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CAZyme Information: KIW02769.1

You are here: Home > Sequence: KIW02769.1

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 Verruconis gallopava
Lineage Ascomycota; Dothideomycetes; ; Sympoventuriaceae; Verruconis; Verruconis gallopava
CAZyme ID KIW02769.1
CAZy Family GH16
CAZyme Description 1,3-beta-D-glucan-UDP glucosyltransferase [Source:UniProtKB/TrEMBL;Acc:A0A0D2AUE2]
CAZyme Property
Protein Length CGC Molecular Weight Isoelectric Point
1906 218540.83 8.4977
Genome Property
Genome Version/Assembly ID Genes Strain NCBI Taxon ID Non Protein Coding Genes Protein Coding Genes
FungiDB-61_VgallopavaCBS43764 9871 N/A 53 9818
Gene Location

Full Sequence      Download help

Enzyme Prediction      help

EC 2.4.1.34:56

CAZyme Signature Domains help

Family Start End Evalue family coverage
GT48 836 1615 0 0.9905277401894452

CDD Domains      download full data without filtering help

Cdd ID Domain E-Value qStart qEnd sStart sEnd Domain Description
396784 Glucan_synthase 0.0 836 1662 1 819
1,3-beta-glucan synthase component. This family consists of various 1,3-beta-glucan synthase components including Gls1, Gls2 and Gls3 from yeast. 1,3-beta-glucan synthase EC:2.4.1.34 also known as callose synthase catalyzes the formation of a beta-1,3-glucan polymer that is a major component of the fungal cell wall. The reaction catalyzed is:- UDP-glucose + {(1,3)-beta-D-glucosyl}(N) <=> UDP + {(1,3)-beta-D-glucosyl}(N+1).
405046 FKS1_dom1 1.24e-50 330 438 1 111
1,3-beta-glucan synthase subunit FKS1, domain-1. The FKS1_dom1 domain is likely to be the 'Class I' region just N-terminal to the first set of transmembrane helices that is involved in 1,3-beta-glucan synthesis itself. This family is found on proteins with family Glucan_synthase, pfam02364.
367362 Glutenin_hmw 4.32e-08 2 181 332 530
High molecular weight glutenin subunit. Members of this family include high molecular weight subunits of glutenin. This group of gluten proteins is thought to be largely responsible for the elastic properties of gluten, and hence, doughs. Indeed, glutenin high molecular weight subunits are classified as elastomeric proteins, because the glutenin network can withstand significant deformations without breaking, and return to the original conformation when the stress is removed. Elastomeric proteins differ considerably in amino acid sequence, but they are all polymers whose subunits consist of elastomeric domains, composed of repeated motifs, and non-elastic domains that mediate cross-linking between the subunits. The elastomeric domain motifs are all rich in glycine residues in addition to other hydrophobic residues. High molecular weight glutenin subunits have an extensive central elastomeric domain, flanked by two terminal non-elastic domains that form disulphide cross-links. The central elastomeric domain is characterized by the following three repeated motifs: PGQGQQ, GYYPTS[P/L]QQ, GQQ. It possesses overlapping beta-turns within and between the repeated motifs, and assumes a regular helical secondary structure with a diameter of approx. 1.9 nm and a pitch of approx. 1.5 nm.
367362 Glutenin_hmw 2.59e-07 5 178 231 401
High molecular weight glutenin subunit. Members of this family include high molecular weight subunits of glutenin. This group of gluten proteins is thought to be largely responsible for the elastic properties of gluten, and hence, doughs. Indeed, glutenin high molecular weight subunits are classified as elastomeric proteins, because the glutenin network can withstand significant deformations without breaking, and return to the original conformation when the stress is removed. Elastomeric proteins differ considerably in amino acid sequence, but they are all polymers whose subunits consist of elastomeric domains, composed of repeated motifs, and non-elastic domains that mediate cross-linking between the subunits. The elastomeric domain motifs are all rich in glycine residues in addition to other hydrophobic residues. High molecular weight glutenin subunits have an extensive central elastomeric domain, flanked by two terminal non-elastic domains that form disulphide cross-links. The central elastomeric domain is characterized by the following three repeated motifs: PGQGQQ, GYYPTS[P/L]QQ, GQQ. It possesses overlapping beta-turns within and between the repeated motifs, and assumes a regular helical secondary structure with a diameter of approx. 1.9 nm and a pitch of approx. 1.5 nm.
407550 Trnau1ap 0.003 5 62 2 54
Selenocysteine tRNA 1 associated proteins. This entry represents the C-terminal region of Selenocysteine tRNA 1 associated proteins (Trnau1ap also known as Secp43). Family members found in Eukaryotes have been shown to serve an essential role in the synthesis of selenoproteins, which have critical functions in numerous biological processes. Selenium deficiency results in a variety of diseases, including cardiac disease. Trnau1ap proteins harbor RNA recognition motifs (RRM) pfam00076 and Tyr-rich region found in the C-terminal. The Tyr-rich region (amino acids 185-225) is conserved among several mammals, including human, chimp, dog, cattle, mouse and rat. Furthermore, constitutive deletion of exons corresponding to the Tyr-rich region in mouse resulted in embryonic lethality.

CAZyme Hits      help

Hit ID E-Value Query Start Query End Hit Start Hit End
0.0 95 1881 152 1941
0.0 1 1881 1 1889
0.0 94 1901 104 1919
0.0 95 1897 105 1900
0.0 95 1900 144 1957

PDB Hits      help

KIW02769.1 has no PDB hit.

Swiss-Prot Hits      download full data without filtering help

Hit ID E-Value Query Start Query End Hit Start Hit End Description
0.0 98 1876 95 1872
1,3-beta-glucan synthase component GSC2 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) OX=559292 GN=GSC2 PE=1 SV=2
0.0 93 1882 87 1880
1,3-beta-glucan synthase component FKS1 OS=Aspergillus niger (strain CBS 513.88 / FGSC A1513) OX=425011 GN=fksA PE=3 SV=1
0.0 179 1874 15 1763
1,3-beta-glucan synthase component FKS3 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) OX=559292 GN=FKS3 PE=1 SV=1
0.0 101 1876 85 1853
1,3-beta-glucan synthase component FKS1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) OX=559292 GN=FKS1 PE=1 SV=2
0.0 125 1862 84 1796
1,3-beta-glucan synthase component FKS1 OS=Cryptococcus neoformans var. grubii serotype A (strain H99 / ATCC 208821 / CBS 10515 / FGSC 9487) OX=235443 GN=FKS1 PE=3 SV=3

SignalP and Lipop Annotations help

This protein is predicted as OTHER

Other SP_Sec_SPI CS Position
0.999970 0.000075

TMHMM  Annotations      download full data without filtering help

Start End
484 503
524 546
561 580
587 609
649 671
703 725
1323 1345
1382 1399
1464 1486
1491 1513
1584 1606
1633 1655
1670 1692
1704 1726
1773 1792
1829 1851