Species | Mucor circinelloides | |||||||||||
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Lineage | Mucoromycota; Mucoromycetes; ; Mucoraceae; Mucor; Mucor circinelloides | |||||||||||
CAZyme ID | HMPREF1544_11288-t46_1-p1 | |||||||||||
CAZy Family | GT49 | |||||||||||
CAZyme Description | hypothetical protein | |||||||||||
CAZyme Property |
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Genome Property |
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Gene Location |
EC | 2.4.1.142:10 | 2.4.1.-:1 |
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Family | Start | End | Evalue | family coverage |
---|---|---|---|---|
GT33 | 49 | 501 | 9.8e-151 | 0.9882352941176471 |
Cdd ID | Domain | E-Value | qStart | qEnd | sStart | sEnd | Domain Description |
---|---|---|---|---|---|---|---|
340843 | GT33_ALG1-like | 1.32e-169 | 42 | 503 | 1 | 411 | chitobiosyldiphosphodolichol beta-mannosyltransferase and similar proteins. This family is most closely related to the GT33 family of glycosyltransferases. The yeast gene ALG1 has been shown to function as a mannosyltransferase that catalyzes the formation of dolichol pyrophosphate (Dol-PP)-GlcNAc2Man from GDP-Man and Dol-PP-Glc-NAc2, and participates in the formation of the lipid-linked precursor oligosaccharide for N-glycosylation. In humans ALG1 has been associated with the congenital disorders of glycosylation (CDG) designated as subtype CDG-Ik. |
215155 | PLN02275 | 7.90e-157 | 41 | 468 | 1 | 371 | transferase, transferring glycosyl groups |
223515 | RfaB | 2.87e-13 | 114 | 506 | 45 | 381 | Glycosyltransferase involved in cell wall bisynthesis [Cell wall/membrane/envelope biogenesis]. |
395425 | Glycos_transf_1 | 3.21e-12 | 323 | 481 | 2 | 154 | Glycosyl transferases group 1. Mutations in this domain of PIGA lead to disease (Paroxysmal Nocturnal haemoglobinuria). Members of this family transfer activated sugars to a variety of substrates, including glycogen, Fructose-6-phosphate and lipopolysaccharides. Members of this family transfer UDP, ADP, GDP or CMP linked sugars. The eukaryotic glycogen synthases may be distant members of this family. |
340816 | Glycosyltransferase_GTB-type | 8.68e-10 | 327 | 454 | 114 | 235 | glycosyltransferase family 1 and related proteins with GTB topology. Glycosyltransferases catalyze the transfer of sugar moieties from activated donor molecules to specific acceptor molecules, forming glycosidic bonds. The acceptor molecule can be a lipid, a protein, a heterocyclic compound, or another carbohydrate residue. The structures of the formed glycoconjugates are extremely diverse, reflecting a wide range of biological functions. The members of this family share a common GTB topology, one of the two protein topologies observed for nucleotide-sugar-dependent glycosyltransferases. GTB proteins have distinct N- and C- terminal domains each containing a typical Rossmann fold. The two domains have high structural homology despite minimal sequence homology. The large cleft that separates the two domains includes the catalytic center and permits a high degree of flexibility. |
Hit ID | E-Value | Query Start | Query End | Hit Start | Hit End |
---|---|---|---|---|---|
1.89e-191 | 6 | 503 | 9 | 487 | |
3.90e-109 | 51 | 505 | 10 | 458 | |
1.39e-107 | 51 | 478 | 10 | 428 | |
1.39e-107 | 51 | 478 | 10 | 428 | |
4.16e-107 | 51 | 497 | 7 | 501 |
Hit ID | E-Value | Query Start | Query End | Hit Start | Hit End | Description |
---|---|---|---|---|---|---|
8.20e-106 | 51 | 478 | 9 | 427 | UDP-glycosyltransferase TURAN OS=Arabidopsis thaliana OX=3702 GN=TUN PE=2 SV=1 |
|
4.78e-103 | 40 | 472 | 28 | 428 | Chitobiosyldiphosphodolichol beta-mannosyltransferase OS=Mus musculus OX=10090 GN=Alg1 PE=1 SV=3 |
|
2.21e-102 | 49 | 472 | 35 | 428 | Chitobiosyldiphosphodolichol beta-mannosyltransferase OS=Pongo abelii OX=9601 GN=ALG1 PE=2 SV=1 |
|
6.20e-102 | 49 | 472 | 35 | 428 | Chitobiosyldiphosphodolichol beta-mannosyltransferase OS=Homo sapiens OX=9606 GN=ALG1 PE=1 SV=2 |
|
7.39e-88 | 49 | 495 | 4 | 455 | Chitobiosyldiphosphodolichol beta-mannosyltransferase OS=Dictyostelium discoideum OX=44689 GN=alg1 PE=2 SV=1 |
Other | SP_Sec_SPI | CS Position |
---|---|---|
1.000077 | 0.000000 |
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