Species | Puccinia triticina | |||||||||||
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Lineage | Basidiomycota; Pucciniomycetes; ; Pucciniaceae; Puccinia; Puccinia triticina | |||||||||||
CAZyme ID | PTTG_28970-t43_1-p1 | |||||||||||
CAZy Family | GT71 | |||||||||||
CAZyme Description | hypothetical protein | |||||||||||
CAZyme Property |
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Genome Property |
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Gene Location |
EC | 3.2.1.113:6 |
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Family | Start | End | Evalue | family coverage |
---|---|---|---|---|
GH47 | 101 | 537 | 1.3e-136 | 0.9910313901345291 |
Cdd ID | Domain | E-Value | qStart | qEnd | sStart | sEnd | Domain Description |
---|---|---|---|---|---|---|---|
396217 | Glyco_hydro_47 | 9.68e-145 | 101 | 536 | 3 | 451 | Glycosyl hydrolase family 47. Members of this family are alpha-mannosidases that catalyze the hydrolysis of the terminal 1,2-linked alpha-D-mannose residues in the oligo-mannose oligosaccharide Man(9)(GlcNAc)(2). |
240427 | PTZ00470 | 2.33e-71 | 93 | 542 | 73 | 522 | glycoside hydrolase family 47 protein; Provisional |
240122 | PA_subtilisin_1 | 2.40e-07 | 810 | 904 | 3 | 93 | PA_subtilisin_1: Protease-associated domain containing subtilisin-like proteases, subgroup 1. A subgroup of PA domain-containing subtilisin-like proteases. The significance of the PA domain to many of the proteins in which it is inserted is undetermined. It may be a protein-protein interaction domain. At peptidase active sites, the PA domain may participate in substrate binding and/or promoting conformational changes, which influence the stability and accessibility of the site to substrate. Proteins into which the PA domain is inserted include the following subtilisin-like proteases: i) melon cucumisin, ii) Arabidopsis thaliana Ara12, iii) Alnus glutinosa ag12, iv) members of the tomato P69 family, and v) tomato LeSBT2. However, these proteins belong to other subtilisin-like subgroups. Relatively little is known about proteins in this subgroup. |
238300 | PA | 5.27e-06 | 821 | 914 | 10 | 98 | PA: Protease-associated (PA) domain. The PA domain is an insert domain in a diverse fraction of proteases. The significance of the PA domain to many of the proteins in which it is inserted is undetermined. It may be a protein-protein interaction domain. At peptidase active sites, the PA domain may participate in substrate binding and/or promoting conformational changes, which influence the stability and accessibility of the site to substrate. Proteins into which the PA domain is inserted include the following: i) various signal peptide peptidases including, hSPPL2a and 2b which catalyze the intramembrane proteolysis of tumor necrosis factor alpha, ii) various proteins containing a C3H2C3 RING finger including, Arabidopsis ReMembR-H2 protein and various E3 ubiquitin ligases such as human GRAIL (gene related to anergy in lymphocytes), iii) EDEM3 (ER-degradation-enhancing mannosidase-like 3 protein), iv) various plant vacuolar sorting receptors such as Pisum sativum BP-80, v) glutamate carboxypeptidase II (GCPII), vi) yeast aminopeptidase Y, vii) Vibrio metschnikovii VapT, a sodium dodecyl sulfate (SDS) resistant extracellular alkaline serine protease, viii) lactocepin (a cell envelope-associated protease from Lactobacillus paracasei subsp. paracasei NCDO 151), ix) various subtilisin-like proteases such as melon Cucumisin, and x) human TfR (transferrin receptor) 1 and 2. |
240117 | PA_1 | 6.98e-05 | 835 | 903 | 13 | 93 | PA_1: Protease-associated (PA) domain subgroup 1. A subgroup of PA-domain containing proteins. Proteins in this subgroup contain a RING-finger (Really Interesting New Gene) domain C-terminal to this PA domain. The PA domain is an insert domain in a diverse fraction of proteases. The significance of the PA domain to many of the proteins in which it is inserted is undetermined. It may be a protein-protein interaction domain. At peptidase active sites, the PA domain may participate in substrate binding and/or promoting conformational changes, which influence the stability and accessibility of the site to substrate. Proteins in this group contain a C-terminal RING-finger domain. Proteins into which the PA domain is inserted include the following: i) various signal peptide peptidases: such as hSPPL2a and 2b, ii) various E3 ubiquitin ligases similar to human GRAIL (gene related to anergy in lymphocytes) protein, iii) various proteins containing a RING finger motif such as Arabidopsis ReMembR-H2 protein, iv) EDEM3 (ER-degradation-enhancing mannosidase-like 3 protein), v) various plant vacuolar sorting receptors such as Pisum sativum BP-80, vi) prostate-specific membrane antigen (PSMA), vii) yeast aminopeptidase Y viii) Vibrio metschnikovii VapT, a sodium dodecyl sulfate (SDS) resistant extracellular alkaline serine protease, ix) various subtilisin-like proteases such as Cucumisin from the juice of melon fruits, and x) human TfR (transferrin receptor) 1 and human TfR2. The proteins listed above belong to other subgroups; relatively little is known about proteins in this subgroup. |
Hit ID | E-Value | Query Start | Query End | Hit Start | Hit End |
---|---|---|---|---|---|
1.69e-200 | 88 | 906 | 48 | 787 | |
1.52e-196 | 88 | 906 | 48 | 787 | |
1.68e-189 | 85 | 918 | 35 | 870 | |
3.27e-185 | 88 | 921 | 47 | 851 | |
5.44e-184 | 85 | 653 | 35 | 594 |
Hit ID | E-Value | Query Start | Query End | Hit Start | Hit End | Description |
---|---|---|---|---|---|---|
2.12e-49 | 96 | 536 | 17 | 433 | Structure of The GH47 processing alpha-1,2-mannosidase from Caulobacter strain K31 [Caulobacter sp. K31],4AYP_A Structure of The GH47 processing alpha-1,2-mannosidase from Caulobacter strain K31 in complex with thiomannobioside [Caulobacter sp. K31],4AYQ_A Structure of The GH47 processing alpha-1,2-mannosidase from Caulobacter strain K31 in complex with mannoimidazole [Caulobacter sp. K31],4AYR_A Structure of The GH47 processing alpha-1,2-mannosidase from Caulobacter strain K31 in complex with noeuromycin [Caulobacter sp. K31],5MEH_A Crystal structure of alpha-1,2-mannosidase from Caulobacter K31 strain in complex with 1-deoxymannojirimycin [Caulobacter sp. K31],5NE5_A Crystal structure of family 47 alpha-1,2-mannosidase from Caulobacter K31 strain in complex with kifunensine [Caulobacter sp. K31] |
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4.52e-41 | 91 | 538 | 21 | 467 | Structure of mouse Golgi alpha-1,2-mannosidase IA and Man9GlcNAc2-PA complex [Mus musculus],5KKB_B Structure of mouse Golgi alpha-1,2-mannosidase IA and Man9GlcNAc2-PA complex [Mus musculus] |
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5.32e-41 | 91 | 538 | 19 | 465 | Structure of mouse Golgi alpha-1,2-mannosidase IA reveals the molecular basis for substrate specificity among Class I enzymes (family 47 glycosidases) [Mus musculus] |
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1.08e-38 | 91 | 554 | 4 | 509 | Crystal Structure Of Class I Alpha-1,2-mannosidase From Saccharomyces Cerevisiae At 1.54 Angstrom Resolution [Saccharomyces cerevisiae] |
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1.79e-38 | 96 | 538 | 9 | 451 | Crystal structure of the class I human endoplasmic reticulum 1,2-alpha-mannosidase and Man9GlcNAc2-PA complex [Homo sapiens] |
Hit ID | E-Value | Query Start | Query End | Hit Start | Hit End | Description |
---|---|---|---|---|---|---|
4.38e-150 | 64 | 567 | 7 | 506 | ER degradation-enhancing alpha-mannosidase-like protein 1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) OX=284812 GN=mnl1 PE=3 SV=2 |
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2.40e-138 | 89 | 540 | 127 | 588 | ER degradation-enhancing alpha-mannosidase-like protein 1 OS=Homo sapiens OX=9606 GN=EDEM1 PE=1 SV=1 |
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2.90e-138 | 89 | 538 | 122 | 581 | ER degradation-enhancing alpha-mannosidase-like protein 1 OS=Mus musculus OX=10090 GN=Edem1 PE=1 SV=1 |
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5.04e-120 | 91 | 538 | 39 | 473 | Alpha-mannosidase I MNS4 OS=Arabidopsis thaliana OX=3702 GN=MNS4 PE=1 SV=1 |
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4.65e-119 | 88 | 565 | 33 | 514 | Alpha-mannosidase I MNS5 OS=Arabidopsis thaliana OX=3702 GN=MNS5 PE=1 SV=1 |
Other | SP_Sec_SPI | CS Position |
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0.999968 | 0.000079 |
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