Eutypa lata: UCREL1_9083
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Entry
UCREL1_9083 CDS
T03103
Name
(GenBank) putative triosephosphate isomerase protein
KO
K01803
triosephosphate isomerase (TIM) [EC:
5.3.1.1
]
Organism
ela
Eutypa lata
Pathway
ela00010
Glycolysis / Gluconeogenesis
ela00051
Fructose and mannose metabolism
ela00562
Inositol phosphate metabolism
ela00710
Carbon fixation by Calvin cycle
ela01100
Metabolic pathways
ela01110
Biosynthesis of secondary metabolites
ela01200
Carbon metabolism
ela01230
Biosynthesis of amino acids
Module
ela_M00001
Glycolysis (Embden-Meyerhof pathway), glucose => pyruvate
ela_M00002
Glycolysis, core module involving three-carbon compounds
ela_M00003
Gluconeogenesis, oxaloacetate => fructose-6P
Brite
KEGG Orthology (KO) [BR:
ela00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00010 Glycolysis / Gluconeogenesis
UCREL1_9083
00051 Fructose and mannose metabolism
UCREL1_9083
00562 Inositol phosphate metabolism
UCREL1_9083
09102 Energy metabolism
00710 Carbon fixation by Calvin cycle
UCREL1_9083
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:
ela04147
]
UCREL1_9083
Enzymes [BR:
ela01000
]
5. Isomerases
5.3 Intramolecular oxidoreductases
5.3.1 Interconverting aldoses and ketoses, and related compounds
5.3.1.1 triose-phosphate isomerase
UCREL1_9083
Exosome [BR:
ela04147
]
Exosomal proteins
Exosomal proteins of colorectal cancer cells
UCREL1_9083
Exosomal proteins of bladder cancer cells
UCREL1_9083
Exosomal proteins of melanoma cells
UCREL1_9083
BRITE hierarchy
SSDB
Ortholog
Paralog
GFIT
Motif
Pfam:
TIM
Motif
Other DBs
NCBI-ProteinID:
EMR63975
UniProt:
M7TBD2
LinkDB
All DBs
Position
Unknown
AA seq
299 aa
AA seq
DB search
MAPPITPPPRRRIVGVSTKMYFSYSQTHSYIASVLEHLSLTSSPPSQTPALPSSLPSPSS
LPTNIDIFIVPDHISLVSSIAQLKHTPILPGAQDSHHEDRGAYTGFTSPAVLAEVGCRIV
ELGHAERRRLLGETDTDAASKAAAAVRNGMVPLVCIGERTHNSFSSSTSGVEGKDLGAEN
ENEMIATAIAEVQPQVEAVLSAIPDDADIILAYEPVWAIGAPAPAAAEHVVGVVRGIREL
DCVRRRGDGATRTRILYGGSAGPGLFAKLKDGGIDGLFLGRFAHDPEQFVRTIREVAEA
NT seq
900 nt
NT seq
+upstream
nt +downstream
nt
atggcacctcccattaccccgccaccacggcgcagaatcgtcggcgtatccaccaaaatg
tacttctcctattcgcaaacccattcctacatcgcctcggtactcgagcacctctcacta
acatcatcacccccttctcaaacccccgctctcccctcatcgttaccatcaccatcctcc
ctccctaccaacatcgacatatttatagtccccgaccacatcagcctcgtctcttccatc
gcacaactaaagcacacccccatcctccccggcgcccaggactcccaccatgaagatcgc
ggcgcctacacgggtttcacctcccccgcggtcctcgccgaggtcgggtgccgcatcgtc
gaactcgggcacgcggagcgccgacgcctcctaggcgagactgacaccgatgcggcaagc
aaggcagctgctgccgtgaggaacgggatggtacctttggtgtgtattggggagcgcacg
cataactccttttcatcatcgacttccggagtcgaggggaaagacttaggggcagaaaat
gaaaatgagatgatcgcaacagctatcgcagaggtccaaccgcaagtcgaggcggtactc
tcggcgatcccagacgacgccgacatcatcctcgcgtacgagcccgtgtgggcgattggg
gcacccgcgccggcggccgcggagcacgtcgttggcgtggtgaggggcattcgggagctg
gattgcgttaggaggcgcggggacggcgctacgaggacgcggattttgtatggtgggagt
gcgggaccgggtctatttgcgaaactgaaggacggtgggattgatggcttgtttttgggt
aggtttgcgcatgatccggaacagtttgtgaggactattagggaggttgctgaagcgtga
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