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CAZyme Information: MGYG000004210_01425

You are here: Home > Sequence: MGYG000004210_01425

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
Lineage Bacteria; Firmicutes_A; Clostridia; Lachnospirales; Lachnospiraceae; V9D3004;
CAZyme ID MGYG000004210_01425
CAZy Family CBM35
CAZyme Description hypothetical protein
CAZyme Property
Protein Length CGC Molecular Weight Isoelectric Point
1237 MGYG000004210_6|CGC1 136185.96 5.1466
Genome Property
Genome Assembly ID Genome Size Genome Type Country Continent
MGYG000004210 2253787 MAG United Kingdom Europe
Gene Location Start: 60605;  End: 64318  Strand: +

Full Sequence      Download help

Enzyme Prediction      help

No EC number prediction in MGYG000004210_01425.

CAZyme Signature Domains help

Family Start End Evalue family coverage
CBM35 45 174 3.2e-22 0.9915966386554622

CDD Domains      download full data without filtering help

Cdd ID Domain E-Value qStart qEnd sStart sEnd Domain Description
cd04083 CBM35_Lmo2446-like 1.02e-29 45 174 3 125
Carbohydrate Binding Module 35 (CBM35) domains similar to Lmo2446. This family includes carbohydrate binding module 35 (CBM35) domains that are appended to several carbohydrate binding enzymes. Some CBM35 domains belonging to this family are appended to glycoside hydrolase (GH) family domains, including glycoside hydrolase family 31 (GH31), for example the CBM35 domain of Lmo2446, an uncharacterized protein from Listeria monocytogenes EGD-e. These CBM35s are non-catalytic carbohydrate binding domains that facilitate the strong binding of the GH catalytic modules with their dedicated, insoluble substrates. GH31 has a wide range of hydrolytic activities such as alpha-glucosidase, alpha-xylosidase, 6-alpha-glucosyltransferase, or alpha-1,4-glucan lyase, cleaving a terminal carbohydrate moiety from a substrate that may be a starch or a glycoprotein. Most characterized GH31 enzymes are alpha-glucosidases.
cd04082 CBM35_pectate_lyase-like 1.49e-22 43 174 1 124
Carbohydrate Binding Module family 35 (CBM35), pectate lyase-like; appended mainly to enzymes that bind mannan (Man), xylan, glucuronic acid (GlcA) and possibly glucans. This family includes carbohydrate binding module family 35 (CBM35) domains that are non-catalytic carbohydrate binding domains that are appended mainly to enzymes that bind mannan (Man), xylan, glucuronic acid (GlcA) and possibly glucans. Included in this family are CBM35s of pectate lyases, including pectate lyase 10A from Cellvibrio japonicas, these enzymes release delta-4,5-anhydrogalaturonic acid (delta4,5-GalA) from pectin, thus identifying a signature molecule for plant cell wall degradation. CBM35s are unique in that they display conserved specificity through extensive sequence similarity but divergent function through their appended catalytic modules. They are known to bind alpha-D-galactose (Gal), mannan (Man), xylan, glucuronic acid (GlcA), a beta-polymer of mannose, and possibly glucans, forming four subfamilies based on general ligand specificities (galacto, urono, manno, and gluco configurations). In contrast to most CBMs that are generally rigid proteins, CBM35 undergoes significant conformational change upon ligand binding. Some CBM35s bind their ligands in a calcium-dependent manner, especially those binding uronic acids.
cd04081 CBM35_galactosidase-like 6.96e-15 45 174 3 125
Carbohydrate Binding Module family 35 (CBM35); appended mainly to enzymes that bind alpha-D-galactose (CBM35-Gal), including glycoside hydrolase (GH) families GH27 and GH43. This family includes carbohydrate binding module family 35 (CBM35); these are non-catalytic carbohydrate binding domains that are appended mainly to enzymes that bind alpha-D-galactose (CBM35-Gal), including glycoside hydrolase (GH) families GH27 and GH43. Examples of proteins which contain CBM35s belonging to this family includes the CBM35 of an exo-beta-1,3-galactanase from Phanerochaete chrysosporium 9 (Pc1,3Gal43A) which is appended to a GH43 domain, and the CBM35 domain of two bifunctional proteins with beta-L-arabinopyranosidase/alpha-D-galactopyranosidase activities from Fusarium oxysporum 12S, Foap1 and Foap2 (Fo/AP1 and Fo/AP2), that are appended to GH27 domains. CBM35s are unique in that they display conserved specificity through extensive sequence similarity but divergent function through their appended catalytic modules. They are known to bind alpha-D-galactose (Gal), mannan (Man), xylan, glucuronic acid (GlcA), a beta-polymer of mannose, and possibly glucans, forming four subfamilies based on general ligand specificities (galacto, urono, manno, and gluco configurations). Some CBM35s bind their ligands in a calcium-dependent manner. In contrast to most CBMs that are generally rigid proteins, CBM35 undergoes significant conformational change upon ligand binding. GH43 includes beta-xylosidases and beta-xylanases, using aryl-glycosides as substrates, while family GH27 includes alpha-galactosidases, alpha-N-acetylgalactosaminidases, and isomaltodextranases.
cd04086 CBM35_mannanase-like 1.34e-13 43 156 1 105
Carbohydrate Binding Module 35 (CBM35); appended to several carbohydrate binding enzymes, including several glycoside hydrolase (GH) family 26 mannanase domains. This family includes carbohydrate binding module 35 (CBM35) domains that are appended to several carbohydrate binding enzymes, including periplasmic component of ABC-type sugar transport system involved in carbohydrate transport and metabolism, and several glycoside hydrolase (GH) domains, including GH26. These CBM6s are non-catalytic carbohydrate binding domains that facilitate the strong binding of the GH catalytic modules with their dedicated, insoluble substrates. Examples of proteins having CMB35s belonging to this family are mannanase A from Clostridium thermocellum (GH26), Man26B from Paenibacillus sp. BME-14 (GH26), and the multifunctional Cel44C-Man26A from Paenibacillus polymyxa GS01 (which has two GH domains, GH44 and GH26). GH26 mainly includes mannan endo-1,4-beta-mannosidase which hydrolyzes 1,4-beta-D-linkages in mannans, galacto-mannans, glucomannans, and galactoglucomannans, but displays little activity towards other plant cell wall polysaccharides. A few proteins belonging to this family have additional CBM3 domains; these CBM3s are not found in the CBM6-CBM35-CBM36_like superfamily.
cd02795 CBM6-CBM35-CBM36_like 1.16e-12 44 174 1 124
Carbohydrate Binding Module 6 (CBM6) and CBM35_like superfamily. Carbohydrate binding module family 6 (CBM6, family 6 CBM), also known as cellulose binding domain family VI (CBD VI), and related CBMs (CBM35 and CBM36). These are non-catalytic carbohydrate binding domains found in a range of enzymes that display activities against a diverse range of carbohydrate targets, including mannan, xylan, beta-glucans, cellulose, agarose, and arabinans. These domains facilitate the strong binding of the appended catalytic modules to their dedicated, insoluble substrates. Many of these CBMs are associated with glycoside hydrolase (GH) domains. CBM6 is an unusual CBM as it represents a chimera of two distinct binding sites with different modes of binding: binding site I within the loop regions and binding site II on the concave face of the beta-sandwich fold. CBM36s are calcium-dependent xylan binding domains. CBM35s display conserved specificity through extensive sequence similarity, but divergent function through their appended catalytic modules. This alignment model also contains the C-terminal domains of bacterial insecticidal toxins, where they may be involved in determining insect specificity through carbohydrate binding functionality.

CAZyme Hits      help

Hit ID E-Value Query Start Query End Hit Start Hit End
ANY70025.1 0.0 35 1086 268 1315
BAM48288.1 0.0 35 1087 7 1058
ANQ52026.2 1.66e-25 688 895 1682 1877
QGQ98362.1 2.07e-24 662 895 465 686
QWG10634.1 2.65e-19 684 896 446 645

PDB Hits      download full data without filtering help

Hit ID E-Value Query Start Query End Hit Start Hit End Description
2VZP_A 3.46e-11 43 174 4 127
AtomicResolution Structure of the C-terminal CBM35 from Amycolatopsis orientalis exo-chitosanase CsxA [Amycolatopsis orientalis],2VZP_B Atomic Resolution Structure of the C-terminal CBM35 from Amycolatopsis orientalis exo-chitosanase CsxA [Amycolatopsis orientalis],2VZQ_A C-terminal CBM35 from Amycolatopsis orientalis exo-chitosanase CsxA in complex with digalacturonic acid [Amycolatopsis orientalis],2VZQ_B C-terminal CBM35 from Amycolatopsis orientalis exo-chitosanase CsxA in complex with digalacturonic acid [Amycolatopsis orientalis],2VZR_A C-terminal CBM35 from Amycolatopsis orientalis exo-chitosanase CsxA in complex with glucuronic acid [Amycolatopsis orientalis],2VZR_B C-terminal CBM35 from Amycolatopsis orientalis exo-chitosanase CsxA in complex with glucuronic acid [Amycolatopsis orientalis]
2VZO_A 6.86e-10 25 174 892 1032
Crystalstructure of Amycolatopsis orientalis exo-chitosanase CsxA [Amycolatopsis orientalis],2VZO_B Crystal structure of Amycolatopsis orientalis exo-chitosanase CsxA [Amycolatopsis orientalis]
2VZS_A 6.86e-10 25 174 892 1032
ChitosanProduct complex of Amycolatopsis orientalis exo-chitosanase CsxA [Amycolatopsis orientalis],2VZS_B Chitosan Product complex of Amycolatopsis orientalis exo-chitosanase CsxA [Amycolatopsis orientalis],2X05_A Inhibition of the exo-beta-D-glucosaminidase CsxA by a glucosamine- configured castanospermine and an amino-australine analogue [Amycolatopsis orientalis],2X05_B Inhibition of the exo-beta-D-glucosaminidase CsxA by a glucosamine- configured castanospermine and an amino-australine analogue [Amycolatopsis orientalis],2X09_A Inhibition of the exo-beta-D-glucosaminidase CsxA by a glucosamine- configured castanospermine and an amino-australine analogue [Amycolatopsis orientalis],2X09_B Inhibition of the exo-beta-D-glucosaminidase CsxA by a glucosamine- configured castanospermine and an amino-australine analogue [Amycolatopsis orientalis]
2VZT_A 6.86e-10 25 174 892 1032
Complexof Amycolatopsis orientalis exo-chitosanase CsxA E541A with PNP-beta-D-glucosamine [Amycolatopsis orientalis],2VZT_B Complex of Amycolatopsis orientalis exo-chitosanase CsxA E541A with PNP-beta-D-glucosamine [Amycolatopsis orientalis],2VZV_A Substrate Complex of Amycolatopsis orientalis exo-chitosanase CsxA E541A with chitosan [Amycolatopsis orientalis],2VZV_B Substrate Complex of Amycolatopsis orientalis exo-chitosanase CsxA E541A with chitosan [Amycolatopsis orientalis]
2VZU_A 6.86e-10 25 174 892 1032
Complexof Amycolatopsis orientalis exo-chitosanase CsxA D469A with PNP-beta-D-glucosamine [Amycolatopsis orientalis],2VZU_B Complex of Amycolatopsis orientalis exo-chitosanase CsxA D469A with PNP-beta-D-glucosamine [Amycolatopsis orientalis]

Swiss-Prot Hits      download full data without filtering help

Hit ID E-Value Query Start Query End Hit Start Hit End Description
Q56F26 3.76e-09 25 174 892 1032
Exo-beta-D-glucosaminidase OS=Amycolatopsis orientalis OX=31958 GN=csxA PE=1 SV=2

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
0.000513 0.995178 0.003676 0.000231 0.000201 0.000179

TMHMM  Annotations      download full data without filtering help

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