Kinneretia aquatilis: K9V56_014940
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Entry
K9V56_014940 CDS
T09144
Symbol
glgB
Name
(GenBank) 1,4-alpha-glucan branching protein GlgB
KO
K00700
1,4-alpha-glucan branching enzyme [EC:
2.4.1.18
]
Organism
paqa
Kinneretia aquatilis
Pathway
paqa00500
Starch and sucrose metabolism
paqa01100
Metabolic pathways
paqa01110
Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:
paqa00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00500 Starch and sucrose metabolism
K9V56_014940 (glgB)
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:
paqa04147
]
K9V56_014940 (glgB)
Enzymes [BR:
paqa01000
]
2. Transferases
2.4 Glycosyltransferases
2.4.1 Hexosyltransferases
2.4.1.18 1,4-alpha-glucan branching enzyme
K9V56_014940 (glgB)
Exosome [BR:
paqa04147
]
Exosomal proteins
Exosomal proteins of other body fluids (saliva and urine)
K9V56_014940 (glgB)
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
CBM_48
Alpha-amylase_C
Alpha-amylase
GlgB_N
Malt_amylase_C
Motif
Other DBs
NCBI-ProteinID:
WIV96330
LinkDB
All DBs
Position
complement(3533115..3535016)
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AA seq
633 aa
AA seq
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MALISAQDLALLARGEHPRPQELLGAHVGRLGRKHGVRFAVWAPNASRVSVVGSFNRWDG
EADPLVKDEASGVWQGFATAARAGDLYKFEIHDRAGQLLPLKADPFARAAELRPATASIV
APALPLLKTRPRLSPERAMANARQAPVAIYEVHAASWRHGTGAFPSWDELAAQLPAYAAG
LGFTHIELMPISEHPFDGSWGYQTLGLFAPSARFGPPEGFARFVEACHAQGLGLLLDWVP
AHFPMDPHGLAQFDGTALFEYADPREGFHRDWNTAIYNFGRYEVRQFLAGNALYWMERWG
VDGLRVDAVASMLYRDYSRPAGEWLPNVDGGRENLEAISLFKRINELLGQEAPGAITVAE
ESTSFPGVSAPTYAGGLGFHYKWNMGWMNDCLRYMQEDPIHRRWHHDKLTFGLVYAFSEN
FVLPISHDEVVHGKGSMLGKMPGDAWQKFANLRAFYGFMWGHPGKKLLFMGQEFAQPSEW
NHDAELPWHLLDDAQGHHAGMQRLVRDLNLLYRREPALHRLDCEARGFEWLQAEDREQSV
LAWARHDDAEGGESRTVLVVCNFTPVPRPGYRLALPLALAAGGPWRELLNTDSAHYGGSN
LGNLDAGLQAEADGSLVLTLPPLSVLFLGQEKS
NT seq
1902 nt
NT seq
+upstream
nt +downstream
nt
atggcactgatctccgcgcaagacctggccctgctggcccgcggtgagcacccgcggccg
caggagttgctgggtgcccatgtcgggcgtctggggcgcaagcatggcgtgcgctttgcc
gtctgggcgcccaatgcgagccgggtcagcgtcgttggcagtttcaaccgctgggacggc
gaggccgatcccctggtcaaggacgaggcctcgggcgtgtggcagggctttgccaccgcc
gcgcgcgcgggcgatctctacaaattcgagattcacgaccgcgcggggcaactgctgccg
ctgaaggccgaccccttcgcgcgcgcggccgagctgcgccccgccacggccagcatcgtg
gcgccggccttgccgctgctcaagacccggccgcgcctgagcccggagcgcgcgatggcc
aatgcgcggcaggcgccggtggcgatttatgaggtccatgccgcctcctggcgccatggc
actggagccttcccgagctgggacgagctggccgcgcagctgccggcctatgccgccggt
ctgggtttcacccacatcgagctgatgcccatcagcgagcatcccttcgatggcagctgg
ggctaccagaccctgggcctgttcgcacccagcgcgcgcttcggcccgcccgagggcttt
gcccgttttgtcgaggcctgccatgcccagggtctcggcttgctgctcgattgggtgccg
gcgcatttccccatggacccgcatggcctggcgcagttcgacggcacggcgctgtttgaa
tacgccgacccgcgcgaaggcttccaccgcgactggaacaccgccatctacaacttcggc
cgctacgaggtgcgccagttcctggccggcaatgcgctctactggatggagcgctggggc
gtggacggcctgcgcgtcgatgcggtggcctccatgctttaccgcgactactcccgcccg
gcgggcgagtggctgcccaatgtggacggcgggcgcgagaacctggaggccatcagcctg
ttcaagcgcatcaacgaactgctaggccaggaggcgcccggcgccatcaccgtggccgag
gagtcgaccagttttcccggtgtgagcgcgcccacctatgccggcggcctgggctttcac
tacaaatggaatatgggctggatgaacgattgcctgcgctatatgcaggaagatcccatc
caccgccgctggcaccacgacaagctgaccttcggcttggtctatgccttcagcgagaac
tttgtgctgccgatctcgcacgacgaggtggtgcatggcaagggctccatgctgggcaag
atgcccggcgacgcctggcagaagttcgccaatctgcgcgccttctatggtttcatgtgg
ggccatccgggcaagaagctgctcttcatgggccaggagttcgcacaacccagcgagtgg
aaccatgacgccgaattgccctggcatctgctggacgatgcgcagggccaccatgccggc
atgcagcgcctggtgcgcgacctgaacctgctctaccggcgcgagccggccttgcaccgc
ctggactgcgaggcccgcggcttcgagtggctgcaggccgaggaccgcgagcagtcggtg
ctggcctgggcgcggcatgatgacgctgaagggggcgagagccgcacggtgctggtggtc
tgcaatttcacgccggtgccgcggcccggctatcgcctggcgctgccgctggcccttgcc
gcaggtggcccgtggcgcgaactgctcaacactgattccgcccactacggcggcagcaac
ctgggcaatctcgatgccggcttgcaggccgaggccgatggcagcctggtgctgaccttg
ccgccgctgtcggtcctgttcctgggtcaggagaagtcatga
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