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Enzyme
Compound
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Query: EC:3.2.1.23 (
beta-galactosidase
)
14,648
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
An immunoglobulin M antibody reactive with galactosyl(alpha 1-3)mannose [Gal(alpha 1-3)Man] residues present on phospholipids extracted from Leishmania mexicana and L. braziliensis was found to be present in high titer in the serum of every normal individual studied. Periodate oxidation, acid hydrolysis, or acetylation suppressed immunoreactivity, suggesting that an oligosaccharide chain was responsible for antibody binding. Interaction occurs only with alpha-Gal terminal residues, since treatment of purified glycophospholipids with alpha-galactosidase but not with
beta-galactosidase
abolished it. Antibody bound to galactosyl(alpha 1-3)galactose-linked synthetic antigens but did not bind to the same residues present in rabbit, rat, and guinea pig erythrocytes or in murine laminin. Antigen-antibody binding was strongly blocked with Gal(alpha 1-3)Man and Gal(
beta 1
-4)Man. These results plus inhibition studies with several oligosaccharides suggest that they are indeed different from antibodies against the galactosyl(alpha 1-3)galactose residue. Anti-Gal(alpha 1-3)Man antibody values were significantly elevated in 89% of patients with diffuse cutaneous leishmaniasis, 84% of patients with localized cutaneous leishmaniasis, 69% of patients with mucocutaneous leishmaniasis, and 44 and 62% of patients with Trypanosoma cruzi or T. rangeli infection, respectively, but not in patients with 15 other different infectious and inflammatory diseases. Anti-Gal(alpha 1-3)Man antibody readily absorbed to American Leishmania and Trypanosoma culture forms, suggesting a surface membrane localization of reactive epitope. Gal(alpha 1-3)Man-bearing glycophospholipid was easily extracted from American Leishmania promastigotes and T. cruzi trypomastigotes as well as from American Trypanosoma culture forms. The possibility that this antibody arises against parasitic glycophospholipid-linked Gal(alpha 1-3)Man terminal residues is proposed.
...
PMID:A galactosyl(alpha 1-3)mannose epitope on phospholipids of Leishmania mexicana and L. braziliensis is recognized by trypanosomatid-infected human sera. 169 85
We inserted a full-length murine cDNA, which had been isolated from F9 embryonal carcinoma cells by using a bovine lactose synthetase A protein cDNA as a probe, in a mammalian expression vector (pCMGT1) and expressed it in COS-1 cells to characterize the pCMGT1-directed enzyme. The galactosyltransferase activity toward asialo-agalacto-transferrin (AsAg-Tf) in the pCMGT1-transfected cells was approximately eightfold higher than that in mock- or non-transfected cells. In contrast, no difference was observed in the specific activity of galactose transfer between pCMGT1-transfected cells and mock- or non-transfected cells when asialo-ovine submaxillary mucin were used as an acceptor. Since almost all [3H]galactose incorporated into the AsAg-Tf was released by digestion with streptococcal
beta-galactosidase
, most of the linkage created by this enzyme was in the Gal
beta 1
-4GlcNAc group. The acceptor specificity of the pCMGT1-directed enzyme was changed from N-acetylglucosamine to glucose by adding alpha-lactalbumin in the reaction mixture. Alpha-Lactalbumin also partially inhibited the galactose transfer to AsAg-Tf. The kinetic study revealed that the apparent Km values of the pCMGT1-directed enzyme for N-acetylglucosamine, AsAg-Tf and UDP-Gal are 2 mM, 60 microM and 24 microM, respectively. These results indicated that the murine cDNA isolated from F9 cells encodes an active enzyme which catalyzes not only the lactose synthesis but also the transfer of galactose to N-acetylglucosamine residues of Asn-linked sugar chains of glycoproteins in a
beta 1
-4 linkage.
...
PMID:Characterization of a murine beta 1-4 galactosyltransferase expressed in COS-1 cells. 170 63
F62 LOS of Neisseria gonorrhoeae consists of two components. The higher molecular weight (MW) component is recognized by monoclonal antibody (MAb) 1-1-M and the smaller MW component by MAb 3F11. Epitope expression of the two LOS components and their partial structures were investigated by treating the F62 LOS with several glycosidases and then monitoring their antigenicity with the two mouse IgM MAbs. The 1-1-M-defined LOS component was cleaved with both beta-N-acetylhexosaminidase and endo-beta-galactosidase, and each cleavage resulted in the loss of expression of the 1-1-M-defined epitope. The N-acetylhexosamine (HexNAc) released by the hexosaminidase was found to be GalNAc, and the smaller oligosaccharide released by the endo enzyme was identified to be a dimer GalNAc beta----Gal. In contrast, the MAb 3F11-defined LOS component was not digested by the endo galactosidase, but it was cleaved with alpha and
beta-galactosidase
, and expression of the MAb 3F11-defined LOS epitope expression of the MAb 3F11-defined LOS was abolished by the treatment with each of two exo enzymes. MAb 3F11 bound to the 1-1-M-defined LOS component resulting from the removal of the beta-GalNAc residue, and the resulting LOS was further cleaved with
beta-galactosidase
, but not with alpha-galactosidase. From these results, we conclude the following: (1) MAbs 1-1-M and 3F11 both recognize the non-reducing termini of the LOS components; (2) the 1-1-M-defined LOS component has the GalNAc beta----Gal
beta 1
----4-Glc (or GlcNAc) structure, and the GalNAc beta----Gal residue is involved in the MAb 1-1-M-defined epitope; (3) the MAb 3F11-defined LOS component may not have a Gal
beta 1
----4GlcNAc
beta 1
----4Gal
beta 1
----4Glc structure within the molecule. However, it has beta-Gal residue at its non-reducing terminus, and this residue is involved in the MAb 3F11-defined epitope; (4) the two LOS components share a similar antigenic structure, and the 3F11-defined epitope structure is present in the MAb 1-1-M-defined LOS component. Expression of this epitope within the 1-1-M-defined LOS molecule is blocked by the beta-GalNAc residue; however, the beta-GalNAc residue at the non-reducing end may be not the only structural difference between the two components.
...
PMID:Epitope expression and partial structural characterization of F62 lipooligosaccharide (LOS) of Neisseria gonorrhoeae: IgM monoclonal antibodies (3F11 and 1-1-M) recognize non-reducing termini of the LOS components. 172 May 5
The structure of the linkage region of chondroitin sulfate chains attached to the hybrid proteoglycans of the Engelbreth-Holm-Swarm mouse tumor was investigated. The peptidoglycan fraction which contains oversulfated chondroitin sulfate rich in the GlcA
beta 1
-3GalNAc-4,6-diO-sulfate unit and undersulfated heparan sulfate rich in GlcA
beta 1
-4GlcNAc and GlcA
beta 1
-4GlcN-2N-sulfate units was isolated after exhaustive protease digestion of the acetone powder of the tumor tissue, (GlcA, glucuronic acid; GalNAc, 2-deoxy-2-N-acetylamino-D-galactose). Glycosaminoglycans were released by beta-elimination using NaB3H4 and digested with chondroitinase ABC. The linkage region fraction was separated from heparan sulfate by gel filtration and fractionated by HPLC on an amine-bound silica column. Six radiolabeled compounds (L1-L6) were obtained and structurally analyzed by cochromatography with authentic hexasaccharide alditols recently isolated by us from the linkage region, and by digestion using chondroitinase ACII, alkaline phosphatase and
beta-galactosidase
in conjugation with HPLC. These compounds shared the conventional hexasaccharide backbone structure: delta GlcA
beta 1
-3GalNAc
beta 1
-4GlcA
beta 1
-3Gal
beta 1
-3Gal
beta 1
-4Xyl-ol, (delta GlcA, delta 4.5-GlcA or D-gluco-4-enepyranosyluronic acid). L1 was not sulfated or phosphorylated. L2 and L4 were monosulfated at C-6 and C-4 of the GalNAc residue, respectively. Upon alkaline phosphatase digestion, L3, L5 and L6 were converted to L1, L2 and L4, respectively. Analysis of the periodate oxidation products indicated that the phosphate group in L3, L5 and L6 is located at C-2 of Xyl-ol. These results suggest that Xyl-2-O-phosphate is associated with both 4-O-sulfated and 6-O-sulfated GalNAc units and does not directly determine the sulfation pattern of chondroitin sulfate.
...
PMID:The phosphorylated and/or sulfated structure of the carbohydrate-protein-linkage region isolated from chondroitin sulfate in the hybrid proteoglycans of Engelbreth-Holm-Swarm mouse tumor. 174 Jan 53
The hepatopancreatic extract of M. mercenaria (hard shelled clam) was found to be a rich source for at least 16 different glycosidases. These glycosidases were successfully employed for the degradation of oligosaccharides, glycolipids, and glycoproteins at analytical as well as preparative levels. The identified glycosidases differ considerably in their stability profiles with respect to time and temperature of storage and presence of glycerol. However, most of the enzymes show higher activity at pH 4.5 than at pH 7.0, and could be bound on a DEAE CL-6B Sepharose anion-exchange column suggesting similar charge characteristics on the protein surface. A Gal
beta 1
, 3R linkage-specific
beta-galactosidase
activity has also been detected in the glycosidase-enriched fraction and has been utilized to obtain quantitative conversion of the ganglioside GM1 to GM2 on a preparative scale. The glycosidase-rich extract does not have detectable protease activity at the pH of optimal glycosidase activity (pH 4.5) and, hence, can be safely used for specific hydrolysis of carbohydrate moieties of glycoproteins and glycopeptides. This is the first report to characterize a repertoire of glycosidases from an inexpensive, dependable and convenient source that can be easily employed for compositional studies involving glycoconjugates.
...
PMID:Use of exoglycosidases from Mercenaria mercenaria (hard shelled clam) as a tool for structural studies of glycosphingolipids and glycoproteins. 177 74
Avian
beta 1
,4 galactosyltransferase (GalTase) was purified from chicken serum, partially characterized and compared to mammalian GalTase using antibody cross-reactivity, Northern blot hybridization and amino acid sequence analysis. The enzyme was purified to apparent homogeneity by alpha-lactalbumin(LA)-agarose affinity chromatography followed by preparative SDS-polyacrylamide gel electrophoresis, and identified as two proteins of apparent molecular masses of 39 and 46 kD. Chicken serum GalTase had a Km for UDPGal of 42 microM, for GlcNAc of 10 mM and had optimal activity in the presence of 10-20 mM MnCl2. Substrate and linkage specificity analyses indicated that the purified enzyme behaves as a traditional Gal
beta 1
,4 GlcNAc:GalTase, since: (i) the avian
beta 1
,4 GalTase bound to alpha-LA; (ii) terminal GlcNAc residues served as good acceptors for chicken serum GalTase; (iii) the enzyme was inhibited by high concentrations of GlcNAc; (iv) the galactosylated product was sensitive to
beta 1
,4-specific
beta-galactosidase
. Finally, the disaccharide reaction product comigrated with authentic
beta 1
,4 N-acetyllactosamine standard. No other GalTase activities were detectable using a battery of defined glycoside substrates. Polyclonal antibodies raised against the two gel-purified GalTase proteins showed reactivity with avian GalTase by ELISA and immunoprecipitation assays. The antibodies also inhibited GalTase activity toward both high mol. wt and monosaccharide acceptor substrates. Despite similar kinetics and substrate specificity, the avian and mammalian GalTases showed little overall structural similarity, since polyclonal anti-avian GalTase IgG failed to react with mammalian GalTase purified from bovine milk, and conversely anti-bovine milk GalTase IgG did not react with the avian enzyme. Furthermore, in Northern blot analysis, no hybridization was detected when chicken embryo liver poly(A)+ RNA was probed with a mouse GalTase cDNA, even under conditions of reduced stringency. Amino acid sequence analysis identified three of five tryptic peptides that are homologous to the mammalian sequence within a putative substrate binding domain and the carboxy terminal domain of the enzyme. Their overall structural disparity leads us to believe that regions of homology between the avian and mammalian GalTases may represent active sites of the enzyme.
...
PMID:Purification and characterization of avian beta 1,4 galactosyltransferase: comparison with the mammalian enzyme. 182 64
Incubation of UDP-GlcNAc and radiolabeled GlcNAc
beta 1
-3Gal
beta 1
-4GlcNAc
beta 1
-3Gal
beta 1
-4GlcNAc (1) with human serum resulted in the formation of the branched hexasaccharide GlcNAc
beta 1
-3Gal
beta 1
-4GlcNAc
beta 1
-3(GlcNAc
beta 1
-6)Gal
beta 1
-4GlcNAc (2) in yields of up to 22.2%. The novel reaction represents midchain branching of the linear acceptor; the previously known branching reactions of oligo-(N-acetyllactosaminoglycans) involve the nonreducing end of the growing saccharide chains. The structure of 2 was established by use of appropriate isotopic isomers of it for degradative experiments. The hexasaccharide 2 was cleaved by an exhaustive treatment with jack bean beta-N-acetylhexosaminidase, liberating two GlcNAc units and the tetrasaccharide Gal
beta 1
-4GlcNAc
beta 1
-3Gal
beta 1
-4GlcNAc (3). Endo-
beta-galactosidase
from Bacteroides fragilis cleaved 2 at one site only, yielding the disaccharide GlcNAc
beta 1
-3Gal (4) and the branched tetrasaccharide GlcNAc
beta 1
-3(GlcNAc
beta 1
-6)Gal
beta 1
-4GlcNAc (5). The structure of 5 was established by partial acid hydrolysis and subsequent identification of the disaccharide GlcNAc
beta 1
-6Gal (6), together with the trisaccharides GlcNAc
beta 1
-6Gal
beta 1
-4GlcNAc (7) and GlcNAc
beta 1
-3(GlcNAc
beta 1
-6)Gal (8) among the cleavage products. Galactosylation of 2 with bovine milk
beta 1
,4-galactosyltransferase and UDP-[6-3H]Gal gave the octasaccharide [6-3H]Gal
beta 1
-4GlcNAc
beta 1
-3 Gal
beta 1
-4GlcNAc
beta 1
-3([6-3H]-Gal
beta 1
-4GlcNAc
beta 1
-6)[U-14C] Gal
beta 1
-4GlcNAc (17), which could be cleaved with endo-beta-galactosidase into the trisaccharide [6-3H]Gal
beta 1
-4GlcNAc
beta 1
-3Gal (18) and the branched pentasaccharide GlcNAc
beta 1
-3-([6-3H]Gal
beta 1
-4GlcNAc
beta 1
-6) [U-14C]Gal
beta 1
-4GlcNAc (19). Partial hydrolysis of 2 with jack-bean beta-N-acetylhexosaminidase gave the linear pentasaccharide 1 and the branched pentasaccharide Gal
beta 1
-4GlcNAc
beta 1
-3(GlcNAc
beta 1
-6)Gal
beta 1
-4GlcNAc (20). The serum
beta 1
,6-GlcNAc transferase catalyzed also the formation of GlcNAc
beta 1
-3Gal
beta 1
-4GlcNAc
beta 1
-3(GlcNAc
beta 1
-6)Gal
beta 1
-4Glc (11) from UDP-GlcNAc and GlcNAc
beta 1
-3Gal
beta 1
-4GlcNAc
beta 1
-3Gal
beta 1
-4Glc (10). The pentasaccharide Gal alpha 1-3Gal
beta 1
-4GlcNAc
beta 1
-3Gal
beta 1
-4GlcNAc (16), too, served as an acceptor for the enzyme.(ABSTRACT TRUNCATED AT 400 WORDS)
...
PMID:Human serum contains a novel beta 1,6-N-acetylglucosaminyltransferase activity that is involved in midchain branching of oligo (N-acetyllactosaminoglycans). 183 57
Endo-
beta-galactosidase
(EC 3.2.1.103) of Bacteroides fragilis, at 250 mU ml-1, did not cleave the internal galactosidic linkage of the linear radiolabelled trisaccharide GlcNAc
beta 1
-6Gal
beta 1
-4GlcNAc, or those of tetrasaccharides Gal
beta 1
-4GlcNAc
beta 1
-6Gal
beta 1
-4GlcNAc and Gal
beta 1
-4GlcNAc
beta 1
-6Gal
beta 1
-4Glc. The isomeric glycans which contained the GlcNAc
beta 1
-3Gal
beta 1
-4GlcNAc/Glc sequence were readily cleaved.
...
PMID:Single mid-chain GlcNAc beta 1-6Gal beta 1-4R sequences of linear oligosaccharides are resistant to endo-beta-galactosidase of Bacteroides fragilis. 184 79
Different concentrations of ionic and non-ionic detergents were examined for optimization of the in vitro degradations of intestinal glycosphingolipids by alpha- and beta-glycosidases from human fecal bacteria. In 5 mM Triton X-100 the enzymes hydrolyzed glycosphingolipids with lactoseries type 1 and 2 chains essentially to lactosylceramide (LacCer). In 5 mM sodium di- and trihydroxy bile salts lactosylceramide was degraded to glycosylceramide (GlcCer) in varying extent by enzymes from all five strains. The minimal bile salt concentrations for optimal 1,4-
beta-galactosidase
activities varied between 1 and 20 mM, i.e., close to or above the critical micellar concentrations (cmc). Dihydroxy bile salts were the most efficient in promoting conversion of LacCer to GlcCer at concentrations below 10 mM and conjugation with a taurine residue did not markedly lower the GlcCer yield. The optimal detergent concentrations for hydrolyses of the p-nitrophenyl (pnp) glycosides Gal
beta 1
-pnp and GalNAc alpha 1-pnp were approximately 0.05 mM for Triton X-100 and 0.5 mM for sodium taurodeoxycholate, i.e., clearly below their reported cmc values. Galabiosylceramide, globotria- and globotetraosylceramides, not degraded in the Triton X-100 micelles, were also resistant to hydrolysis using the sodium bile salts as detergents. In contrast, lactotetraosylceramide and isoglobotriaosylceramide were significantly more degraded by enzymes from a Ruminococcus gnavus strain and gangliotetraosylceramide by enzymes from a Bifidobacterium bifidum and a Bifidobacterium infantis strain using bile salt detergents. All strains but R. gnavus released terminal GalNAc from para-Forssman but not from the globotetraosylceramide or Forssman structures using 5 mM sodium deoxycholate as detergent. GM1 desialylation by two Ruminococcus torques strains and the R. gnavus and B. bifidum strains were enhanced under identical conditions. We conclude that the observed effects on glycosphingolipid hydrolyses reflects variations in the micellar presentation of the substrates. In addition, detergents seem to have a direct stimulating effect on the glycosidases, however at concentrations 10-100-times below the ones optimal for glycolipid degradations. These results with optimized bile salt concentrations, further support our previous observations that these five fecal bacterial strains produce enzymes with selected specificities towards glycosphingolipid core chains of the lactoseries type 1 and 2.
...
PMID:Enhancing effects of bile salts on the degradation of glycosphingolipids by glycosidases from bacteria of the human fecal flora. 185 98
The presence and subcellular localization of UDP-Gal:glucosylceramide
beta 1
----4galactosyltransferase (GalT-2) was investigated in rat liver. For this purpose, purified Golgi apparatus, endoplasmic reticulum, and plasma membrane fractions were prepared from the liver and used as the enzyme source for detecting GalT-2. A pure Golgi apparatus, highly enriched in many glycosyltransferases, was the only fraction where GalT-2 was measurable. The reaction product formation rate under appropriate assay conditions, which requires high detergent concentration and Mn2+, was low but comparable with that of other glycosyltransferases. The product formation was stimulated by exogenously added acceptor GlcCer, donor UDP-Gal, and Golgi protein. The reaction product was a single spot that was identified by chromatographic behavior, sensitivity to
beta-galactosidase
, and permethylation studies as Gal
beta 1
----4Glc
beta 1
----1'Cer (lactosylceramide). A metabolic experiment, performed by determining the glycosphingolipids which became radioactive in the above subcellular fractions prepared from the liver of animals treated with glucose-labeled glucosylceramide, further indicated that the in vivo glycosylation of glucosylceramide takes place in the Golgi apparatus.
...
PMID:Localization in the Golgi apparatus of rat liver UDP-Gal:glucosylceramide beta 1----4galactosyltransferase. 190 Apr 30
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