observed when cells with an isolated neuraminidase deficiency (mucolipidosis I) were loaded with GM1. A hypothesis is presented to explain these results.

Adult↗

Induction and genetics of two alpha-galactosidase activities in Saccharomyces cerevisiae.

The induction of alpha-galactosidase of Saccharomyces cerevisiae was investigated. We have demonstrated the existence of inducible internal and external alpha-galactosidase activities and have studied the relationship between the two alpha-galactosidases by examining a mutant strain which lacks both the internal and external activities. The mutant possesses a mutation in a single locus (mel1-1) which does not affect the synthesis of the other galactose pathway enzymes or the ability of the yeast to grow on media containing only galactose as the carbon source. Genetic studies of the mutant indicate that mel 1-1 is recessive and allelic to the wild tye allele for melibiose fermentation Mel 1.

Cell Compartmentation↗

Regional localization of a beta-galactosidase locus on human chromosome 22.

Human white blood cells with an X/22 translocation [46, XX, t(X;22)(q23;q13)] were fused with Chinese hamster cells. The isolated hybrids were analyzed for human chromosomes and 21 enzyme markers. An electrophoretic technique for studying the beta-galactosidase isoenzymes in man-Chinese hamster hybrid cells was developed. Immunological studies showed that the beta-galactosidase marker studied in these hybrids did contain immunological determinants of human origin. Furthermore the results provided evidence that a locus for beta-galactosidase is situated on chromosome 22 distal to the breakpoint in q13.

Antigen-Antibody Reactions↗

Single-cell immuno-beta-galactosidase staining of heterogeneous populations. Practical application on limited cell numbers.

In this paper we describe a sensitive immunocytochemical staining method, particularly useful for the study of subpopulations of cells in complex mixtures such as bone marrow cell suspensions. E. coli beta-galactosidase is used as a label, which has the advantage that no endogenous activity is observed under the present experimental conditions. Direct sedimentation of cells on to poly-L-lysine-pretreated multi-well slides followed by gentle fixation prevents cell loss during preparation and subsequent incubation steps. Furthermore, analysis of only a few hundred cells per sample is possible. We examined the sensitivity of this method by comparing the percentages of positive cells in a spleen cell suspension after staining with a panel of monoclonal antibodies followed by analysis with the present immuno-beta-galactosidase method or standard flow cytometry. For almost all antibodies used, the percentages of positive spleen cells obtained with the immuno-beta-galactosidase method at least equalled those obtained with flow cytometry. Several fixatives, used to permanently adhere the cells to the slide's surface, were tested for the preservation of both morphological and antigenic structure. Glutaraldehyde and formol acetone proved to be the best choices in this respect. The present method combines high sensitivity with good morphology and is especially useful for immunophenotyping low cell numbers of heterogeneous populations.

Animals↗

The border residues of the dihydrofolate reductase domain in Escherichia coli beta-galactosidase correspond to the positions of introns 1 and 5 of dihydrofolate reductase of chicken.

In beta-galactosidase of Escherichia coli residues 820-934 are similar to residues in dihydrofolate reductase of E. coli. Dihydrofolate reductase of E. coli and chicken are also similar and have identical tertiary structures. I used the similarity of the three-dimensional structure of prokaryotic and eukaryotic dihydrofolate reductases to align the chicken dihydrofolate reductase and the similar residues of beta-galactosidase. The positions of introns 1 and 5 of the chicken dihydrofolate reductase gene correspond exactly to the start and the end of the dihydrofolate reductase-like domain in the beta-galactosidase polypeptide chain. This equivalence of intron positions in a eukaryotic gene and domain structure in a prokaryotic protein was interpreted as evidence for a common origin of both genes.

Amino Acid Sequence↗

beta-D-galactosidase of Lactobacillus species.

The activity of beta-D-galactosidase was studied in 13 strains of lactobacilli (groups Streptobacterium, Thermobacterium and Betabacterium). Using 2-nitrophenyl galactopyranoside as substrate, the enzyme activity varied with the strain. The values found in the Thermobacterium group were superior to those in the Streptobacterium group. The optimum pH for the species belonging to the Thermobacterium group was uniform, in contrast to the pH for those from the Streptobacterium which varied according to the species. The optimum temperature was quite uniform within each group and higher in the Streptobacterium. Lactose acted as a competitive inhibitor. MgCl2 protected the enzyme from thermal denaturation. The calcium ions inhibited the activity in all cases. The behaviour of the protectors of the SH groups varied according to the strain. 6-Phospho-beta-D-galactosidase activity was also determined, levels lower than beta-D-galactosidase were found, except in Lactobacillus plantarum ATCC 8014 and 14917.

Anions↗

Effect of cyclic adenosine-3',5'-monophosphate on the simultaneous synthesis of beta-galactosidase and tryptophanase in Escherichia coli.

When inducing simultaneously beta-galactosidase and tryptophanase in a batch culture either the synthesis of tryptophanase or of both enzymes is decreased due to an insufficient cAMP concentration. The addition of this nucleotide can overcome this decrease. In a continuous culture both enzymes are synthesized at the maximum rate, as the amount of cAMP produced during carbon limitation of growth is probably sufficient for the simultaneous synthesis of both enzymes. In the beta-galactosidase hyperproduction mutant cultivated continuously the level of beta-galactosidase markedly decreases when tryptophanase is simultaneously induced. Also this decrease is caused by cAMP insufficiency and can be overcome by increasing its concentration. cAMP is thus an important regulatory factor of both enzymes and becomes a limiting factor in their simultaneous synthesis; a competition for this regulatory compound apparently occurs and probably also a different mutual affinity of the regulatory complex with the promoter site of the enzyme operons is involved.

Cyclic AMP↗