Species | Emergomyces pasteurianus | |||||||||||
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Lineage | Ascomycota; Eurotiomycetes; ; Ajellomycetaceae; Emergomyces; Emergomyces pasteurianus | |||||||||||
CAZyme ID | OJD12350.1 | |||||||||||
CAZy Family | AA9 | |||||||||||
CAZyme Description | unspecified product | |||||||||||
CAZyme Property |
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Genome Property |
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Gene Location |
Family | Start | End | Evalue | family coverage |
---|---|---|---|---|
GH55 | 171 | 925 | 3.7e-253 | 0.9743243243243244 |
Cdd ID | Domain | E-Value | qStart | qEnd | sStart | sEnd | Domain Description |
---|---|---|---|---|---|---|---|
176558 | PI-PLCXDc_like_2 | 9.67e-106 | 1138 | 1439 | 3 | 300 | Catalytic domain of uncharacterized hypothetical proteins similar to eukaryotic phosphatidylinositol-specific phospholipase C, X domain containing proteins. This subfamily corresponds to the catalytic domain present in a group of uncharacterized hypothetical proteins found in bacteria and fungi, which are similar to eukaryotic phosphatidylinositol-specific phospholipase C, X domain containing proteins (PI-PLCXD). The typical eukaryotic phosphoinositide-specific phospholipase C (PI-PLC, EC 3.1.4.11) has a multidomain organization that consists of a PLC catalytic core domain, and various regulatory domains. The catalytic core domain is assembled from two highly conserved X- and Y-regions split by a divergent linker sequence. In contrast, eukaryotic PI-PLCXDs contain a single TIM-barrel type catalytic domain, X domain, and are more closely related to bacterial PI-PLCs, which participate in Ca2+-independent PI metabolism, hydrolyzing the membrane lipid phosphatidylinositol (PI) to produce phosphorylated myo-inositol and diacylglycerol (DAG). Although the biological function of eukaryotic PI-PLCXDs still remains unclear, it may distinct from that of typical eukaryotic PI-PLCs. |
403800 | Pectate_lyase_3 | 2.19e-83 | 200 | 431 | 1 | 213 | Pectate lyase superfamily protein. This family of proteins possesses a beta helical structure like Pectate lyase. This family is most closely related to glycosyl hydrolase family 28. |
176529 | PI-PLCXDc_like | 1.19e-46 | 1138 | 1439 | 3 | 288 | Catalytic domain of phosphatidylinositol-specific phospholipase C X domain containing and similar proteins. This family corresponds to the catalytic domain present in phosphatidylinositol-specific phospholipase C X domain containing proteins (PI-PLCXD) which are bacterial phosphatidylinositol-specific phospholipase C (PI-PLC, EC 4.6.1.13) sequence homologs mainly found in eukaryota. The typical eukaryotic phosphoinositide-specific phospholipase C (PI-PLC, EC 3.1.4.11) have a multidomain organization that consists of a PLC catalytic core domain, and various regulatory domains. The catalytic core domain is assembled from two highly conserved X- and Y-regions split by a divergent linker sequence. In contrast, eukaryotic PI-PLCXDs and their bacterial homologs contain a single TIM-barrel type catalytic domain, X domain, which is more closely related to that of bacterial PI-PLCs. Although the biological function of eukaryotic PI-PLCXDs still remains unclear, it may be distinct from that of typical eukaryotic PI-PLCs. |
176500 | PI-PLCc_bacteria_like | 1.44e-29 | 1138 | 1418 | 3 | 262 | Catalytic domain of bacterial phosphatidylinositol-specific phospholipase C and similar proteins. This subfamily corresponds to the catalytic domain present in bacterial phosphatidylinositol-specific phospholipase C (PI-PLC, EC 4.6.1.13) and their sequence homologs found in eukaryota. Bacterial PI-PLCs participate in Ca2+-independent PI metabolism, hydrolyzing the membrane lipid phosphatidylinositol (PI) to produce phosphorylated myo-inositol and diacylglycerol (DAG). Although their precise physiological function remains unclear, bacterial PI-PLCs may function as virulence factors in some pathogenic bacteria. Bacterial PI-PLCs contain a single TIM-barrel type catalytic domain. Its catalytic mechanism is based on general base and acid catalysis utilizing two well conserved histidines, and consists of two steps, a phosphotransfer and a phosphodiesterase reaction. Eukaryotic homologs in this family are named as phosphatidylinositol-specific phospholipase C X domain containing proteins (PI-PLCXD). They are distinct from the typical eukaryotic phosphoinositide-specific phospholipases C (PI-PLC, EC 3.1.4.11), which have a multidomain organization that consists of a PLC catalytic core domain, and various regulatory domains. The catalytic core domain is assembled from two highly conserved X- and Y-regions split by a divergent linker sequence. In contrast, eukaryotic PI-PLCXDs contain a single TIM-barrel type catalytic domain, X domain, which is closely related to that of bacterial PI-PLCs. Although the biological function of eukaryotic PI-PLCXDs still remains unclear, it may be distinct from that of typical eukaryotic PI-PLCs. This family also includes a distinctly different type of eukaryotic PLC, glycosylphosphatidylinositol-specific phospholipase C (GPI-PLC), an integral membrane protein characterized in the protozoan parasite Trypanosoma brucei. T. brucei GPI-PLC hydrolyzes the GPI-anchor on the variant specific glycoprotein (VSG), releasing dimyristyl glycerol (DMG), which may facilitate the evasion of the protozoan to the host's immune system. It does not require Ca2+ for its activity and is more closely related to bacterial PI-PLCs, but not mammalian PI-PLCs. |
176557 | PI-PLCXDc_like_1 | 1.79e-09 | 1149 | 1264 | 14 | 119 | Catalytic domain of uncharacterized hypothetical proteins similar to eukaryotic phosphatidylinositol-specific phospholipase C, X domain containing proteins. This subfamily corresponds to the catalytic domain present in a group of uncharacterized hypothetical proteins found in bacteria and fungi, which are similar to eukaryotic phosphatidylinositol-specific phospholipase C, X domain containing proteins (PI-PLCXD). The typical eukaryotic phosphoinositide-specific phospholipase C (PI-PLC, EC 3.1.4.11) has a multidomain organization that consists of a PLC catalytic core domain, and various regulatory domains. The catalytic core domain is assembled from two highly conserved X- and Y-regions split by a divergent linker sequence. In contrast, eukaryotic PI-PLCXDs contain a single TIM-barrel type catalytic domain, X domain, and are more closely related to bacterial PI-PLCs, which participate in Ca2+-independent PI metabolism, hydrolyzing the membrane lipid phosphatidylinositol (PI) to produce phosphorylated myo-inositol and diacylglycerol (DAG). Although the biological function of eukaryotic PI-PLCXDs still remains unclear, it may distinct from that of typical eukaryotic PI-PLCs. |
Hit ID | E-Value | Query Start | Query End | Hit Start | Hit End |
---|---|---|---|---|---|
0.0 | 1 | 1497 | 1 | 1485 | |
0.0 | 348 | 1497 | 1 | 1146 | |
0.0 | 61 | 1455 | 63 | 1431 | |
0.0 | 63 | 943 | 62 | 932 | |
0.0 | 63 | 943 | 62 | 932 |
Hit ID | E-Value | Query Start | Query End | Hit Start | Hit End | Description |
---|---|---|---|---|---|---|
1.23e-172 | 178 | 925 | 6 | 742 | Chain A, Beta-1,3-glucanase [Thermochaetoides thermophila],5M60_A Chain A, Beta-1,3-glucanase [Thermochaetoides thermophila] |
|
2.03e-160 | 178 | 910 | 26 | 728 | Chain A, Glucan 1,3-beta-glucosidase [Phanerodontia chrysosporium],3EQN_B Chain B, Glucan 1,3-beta-glucosidase [Phanerodontia chrysosporium],3EQO_A Chain A, Glucan 1,3-beta-glucosidase [Phanerodontia chrysosporium],3EQO_B Chain B, Glucan 1,3-beta-glucosidase [Phanerodontia chrysosporium] |
Hit ID | E-Value | Query Start | Query End | Hit Start | Hit End | Description |
---|---|---|---|---|---|---|
5.25e-167 | 169 | 916 | 34 | 852 | Probable glucan endo-1,3-beta-glucosidase ARB_02077 OS=Arthroderma benhamiae (strain ATCC MYA-4681 / CBS 112371) OX=663331 GN=ARB_02077 PE=1 SV=1 |
|
8.60e-149 | 178 | 928 | 48 | 776 | Glucan 1,3-beta-glucosidase OS=Cochliobolus carbonum OX=5017 GN=EXG1 PE=1 SV=1 |
|
3.97e-50 | 171 | 889 | 30 | 708 | Glucan endo-1,3-beta-glucosidase BGN13.1 OS=Trichoderma harzianum OX=5544 GN=bgn13.1 PE=1 SV=1 |
Other | SP_Sec_SPI | CS Position |
---|---|---|
0.162883 | 0.837077 | CS pos: 26-27. Pr: 0.6293 |
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