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CAZyme Information: MGYG000002348_00930

You are here: Home > Sequence: MGYG000002348_00930

Basic Information | Genomic context | Full Sequence | Enzyme annotations |  CAZy signature domains |  CDD domains | CAZyme hits | PDB hits | Swiss-Prot hits | SignalP and Lipop annotations | TMHMM annotations

Basic Information help

Species Lactobacillus crispatus
Lineage Bacteria; Firmicutes; Bacilli; Lactobacillales; Lactobacillaceae; Lactobacillus; Lactobacillus crispatus
CAZyme ID MGYG000002348_00930
CAZy Family GH68
CAZyme Description Inulosucrase
CAZyme Property
Protein Length CGC Molecular Weight Isoelectric Point
659 73461.82 9.5617
Genome Property
Genome Assembly ID Genome Size Genome Type Country Continent
MGYG000002348 1829425 Isolate Ireland Europe
Gene Location Start: 4225;  End: 6204  Strand: +

Full Sequence      Download help

Enzyme Prediction      help

EC 2.4.1.10 2.4.1.9

CAZyme Signature Domains help

Family Start End Evalue family coverage
GH68 180 625 1.1e-138 0.9952038369304557

CDD Domains      download full data without filtering help

Cdd ID Domain E-Value qStart qEnd sStart sEnd Domain Description
pfam02435 Glyco_hydro_68 9.18e-107 181 616 1 409
Levansucrase/Invertase. This Pfam family consists of the glycosyl hydrolase 68 family, including several bacterial levansucrase enzymes, and invertase from zymomonas.
cd08997 GH68 6.11e-105 236 615 1 353
Glycosyl hydrolase family 68, includes levansucrase, beta-fructofuranosidase and inulosucrase. Glycosyl hydrolase family 68 (GH68) consists of frucosyltransferases (FTFs) that include levansucrase (EC 2.4.1.10), beta-fructofuranosidase (EC 3.2.1.26) and inulosucrase (EC 2.4.1.9), all of which use sucrose as their preferential donor substrate. Levansucrase, also known as beta-D-fructofuranosyl transferase, catalyzes the transfer of the sucrose fructosyl moiety to a growing levan chain. Similarly, inulosucrase catalyzes long inulin-type of fructans, and beta-fructofuranosidases create fructooligosaccharides (FOS). However, in the absence of high fructan/sucrose ratio, some GH68 enzymes can also use fructan as donor substrate. GH68 retaining enzymes (i.e. they retain the configuration at anomeric carbon atom of the substrate) catalyze hydrolysis in two steps involving a covalent glycosyl enzyme intermediate: an aspartate located close to the N-terminus acts as the catalytic nucleophile and a glutamate acts as the general acid/base; a conserved aspartate residue in the Arg-Asp-Pro (RDP) motif stabilizes the transition state. A common structural feature of all these enzymes is a 5-bladed beta-propeller domain, similar to GH43, that contains the catalytic acid and catalytic base. A long V-shaped groove, partially enclosed at one end, forms a single extended substrate-binding surface across the face of the propeller. Biotechnological applications of these enzymes include use of inulin in inexpensive production of rich fructose syrups as well as use of FOS as health-promoting pre-biotics.
cd08979 GH_J 1.85e-19 237 605 1 290
Glycosyl hydrolase families 32 and 68, which form the clan GH-J. This glycosyl hydrolase family clan J (according to carbohydrate-active enzymes database (CAZY)) includes family 32 (GH32) and 68 (GH68). GH32 enzymes include invertase (EC 3.2.1.26) and other other fructofuranosidases such as inulinase (EC 3.2.1.7), exo-inulinase (EC 3.2.1.80), levanase (EC 3.2.1.65), and transfructosidases such sucrose:sucrose 1-fructosyltransferase (EC 2.4.1.99), fructan:fructan 1-fructosyltransferase (EC 2.4.1.100), sucrose:fructan 6-fructosyltransferase (EC 2.4.1.10), fructan:fructan 6G-fructosyltransferase (EC 2.4.1.243) and levan fructosyltransferases (EC 2.4.1.-). The GH68 family consists of frucosyltransferases (FTFs) that include levansucrase (EC 2.4.1.10, also known as beta-D-fructofuranosyl transferase), beta-fructofuranosidase (EC 3.2.1.26) and inulosucrase (EC 2.4.1.9). GH32 and GH68 family enzymes are retaining enzymes (i.e. they retain the configuration at anomeric carbon atom of the substrate) and catalyze hydrolysis in two steps involving a covalent glycosyl enzyme intermediate: an aspartate located close to the N-terminus acts as the catalytic nucleophile and a glutamate acts as the general acid/base; a conserved aspartate residue in the Arg-Asp-Pro (RDP) motif stabilizes the transition state. A common structural feature of all these enzymes is a 5-bladed beta-propeller domain, similar to GH43, that contains the catalytic acid and catalytic base. A long V-shaped groove, partially enclosed at one end, forms a single extended substrate-binding surface across the face of the propeller.
NF033609 MSCRAMM_ClfA 0.005 25 140 101 197
MSCRAMM family adhesin clumping factor ClfA. Clumping factor A is an MSCRAMM (Microbial Surface Components Recognizing Adhesive Matrix Molecules). It is heavily studied in Staphylococcus aureus both for its biological role in adhesion and for its potential for vaccination. Features of the sequence, but also of other MSCRAMM adhesins, include a long run of Ser-Asp dipeptide repeats and a C-terminal cell wall anchoring LPXTG motif.

CAZyme Hits      help

Hit ID E-Value Query Start Query End Hit Start Hit End
CBL51188.1 0.0 1 659 1 659
QLL74715.1 0.0 1 659 1 659
QLK32445.1 0.0 1 659 1 659
QGS04876.1 0.0 1 659 1 659
QWW28765.1 0.0 1 659 1 655

PDB Hits      download full data without filtering help

Hit ID E-Value Query Start Query End Hit Start Hit End Description
2YFR_A 1.91e-202 131 637 15 530
Crystalstructure of inulosucrase from Lactobacillus johnsonii NCC533 [Lactobacillus johnsonii],2YFT_A Crystal structure of inulosucrase from Lactobacillus johnsonii NCC533 in complex with 1-kestose [Lactobacillus johnsonii]
2YFS_A 1.09e-201 131 637 15 530
Crystalstructure of inulosucrase from Lactobacillus johnsonii NCC533 in complex with sucrose [Lactobacillus johnsonii]
3OM6_A 1.02e-81 204 615 34 440
ChainA, Levansucrase [Priestia megaterium],3OM6_B Chain B, Levansucrase [Priestia megaterium],3OM6_C Chain C, Levansucrase [Priestia megaterium],3OM6_D Chain D, Levansucrase [Priestia megaterium]
3OM7_A 1.43e-81 204 615 34 440
ChainA, Levansucrase [Priestia megaterium],3OM7_B Chain B, Levansucrase [Priestia megaterium],3OM7_C Chain C, Levansucrase [Priestia megaterium],3OM7_D Chain D, Levansucrase [Priestia megaterium]
3OM4_A 2.80e-81 204 615 34 440
ChainA, Levansucrase [Priestia megaterium],3OM4_B Chain B, Levansucrase [Priestia megaterium],3OM4_C Chain C, Levansucrase [Priestia megaterium],3OM4_D Chain D, Levansucrase [Priestia megaterium]

Swiss-Prot Hits      download full data without filtering help

Hit ID E-Value Query Start Query End Hit Start Hit End Description
D3WYV9 4.04e-199 132 637 164 667
Inulosucrase OS=Lactobacillus gasseri OX=1596 GN=inuGB PE=1 SV=1
Q74K42 1.79e-198 131 637 158 673
Inulosucrase OS=Lactobacillus johnsonii (strain CNCM I-12250 / La1 / NCC 533) OX=257314 GN=inuJ PE=1 SV=1
P11701 6.56e-181 142 649 151 659
Levansucrase OS=Streptococcus mutans serotype c (strain ATCC 700610 / UA159) OX=210007 GN=ftf PE=3 SV=2
D3WYW0 5.84e-175 123 637 135 654
Levansucrase OS=Lactobacillus gasseri OX=1596 GN=levG PE=1 SV=1
Q70XJ9 3.52e-162 152 659 227 743
Levansucrase OS=Fructilactobacillus sanfranciscensis OX=1625 GN=levS PE=1 SV=1

SignalP and Lipop Annotations help

This protein is predicted as SP

Other SP_Sec_SPI LIPO_Sec_SPII TAT_Tat_SPI TATLIP_Sec_SPII PILIN_Sec_SPIII
0.000277 0.999001 0.000220 0.000177 0.000164 0.000141

TMHMM  Annotations      help

There is no transmembrane helices in MGYG000002348_00930.