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CAZyme Information: PV10_02979-t45_1-p1

You are here: Home > Sequence: PV10_02979-t45_1-p1

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 Exophiala mesophila
Lineage Ascomycota; Eurotiomycetes; ; Herpotrichiellaceae; Exophiala; Exophiala mesophila
CAZyme ID PV10_02979-t45_1-p1
CAZy Family GH12
CAZyme Description hypothetical protein
CAZyme Property
Protein Length CGC Molecular Weight Isoelectric Point
896 101811.70 6.9857
Genome Property
Genome Version/Assembly ID Genes Strain NCBI Taxon ID Non Protein Coding Genes Protein Coding Genes
FungiDB-61_EmesophilaCBS40295 9237 N/A 56 9181
Gene Location

Full Sequence      Download help

Enzyme Prediction      help

No EC number prediction in PV10_02979-t45_1-p1.

CAZyme Signature Domains help

Family Start End Evalue family coverage
GT2 509 723 7.3e-49 0.9695431472081218

CDD Domains      download full data without filtering help

Cdd ID Domain E-Value qStart qEnd sStart sEnd Domain Description
404513 Glyco_trans_2_3 8.52e-45 509 726 1 192
Glycosyl transferase family group 2. Members of this family of prokaryotic proteins include putative glucosyltransferases, which are involved in bacterial capsule biosynthesis.
224136 BcsA 6.88e-15 507 817 138 428
Glycosyltransferase, catalytic subunit of cellulose synthase and poly-beta-1,6-N-acetylglucosamine synthase [Cell motility].
133045 CESA_like 3.81e-09 507 616 79 180
CESA_like is the cellulose synthase superfamily. The cellulose synthase (CESA) superfamily includes a wide variety of glycosyltransferase family 2 enzymes that share the common characteristic of catalyzing the elongation of polysaccharide chains. The members include cellulose synthase catalytic subunit, chitin synthase, glucan biosynthesis protein and other families of CESA-like proteins. Cellulose synthase catalyzes the polymerization reaction of cellulose, an aggregate of unbranched polymers of beta-1,4-linked glucose residues in plants, most algae, some bacteria and fungi, and even some animals. In bacteria, algae and lower eukaryotes, there is a second unrelated type of cellulose synthase (Type II), which produces acylated cellulose, a derivative of cellulose. Chitin synthase catalyzes the incorporation of GlcNAc from substrate UDP-GlcNAc into chitin, which is a linear homopolymer of beta-(1,4)-linked GlcNAc residues and Glucan Biosynthesis protein catalyzes the elongation of beta-1,2 polyglucose chains of Glucan.
133034 Glucan_BSP_MdoH 5.02e-07 497 589 90 179
Glucan_BSP_MdoH catalyzes the elongation of beta-1,2 polyglucose chains of glucan. Periplasmic Glucan Biosynthesis protein MdoH is a glucosyltransferase that catalyzes the elongation of beta-1,2 polyglucose chains of glucan, requiring a beta-glucoside as a primer and UDP-glucose as a substrate. Glucans are composed of 5 to 10 units of glucose forming a highly branched structure, where beta-1,2-linked glucose constitutes a linear backbone to which branches are attached by beta-1,6 linkages. In Escherichia coli, glucans are located in the periplasmic space, functioning as regulator of osmolarity. It is synthesized at a maximum when cells are grown in a medium with low osmolarity. It has been shown to span the cytoplasmic membrane.
225494 MdoH 7.20e-07 497 820 235 556
Membrane glycosyltransferase [Cell wall/membrane/envelope biogenesis, Carbohydrate transport and metabolism].

CAZyme Hits      help

Hit ID E-Value Query Start Query End Hit Start Hit End
0.0 62 896 69 888
0.0 62 896 65 883
0.0 62 896 65 883
3.22e-317 62 895 68 887
1.15e-315 62 896 65 900

PDB Hits      help

PV10_02979-t45_1-p1 has no PDB hit.

Swiss-Prot Hits      help

PV10_02979-t45_1-p1 has no Swissprot hit.

SignalP and Lipop Annotations help

This protein is predicted as OTHER

Other SP_Sec_SPI CS Position
1.000049 0.000001

TMHMM  Annotations      download full data without filtering help

Start End
260 282
292 314
701 723
738 760
767 789
793 812
833 855
865 887