Species | ||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|
Lineage | Bacteria; Firmicutes_A; Clostridia; Oscillospirales; Ruminococcaceae; Ruminococcus; | |||||||||||
CAZyme ID | MGYG000002881_00419 | |||||||||||
CAZy Family | GH5 | |||||||||||
CAZyme Description | hypothetical protein | |||||||||||
CAZyme Property |
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Genome Property |
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Gene Location | Start: 547; End: 2403 Strand: - |
Family | Start | End | Evalue | family coverage |
---|---|---|---|---|
GH5 | 57 | 438 | 2.6e-113 | 0.9967741935483871 |
Cdd ID | Domain | E-Value | qStart | qEnd | sStart | sEnd | Domain Description |
---|---|---|---|---|---|---|---|
pfam00150 | Cellulase | 1.22e-40 | 56 | 433 | 1 | 272 | Cellulase (glycosyl hydrolase family 5). |
COG2730 | BglC | 2.45e-28 | 56 | 470 | 38 | 402 | Aryl-phospho-beta-D-glucosidase BglC, GH1 family [Carbohydrate transport and metabolism]. |
cd14256 | Dockerin_I | 3.08e-07 | 548 | 605 | 1 | 55 | Type I dockerin repeat domain. Bacterial cohesin domains bind to a complementary protein domain named dockerin, and this interaction is required for the formation of the cellulosome, a cellulose-degrading complex. The cellulosome consists of scaffoldin, a noncatalytic scaffolding polypeptide, that comprises repeating cohesion modules and a single carbohydrate-binding module (CBM). Specific calcium-dependent interactions between cohesins and dockerins appear to be essential for cellulosome assembly. This subfamily represents type I dockerins, which are responsible for anchoring a variety of enzymatic domains to the complex. |
Hit ID | E-Value | Query Start | Query End | Hit Start | Hit End |
---|---|---|---|---|---|
AEV70372.1 | 4.86e-232 | 29 | 490 | 21 | 468 |
ADU21575.1 | 6.13e-227 | 1 | 516 | 1 | 497 |
QNU67298.1 | 5.42e-226 | 30 | 491 | 22 | 469 |
CAA49187.1 | 6.06e-226 | 36 | 490 | 33 | 472 |
ABN54070.1 | 6.06e-226 | 36 | 490 | 33 | 472 |
Hit ID | E-Value | Query Start | Query End | Hit Start | Hit End | Description |
---|---|---|---|---|---|---|
1ECE_A | 1.03e-62 | 47 | 453 | 5 | 345 | AcidothermusCellulolyticus Endocellulase E1 Catalytic Domain In Complex With A Cellotetraose [Acidothermus cellulolyticus],1ECE_B Acidothermus Cellulolyticus Endocellulase E1 Catalytic Domain In Complex With A Cellotetraose [Acidothermus cellulolyticus] |
1VRX_A | 2.99e-60 | 47 | 453 | 5 | 345 | ChainA, ENDOCELLULASE E1 FROM A. CELLULOLYTICUS [Acidothermus cellulolyticus],1VRX_B Chain B, ENDOCELLULASE E1 FROM A. CELLULOLYTICUS [Acidothermus cellulolyticus] |
3VVG_A | 2.68e-49 | 47 | 459 | 7 | 376 | TheCrystal Structure of Cellulase-Inhibitor Complex. [Pyrococcus horikoshii OT3],3VVG_B The Crystal Structure of Cellulase-Inhibitor Complex. [Pyrococcus horikoshii OT3],3VVG_C The Crystal Structure of Cellulase-Inhibitor Complex. [Pyrococcus horikoshii OT3],3W6L_A Contribution of disulfide bond toward thermostability in hyperthermostable endocellulase [Pyrococcus horikoshii OT3],3W6L_B Contribution of disulfide bond toward thermostability in hyperthermostable endocellulase [Pyrococcus horikoshii OT3],3W6L_C Contribution of disulfide bond toward thermostability in hyperthermostable endocellulase [Pyrococcus horikoshii OT3],4DM1_A Contribution of disulfide bond toward thermostability in hyperthermostable endocellulase [Pyrococcus horikoshii OT3],4DM1_B Contribution of disulfide bond toward thermostability in hyperthermostable endocellulase [Pyrococcus horikoshii OT3],4DM1_C Contribution of disulfide bond toward thermostability in hyperthermostable endocellulase [Pyrococcus horikoshii OT3] |
3W6M_A | 2.68e-49 | 47 | 459 | 7 | 376 | Contributionof disulfide bond toward thermostability in hyperthermostable endocellulase [Pyrococcus horikoshii OT3],3W6M_B Contribution of disulfide bond toward thermostability in hyperthermostable endocellulase [Pyrococcus horikoshii OT3],3W6M_C Contribution of disulfide bond toward thermostability in hyperthermostable endocellulase [Pyrococcus horikoshii OT3],4DM2_A Contribution of disulfide bond toward thermostability in hyperthermostable endocellulase [Pyrococcus horikoshii OT3],4DM2_B Contribution of disulfide bond toward thermostability in hyperthermostable endocellulase [Pyrococcus horikoshii OT3],4DM2_C Contribution of disulfide bond toward thermostability in hyperthermostable endocellulase [Pyrococcus horikoshii OT3] |
3AXX_A | 1.18e-48 | 34 | 459 | 29 | 409 | Functionalanalysis of hyperthermophilic endocellulase from the Archaeon Pyrococcus horikoshii [Pyrococcus horikoshii OT3],3AXX_B Functional analysis of hyperthermophilic endocellulase from the Archaeon Pyrococcus horikoshii [Pyrococcus horikoshii OT3],3AXX_C Functional analysis of hyperthermophilic endocellulase from the Archaeon Pyrococcus horikoshii [Pyrococcus horikoshii OT3] |
Hit ID | E-Value | Query Start | Query End | Hit Start | Hit End | Description |
---|---|---|---|---|---|---|
Q05332 | 1.21e-226 | 36 | 490 | 33 | 472 | Endoglucanase G OS=Acetivibrio thermocellus (strain ATCC 27405 / DSM 1237 / JCM 9322 / NBRC 103400 / NCIMB 10682 / NRRL B-4536 / VPI 7372) OX=203119 GN=celG PE=3 SV=1 |
P10474 | 1.00e-146 | 41 | 491 | 623 | 1028 | Endoglucanase/exoglucanase B OS=Caldicellulosiruptor saccharolyticus OX=44001 GN=celB PE=3 SV=1 |
P04956 | 1.39e-127 | 31 | 491 | 25 | 474 | Endoglucanase B OS=Acetivibrio thermocellus (strain ATCC 27405 / DSM 1237 / JCM 9322 / NBRC 103400 / NCIMB 10682 / NRRL B-4536 / VPI 7372) OX=203119 GN=celB PE=3 SV=1 |
P50400 | 6.72e-126 | 16 | 518 | 16 | 473 | Endoglucanase D OS=Cellulomonas fimi OX=1708 GN=cenD PE=3 SV=1 |
P23548 | 3.38e-68 | 47 | 459 | 38 | 382 | Endoglucanase OS=Paenibacillus polymyxa OX=1406 PE=3 SV=2 |
Other | SP_Sec_SPI | LIPO_Sec_SPII | TAT_Tat_SPI | TATLIP_Sec_SPII | PILIN_Sec_SPIII |
---|---|---|---|---|---|
0.004228 | 0.993353 | 0.001474 | 0.000429 | 0.000262 | 0.000230 |
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