Maniola jurtina (meadow brown): 123868509
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Entry
123868509 CDS
T09254
Name
(RefSeq) alanine--glyoxylate aminotransferase 2, mitochondrial
KO
K00827
alanine-glyoxylate transaminase / (R)-3-amino-2-methylpropionate-pyruvate transaminase [EC:
2.6.1.44
2.6.1.40
]
Organism
mju
Maniola jurtina (meadow brown)
Pathway
mju00250
Alanine, aspartate and glutamate metabolism
mju00260
Glycine, serine and threonine metabolism
mju00270
Cysteine and methionine metabolism
mju00280
Valine, leucine and isoleucine degradation
mju00630
Glyoxylate and dicarboxylate metabolism
mju01100
Metabolic pathways
mju01200
Carbon metabolism
mju01210
2-Oxocarboxylic acid metabolism
Brite
KEGG Orthology (KO) [BR:
mju00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00630 Glyoxylate and dicarboxylate metabolism
123868509
09105 Amino acid metabolism
00250 Alanine, aspartate and glutamate metabolism
123868509
00260 Glycine, serine and threonine metabolism
123868509
00270 Cysteine and methionine metabolism
123868509
00280 Valine, leucine and isoleucine degradation
123868509
09180 Brite Hierarchies
09181 Protein families: metabolism
01007 Amino acid related enzymes [BR:
mju01007
]
123868509
Enzymes [BR:
mju01000
]
2. Transferases
2.6 Transferring nitrogenous groups
2.6.1 Transaminases
2.6.1.40 (R)-3-amino-2-methylpropionate---pyruvate transaminase
123868509
2.6.1.44 alanine---glyoxylate transaminase
123868509
Amino acid related enzymes [BR:
mju01007
]
Aminotransferase (transaminase)
Class III
123868509
BRITE hierarchy
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Ortholog
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Gene cluster
GFIT
Motif
Pfam:
Aminotran_3
tRNA_SAD
tRNA-synt_2c
Aminotran_1_2
MRP-S27
Motif
Other DBs
NCBI-GeneID:
123868509
NCBI-ProteinID:
XP_045767010
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Position
9:2026744..2036578
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AA seq
858 aa
AA seq
DB search
MAIKVTRCWYKTLNRRYASALPKCDFTPNKYHGPSISETDSIKAEKIPSVMYNLYKRPIM
LHQGHMQWLFDHEGRRYLDLIGGIVTVSVGHCHPKVSAALHKQIDTLWHTTNIYRHPRIY
EYIEKLTSKFPGDLKVVYLVNSGTEANDLATVLAKAYTGNHDIISLQSCYHGYSSALMGL
TASQSYRMPLPVPAGIHHAMLPDPYRGIWGGCRDSISQVPDACSCVGDCDTSDKYIHQLK
ELLENSVPAGKVAALFAESIQGVNGGVQFPKGYIRKARELIRKYGGLYVADEVQTGFGRT
GDAFWGFETHGIVPDIVTMAKGIGNGFPLAAVVTTKEIADAHNKASYFNTFGGNPMAAAV
GKAVLEVIEEENLQKNCKETGKYFIEQLMALQKVHPMIGDVRGKGLMLALELVEPGTKDP
LKRSDFVDIMEMIKDSGALIGAGGRWGNVLRIKPPMCINKEDFISKVVKCEETKEPIVDY
GKVSKFEGYQVTLENTILFPAGGGQPHDIGWLNNTEVLQVLRKGDEALHFTREPLEVGTE
VAQRIDWTRRFDHMQQHSGQHLLSAILEKEHNLPTTSWWLGAEESYVELDSTSIAESVVK
VVEERCNDLIRRAIPVSVKMCKANDPNLDEAHTRGLPKDCMDTIRVICIGDIDENMCCGT
HVSNLSQLQTIKLLGIEAGKKGKTNLKFLVGNRVTNTLQRMLDREKALNALLKNEPTKHE
ELVSKLQKNLKITNKNLQNVLSELAEHEINKVKSANPKPKYLFMYKKEATPEFNRAICKG
LEKEGLFMFLVSEDPDKPKEGQIIIQGPEEHCNALGQQITELLKGKGAFKNGKFQGKAGD
LSGLNKCKKLVEDYFNSQ
NT seq
2577 nt
NT seq
+upstream
nt +downstream
nt
atggcgatcaaagtaacaagatgttggtataaaactttaaacaggagatacgcaagcgcc
ttgccgaaatgtgattttacaccaaataaataccatggtccatcaatctcagagacggat
agtataaaagctgagaaaataccttcagttatgtacaacttgtacaagcggcccattatg
ctccaccaggggcacatgcaatggttgttcgatcatgagggcagacggtaccttgatctg
atcggaggcatcgtcaccgtctccgtggggcattgtcatccgaaagtgtctgctgcacta
cataaacaaatcgatactctctggcacactacaaatatttacaggcatccaagaatttat
gagtacattgagaaattgacttccaaatttccaggagatctgaaggtagtctacttggtg
aacagtggcacagaagcaaacgatctggctacagtcctagccaaggcatacacgggaaac
catgatataatttctctccagagttgttaccacggctactccagtgccttgatgggtttg
acagcctcgcagtcgtaccgaatgccattgccagtcccggctggtattcatcatgcaatg
ctaccagacccctaccgtggtatttggggtggatgtagagactcgatatcacaagtaccg
gatgcgtgttcttgtgttggtgactgtgatacttcggacaaatacatccatcagctcaaa
gagcttttagagaattcagtgccagctggaaaagtggctgcactttttgcagaatcaatc
caaggagtgaatggaggcgtgcagtttccgaaaggatatattaggaaagctagagaacta
atacgtaaatatggcggactgtatgttgctgatgaggtgcaaacaggttttggtcgtacc
ggcgacgcgttttggggttttgagactcacggaattgtaccagacattgtgactatggca
aaaggaattggtaatggcttccccttagcagcggtggttactactaaggaaatagctgat
gctcacaataaagcctcgtattttaatacgttcgggggaaacccaatggctgctgcagtt
ggaaaagctgttttggaagtgatagaagaagagaaccttcagaaaaactgtaaagaaact
ggcaaatacttcatagaacaactaatggcattgcaaaaggtccaccccatgattggggat
gtgcgtggtaaaggtcttatgttagccctagaactggtcgagccaggaaccaaggatcca
ttgaagagaagtgactttgtcgatattatggaaatgatcaaggattctggcgctcttatt
ggtgcaggagggcggtggggcaatgttctcagaattaaaccgccgatgtgtatcaacaag
gaggacttcatatcaaaagtagtaaaatgtgaagaaactaaagagccaatcgtggactat
ggaaaagtatcaaagttcgagggatatcaagtaacactggagaacactatcctcttccca
gcagggggcggccagccacatgacataggttggttgaacaacacagaggtgctccaagtg
cttcgcaagggtgatgaagctctacatttcacacgagaaccactggaagtgggcactgag
gtggctcagaggatagactggacaagacggtttgatcacatgcagcagcactcaggtcag
catttgctctcagccattctggaaaaagaacataacttacccacaacaagttggtggctg
ggggcagaagagtcttatgttgaacttgactctaccagcattgcagagagtgttgtaaaa
gttgttgaggagaggtgcaatgacttgatacgtagagccatacctgtatctgtgaagatg
tgtaaagccaatgatcctaatttagatgaggcacacacgcggggccttcctaaggactgc
atggacacaatccgagtgatttgcatcggcgacattgacgagaatatgtgctgcggtaca
catgtctctaatttgagccaacttcaaactatcaagttactaggaatagaagcagggaag
aaaggcaagacaaacctcaagttcctagtgggcaatcgagtcaccaacacattgcaacgg
atgttggacagagagaaagccctcaatgcactattgaagaatgaaccaactaaacacgag
gaactagtctcaaaacttcaaaaaaatctaaaaatcactaacaaaaatctccaaaacgtc
ctatcagagttagcagagcatgaaattaacaaagtcaaaagtgccaaccctaaaccaaaa
tacttgtttatgtacaagaaagaggccacccctgaatttaatcgagctatatgcaagggt
ttggagaaagaagggttgtttatgtttttggtatcggaggacccggacaaaccaaaagaa
ggacagattataatacaaggaccagaagaacattgcaatgctttgggacaacaaataacg
gaacttttaaaaggcaaaggtgcatttaaaaacggcaagtttcaaggcaaagctggcgat
ttgagtggactcaataaatgcaagaagttggtagaagattactttaattcacaataa
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