Basic Information | |
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Species | Aquilegia coerulea |
Cazyme ID | Aquca_002_01365.2 |
Family | GT4 |
Protein Properties | Length: 824 Molecular Weight: 94074.5 Isoelectric Point: 7.6168 |
Chromosome | Chromosome/Scaffold: 2 Start: 9805072 End: 9810320 |
Description | sucrose synthase 6 |
View CDS |
External Links |
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CAZyDB |
Signature Domain Download full data set without filtering | |||
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Family | Start | End | Evalue |
GT4 | 555 | 725 | 0 |
DRKKPIIFSMARLDTVKNITGLTEWYGKNKRLRNLVNLVVVAGFFDPSKSKDREEIAEIKKMHSLIEKYQLKGQIRWIAAQNDRNRNGELYRCIADTKGA FVQPALYEAFGLTVIEAMNCGLPTFATNQGGPAEIIVDGVSGFHVDPNNGDEASNKIADFFEKCKEDPEHW |
Full Sequence |
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Protein Sequence Length: 824 Download |
MPEALRQSRY HMKRCFTRFV AKGKWLMKRK DIMEELERSI EDKMERTKVL ESVLGYILTK 60 TQEAAVVPPY IAFSVRPNPG FWEFVKVCAD DLVVEGITAT EYLKFKETIY DEKWAKDDNA 120 LEVDFGAFDF SLPRLTLSSS IGNGVDYVSK FMSSKLRGDS ESAKALLDYL LALNHQGESL 180 MINERLNSVD KLQAALIVAE DYANSLPKDT PYHNFELKFM EWGLDKGWGD VAETVKETMR 240 SLSEVLQAPD PLNVEKFFSR VPTTFNIVIF SPHGYFGQAD VLGLPDTGGQ VVYILDQVRA 300 MEEELLFRIK KQGLGVKPQI LVVTRLIPDA RGTKCNQELE SIFNTKHSHI LRVPFRTEKG 360 VLRQWVSRFD IYPYLERFTQ DATAKILDHM DGRPDLVIGN YTDGNLVASL MASRLGITQG 420 TIAHALEKTK YEDSDAKWKE LDPKYHFSCQ FTADIISMNT TDFIITSTYQ EIAGNKERPG 480 QYESHNAFTL PGLSRVVSGI DVFDPKFNIA APGADQTVYF PYTQKQKRLT AFHPAIEELL 540 HNKVDNNEHM GFLADRKKPI IFSMARLDTV KNITGLTEWY GKNKRLRNLV NLVVVAGFFD 600 PSKSKDREEI AEIKKMHSLI EKYQLKGQIR WIAAQNDRNR NGELYRCIAD TKGAFVQPAL 660 YEAFGLTVIE AMNCGLPTFA TNQGGPAEII VDGVSGFHVD PNNGDEASNK IADFFEKCKE 720 DPEHWNKVST EGLRRIYECY TWKIYADKVL NMGSIYSFWR QLYKDQKQAK QRYIQTFYNL 780 QFRNLANNVP IPSQETPEQS PMAPLKPKPT QRRTQSRLQR LFG* |
Functional Domains Download unfiltered results here | ||||||||
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Cdd ID | Domain | E-Value | Start | End | Length | Domain Description | ||
TIGR02472 | sucr_P_syn_N | 1.0e-55 | 267 | 752 | 497 | + sucrose-phosphate synthase, putative, glycosyltransferase domain. This family consists of the N-terminal regions, or in some cases the entirety, of bacterial proteins closely related to plant sucrose-phosphate synthases (SPS). The C-terminal domain (TIGR02471), found with most members of this family, resembles both bona fide plant sucrose-phosphate phosphatases (SPP) and the SPP-like domain of plant SPS. At least two members of this family lack the SPP-like domain, which may have binding or regulatory rather than enzymatic activity by analogy to plant SPS. This enzyme produces sucrose 6-phosphate and UDP from UDP-glucose and D-fructose 6-phosphate, and may be encoded near the gene for fructokinase. | ||
cd03800 | GT1_Sucrose_synthase | 7.0e-112 | 266 | 750 | 485 | + This family is most closely related to the GT1 family of glycosyltransferases. The sucrose-phosphate synthases in this family may be unique to plants and photosynthetic bacteria. This enzyme catalyzes the synthesis of sucrose 6-phosphate from fructose 6-phosphate and uridine 5'-diphosphate-glucose, a key regulatory step of sucrose metabolism. The activity of this enzyme is regulated by phosphorylation and moderated by the concentration of various metabolites and light. | ||
PLN00142 | PLN00142 | 0 | 1 | 800 | 800 | + sucrose synthase | ||
TIGR02470 | sucr_synth | 0 | 9 | 790 | 783 | + sucrose synthase. This model represents sucrose synthase, an enzyme that, despite its name, generally uses rather produces sucrose. Sucrose plus UDP (or ADP) becomes D-fructose plus UDP-glucose (or ADP-glucose), which is then available for cell wall (or starch) biosynthesis. The enzyme is homologous to sucrose phosphate synthase, which catalyzes the penultimate step in sucrose synthesis. Sucrose synthase is found, so far, exclusively in plants and cyanobacteria [Energy metabolism, Biosynthesis and degradation of polysaccharides]. | ||
pfam00862 | Sucrose_synth | 0 | 1 | 542 | 542 | + Sucrose synthase. Sucrose synthases catalyze the synthesis of sucrose from UDP-glucose and fructose. This family includes the bulk of the sucrose synthase protein. However the carboxyl terminal region of the sucrose synthases belongs to the glycosyl transferase family pfam00534. |
Gene Ontology | |
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GO Term | Description |
GO:0005985 | sucrose metabolic process |
GO:0009058 | biosynthetic process |
Annotations - NR Download unfiltered results here | |||||||
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Source | Hit ID | E-Value | Query Start | Query End | Hit Start | Hit End | Description |
EMBL | CBI27338.1 | 0 | 1 | 814 | 17 | 837 | unnamed protein product [Vitis vinifera] |
EMBL | CBI35298.1 | 0 | 1 | 821 | 18 | 864 | unnamed protein product [Vitis vinifera] |
RefSeq | XP_002267020.1 | 0 | 1 | 803 | 17 | 817 | PREDICTED: hypothetical protein [Vitis vinifera] |
RefSeq | XP_002270861.1 | 0 | 1 | 811 | 18 | 835 | PREDICTED: hypothetical protein [Vitis vinifera] |
RefSeq | XP_002526290.1 | 0 | 1 | 820 | 17 | 847 | sucrose synthase, putative [Ricinus communis] |
Annotations - PDB Download unfiltered results here | |||||||
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Source | Hit ID | E-Value | Query Start | Query End | Hit Start | Hit End | Description |
PDB | 3s29_H | 0 | 1 | 791 | 18 | 804 | A Chain A, Characterization And Engineering Of The Bifunctional N- And O-glucosyltransferase Involved In Xenobiotic Metabolism In Plants |
PDB | 3s29_G | 0 | 1 | 791 | 18 | 804 | A Chain A, Characterization And Engineering Of The Bifunctional N- And O-glucosyltransferase Involved In Xenobiotic Metabolism In Plants |
PDB | 3s29_F | 0 | 1 | 791 | 18 | 804 | A Chain A, Characterization And Engineering Of The Bifunctional N- And O-glucosyltransferase Involved In Xenobiotic Metabolism In Plants |
PDB | 3s29_E | 0 | 1 | 791 | 18 | 804 | A Chain A, Characterization And Engineering Of The Bifunctional N- And O-glucosyltransferase Involved In Xenobiotic Metabolism In Plants |
PDB | 3s29_D | 0 | 1 | 791 | 18 | 804 | A Chain A, Characterization And Engineering Of The Bifunctional N- And O-glucosyltransferase Involved In Xenobiotic Metabolism In Plants |
EST Download unfiltered results here | ||||
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Hit | Length | Start | End | EValue |
HO794519 | 800 | 1 | 799 | 0 |
BU103683 | 782 | 16 | 797 | 0 |
CX109054 | 599 | 89 | 687 | 0 |
FG227316 | 455 | 264 | 717 | 0 |
HO410243 | 621 | 173 | 789 | 0 |
Sequence Alignments (This image is cropped. Click for full image.) |
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