Leisingera methylohalidivorans: METH_13575
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Entry
METH_13575 CDS
T02961
Name
(GenBank) pyruvate phosphate dikinase
KO
K01006
pyruvate, orthophosphate dikinase [EC:
2.7.9.1
]
Organism
lmd
Leisingera methylohalidivorans
Pathway
lmd00010
Glycolysis / Gluconeogenesis
lmd00620
Pyruvate metabolism
lmd00710
Carbon fixation by Calvin cycle
lmd00720
Other carbon fixation pathways
lmd01100
Metabolic pathways
lmd01110
Biosynthesis of secondary metabolites
lmd01120
Microbial metabolism in diverse environments
lmd01200
Carbon metabolism
Module
lmd_M00169
CAM (Crassulacean acid metabolism), light
Brite
KEGG Orthology (KO) [BR:
lmd00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00010 Glycolysis / Gluconeogenesis
METH_13575
00620 Pyruvate metabolism
METH_13575
09102 Energy metabolism
00710 Carbon fixation by Calvin cycle
METH_13575
00720 Other carbon fixation pathways
METH_13575
Enzymes [BR:
lmd01000
]
2. Transferases
2.7 Transferring phosphorus-containing groups
2.7.9 Phosphotransferases with paired acceptors
2.7.9.1 pyruvate, phosphate dikinase
METH_13575
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Paralog
Gene cluster
GFIT
Motif
Pfam:
PEP-utilizers_C
PEP-utilizers
HTH_24
HTH_AsnC-type
Motif
Other DBs
NCBI-ProteinID:
AHD01581
UniProt:
V9VS51
LinkDB
All DBs
Position
complement(2612530..2615106)
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AA seq
858 aa
AA seq
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MQKDFEQIPPASLITPNAPIATATHGGRAKCLQRLERLDLPVPRTVALSFDAVHSIAEGQ
MPDLTAVLAEFDPESLLCVRPSSEDPDWGGPGAILNIGMNDARYVDLCDSLGRDAAAALY
LRFVQSYAVHVARLDPDVFDDVEDGGPDALSEILHAYEAETDEPFPQDPGEQLAAVLRSM
ARAWEGTSARLLRQAKGAPADAGLGLVVQEMIPGVGQGECGSGVLQLVNSTTGSPQLTGR
YLSQSQGRDALGAGAKALYLARDTRGLSLEELAPEAFADLQSHAALMREKLREEMQLEFV
IENGRVHILDGVRVGRSAQAAVRIAVALAEDGIIPQEEALMRVDAHILNEMLHRQVAPDA
KRDVIGRGIAASPGAATGKLVFTAAGAQASASRGEPCILVRRETSPEDVRGMHAAAGVLT
EKGGMTSHAAVIGRGLGLPCIVGASNMKFHSKRKMLEAADGRVFRAGDIITIDGSSGQVL
AGQPAMLEAAQDGALQTLLAWADDARDIGIRANADTPEDAETARKFNAQGIGLCRTEHMF
FEPGRLTVMREMIFAETPSGREAVLERLLPMQRDDFRELFRIMEGMPVCIRLFDPPLHEF
LPATRTGQRELSEALGIPVSDVTRRVEEMGEYNPMLGLRGVRLGVTVPEIYDMQARAIFE
ATLEASKWGEPVVPEIMIPLVSAKREVELVKARIDAVAAAVKAERGEDFTYRLGVMVETP
RAALRAGEISPHTAFLSFGTNDLTQMTYGLSRDDAGRFMSDYVNQGVFPEDPFHVLDTDG
VGELLKLGVQRGRAENGEITLSICGEHGGNPESIAFCRDVGFDYVSCSPFRVPVARLAAA
QLAISGKTGQTAPTYTKY
NT seq
2577 nt
NT seq
+upstream
nt +downstream
nt
gtgcagaaagatttcgaacagatcccgccggcctcgctgatcactccgaatgcgccgatt
gcaaccgccacccatggcgggcgcgcgaaatgcctgcagcggctggagcggctggacctg
ccggtgccgcgcacggtggcgctgtctttcgatgcggtgcattcgattgccgaggggcag
atgcccgatctgactgcggtgcttgcagaattcgaccccgagtcgctgctttgcgtgcgc
ccgtcttccgaggatccggattggggcggtccgggcgcgatcctgaatatcggcatgaac
gatgcgcgctatgtcgacctctgcgacagcctgggacgcgacgcggcggcagcgttgtac
ctgcgctttgtgcaatcttatgcggtgcatgtggcacggctggaccccgacgtgtttgac
gatgtcgaggacggcggccctgatgcgctgagcgaaatcctgcacgcctatgaggccgaa
accgacgaacccttcccgcaggacccgggcgagcagctggcggctgtcctgcgctcgatg
gcgcgggcgtgggagggcacctcggcgcggctgttgcgtcaggccaagggcgcacctgct
gatgccggtctggggctggtggtgcaggaaatgatccccggcgtcggccagggcgaatgc
ggctcaggcgtgctgcaactggtgaattcgaccaccggcagcccgcagctgaccggccgc
tatctgagccagagccaggggcgcgatgcgctgggggcgggggccaaagcgctgtatctg
gccagggatacgcgcgggctgtcgctggaggagctggcgccggaggcctttgcggacctg
caatcccatgccgcgctgatgcgtgaaaagctgcgtgaggaaatgcagctggaattcgtg
attgagaacggccgcgtgcatatcctcgacggggtgcgggtggggcgttcggcacaggct
gcggtgcggatcgctgtggcgctggccgaagacgggatcattcctcaggaagaggcgctg
atgcgggtggatgcgcatatcctgaatgagatgctgcaccgccaggtggcgccggatgcg
aagcgggatgtcattggccgcggcattgccgccagcccgggggcggcgaccggcaaactg
gtctttaccgcggccggggcgcaggccagcgcgtcgcgcggagagccgtgtattctggtg
cgccgggagacctctcccgaagacgtgcgcgggatgcatgccgctgccggggtactgacc
gagaagggcggcatgaccagccacgctgcggtgatcggccgcgggctggggctgccgtgc
attgtcggggcttcgaacatgaagttccacagcaagcgcaagatgctggaggccgcggat
ggccgggtattccgggcaggtgacatcatcaccatcgacggcagcagcggccaggtgctg
gcagggcagccggcgatgctggaggcggcccaggacggggcgttgcaaacgttgctggcc
tgggcggacgatgcccgcgacattggcatccgggccaatgcagacacgccggaagatgct
gaaacagcacggaaattcaatgcgcaggggattggtctctgccgcacggagcatatgttc
tttgaacccggccgcctgacggtgatgcgggagatgatctttgccgaaacaccgtcgggc
cgcgaagcggtactggagcggctgttgccgatgcagcgcgacgacttccgcgagttgttc
cggatcatggagggaatgccggtctgcatccgcctgttcgacccgccgttgcatgaattc
ctgcctgccaccaggaccggtcagcgcgaactgtccgaagcactgggcatccctgtcagc
gatgtcacccgccgggtcgaggaaatgggcgaatacaacccaatgctgggcctgcgcggc
gtgcggctgggtgttaccgtgccggaaatctatgacatgcaggcgcgggcgatttttgag
gcaacacttgaagcctcgaaatggggcgagcctgtggtgcctgagatcatgatcccgctg
gtttcggccaagcgcgaggttgaactggtcaaggcccgcattgatgcggtggctgcggca
gtcaaggcggagcgcggcgaggatttcacctaccgtctgggcgtcatggtggaaacaccg
cgcgcggcgctcagggcgggcgagatttcgccgcacaccgcgttcctcagctttgggacc
aatgaccttactcagatgacctatgggctgtcgcgcgacgatgcggggcggttcatgtcg
gattatgtgaaccagggcgtctttcccgaggatccgttccatgtgctggacaccgacggg
gtgggggagctgttgaaactgggtgtgcagcgcggccgggcggagaacggggagatcact
ctgtcgatctgcggcgagcacggcggcaaccccgaatcgattgccttttgccgtgatgtg
ggctttgactatgtctcctgttccccgttccgggtgccagttgcgcgtttagccgcagcc
cagcttgcaatttccgggaagaccgggcagacggcgccaacatacacaaaatattaa
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