Bifidobacterium longum subsp. longum BBMN68: BBMN68_1333
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Entry
BBMN68_1333 CDS
T01345
Symbol
ppc
Name
(GenBank) Ppc
KO
K01595
phosphoenolpyruvate carboxylase [EC:
4.1.1.31
]
Organism
blb
Bifidobacterium longum subsp. longum BBMN68
Pathway
blb00620
Pyruvate metabolism
blb00680
Methane metabolism
blb00710
Carbon fixation by Calvin cycle
blb00720
Other carbon fixation pathways
blb01100
Metabolic pathways
blb01120
Microbial metabolism in diverse environments
blb01200
Carbon metabolism
Brite
KEGG Orthology (KO) [BR:
blb00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00620 Pyruvate metabolism
BBMN68_1333 (ppc)
09102 Energy metabolism
00710 Carbon fixation by Calvin cycle
BBMN68_1333 (ppc)
00720 Other carbon fixation pathways
BBMN68_1333 (ppc)
00680 Methane metabolism
BBMN68_1333 (ppc)
Enzymes [BR:
blb01000
]
4. Lyases
4.1 Carbon-carbon lyases
4.1.1 Carboxy-lyases
4.1.1.31 phosphoenolpyruvate carboxylase
BBMN68_1333 (ppc)
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Ortholog
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Gene cluster
GFIT
Motif
Pfam:
PEPcase
PEPcase_2
CortBP2
Motif
Other DBs
NCBI-ProteinID:
ADQ02336
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All DBs
Position
1593129..1595882
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AA seq
917 aa
AA seq
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MATPEEQITPADAAIVTTGTGRKGPEEHDLPESLKYDMDLCLEILRNVLGEYNPELLSTF
DTVRHYAVEASAEHFAELKDPNPDQDGLKEAVNVIDNMTLHDAQLLARAFATYFHLANLS
EENYRVSVLHERENNVSVDQAVDPINELTVAYHQLINETGPAKAKELLNQLEFHPVFTAH
PTEARRKAVEGKIRRVSELLEEYKRLGGSDKKECLRRLYNEIDALFRTSPIALKKPTPVE
EADTILDIFDNTLFNTIPKVYRRFDDWVLGDKAGLVEPACPAFFHPGSWIGSDRDGNPNV
TAKVSRAVARKFSDHVIAALEEATRTVGRNLTMEAETTPPSAELKSLWSHQKEMSERLTD
KAALISTKEMHRAVMLVMADRLHYTIERDADLMYHSCDDFLADLKVVQRSLAAAGAKRSA
YGPLQDLIWQTETFGFHMVEMEFRQHSVVHARALADIREHGLHGERGELQPMTHEVLDTF
RALGAIQKRNGLKAARRYIISFTKSAQNIKDVYELNRLAFSHPEDVPTIDVIPLFEQLED
LQNSVDVLEEMIKIPEVQARLKATGNKLEVMLGYSDSSKDAGPTSATLALHSAQERIAKW
AESHDIDLTLFHGRGGAVGRGGGPANRAVLAQPVGSVKCRFKLTEQGEVIFARYGNPVLA
IRHVESVAAATLLQSAPSVEKRNTEMTEKYADMAAQLDEAAHNRFLDLLNTDGFAPWFSI
VTPLTEIGLLPIGSRPAKRGLGAKSLDDLRTIPWIFSWAQARINLAAWYGLGTACEKFGD
LETMRQAYEEWPLFSTFIDNIEMSIAKTDERIARMYLALGDREDLNEKVLNEMELTRKWV
LAIVGDKWPLQHRHVLGQAIRIRSPYVDALSVTQVLALRSLRKKVDKEELSQSQQAGFIY
LILCTVSGVAAGLQNTG
NT seq
2754 nt
NT seq
+upstream
nt +downstream
nt
atggcaacacctgaagaacagatcactcccgctgacgccgccatcgtcactaccgggacc
ggccgaaagggcccggaggagcatgatcttcccgaaagcctgaagtacgacatggatctg
tgtcttgagatcctgcgtaacgtactgggcgaatacaaccccgaactgctgtctacgttc
gacaccgtgcgtcattacgcggtggaggccagcgccgagcatttcgccgagctgaaggat
ccgaaccccgaccaggatggcctgaaggaggccgtgaacgtcatcgacaacatgacgttg
cacgacgcccagctgctggcccgcgcattcgccacgtatttccatctggcaaacctgtcc
gaggagaactaccgtgtttccgtgctccacgagcgcgagaacaacgtgtccgttgaccag
gcggtcgacccgatcaacgagctcaccgtcgcctaccaccagctcatcaatgagactggc
ccggccaaggccaaggaactgctcaaccagctcgaattccaccccgtcttcacggcgcac
cccactgaggcccgtcgtaaggccgtggaaggcaagatccgccgcgtttccgaattgctt
gaggagtacaagcgcctcggcggctcggataagaaggaatgcctgcgccgtctctacaac
gagatcgacgccctgttccgcacctctccgatcgcgctgaagaagccgaccccggttgag
gaagcggacacgattctcgacatcttcgacaacacgctgttcaacaccatccccaaggtc
taccgtcgcttcgacgactgggtcctgggcgataaggccggtctcgtcgagcccgcttgc
cccgcgttcttccacccgggcagctggatcggctccgaccgcgacggtaacccgaacgtc
accgccaaggtgagccgcgccgtggcccgcaagttctccgatcacgtaatcgccgccctt
gaggaagccacccgcaccgtgggccgcaacctcacgatggaagccgagaccacgccgccg
agcgccgagctcaagagcctctggagccaccagaaggaaatgagcgagcgtctgaccgac
aaggccgccctgatctccaccaaggagatgcaccgcgcggtcatgctggtgatggccgat
cgtctgcactacaccatcgagcgcgatgccgacctcatgtaccactcctgcgacgacttc
ctcgccgacctcaaggtggtccagcgttcgctggccgccgccggcgccaagcgttccgct
tacggcccgctgcaggatctgatctggcagaccgagaccttcggcttccacatggtggag
atggagttccgtcagcactccgtggtgcacgcccgcgcccttgcggatatccgcgagcac
ggcctgcacggcgagcgcggcgaactgcagccgatgacgcacgaggtgctcgacaccttc
cgcgccctcggtgccatccagaagcgcaacggcctcaaggccgcccgccgctacatcatc
tccttcaccaagagcgcccagaacatcaaggatgtctacgagctcaaccgcttggccttc
tcccacccggaggacgtgcccaccatcgacgtgatcccgctgttcgagcagcttgaggat
ctgcagaactcggtggacgtgctcgaggaaatgatcaagatccccgaggttcaggctcgt
ctgaaggccaccggcaacaagctcgaggtcatgctcggttactccgactcctcgaaggac
gccggcccgacctccgccacgctggctctgcactccgctcaggagcgcattgccaagtgg
gctgagtcgcacgacatcgatctgaccctgttccatggccgcggcggtgccgtaggtcgt
ggcggcggccccgccaaccgtgcggtgctcgcccagccggtcggttccgtcaagtgccgc
ttcaagctcaccgagcagggcgaggtcatcttcgcccgttacggcaacccggtgctggcc
atccgccacgtcgagtccgtggctgcggcgaccttgctgcagtccgcgccgagcgtggag
aagcgcaacaccgagatgaccgagaagtacgccgacatggccgctcagctcgacgaggcc
gcgcacaaccgtttcctcgacctgttgaacaccgatggcttcgccccgtggttctcgatc
gttacgccgctgaccgaaatcggcctgctgccgatcggctcccgcccggccaagcgtggc
ctcggcgccaagtcgctcgacgacctgcgtacgattccgtggatcttctcctgggcccag
gcccgcatcaacctggccgcttggtacggtctcggcaccgcatgcgagaagttcggcgat
ctggagaccatgcgtcaggcttacgaggaatggccgctgttctccaccttcatcgacaac
atcgagatgtccatcgccaagacggatgagcgcatcgccaggatgtaccttgccctcggc
gaccgcgaggacctcaatgagaaggtgctcaacgagatggagctcacccgcaagtgggtt
ctggccatcgtgggcgacaagtggccgttgcagcaccgtcacgtgctcggccaggccatc
cgcatccgctccccatacgtggacgcgctgtccgtcacccaggtgctggcgctcaggtcg
ctgcgcaagaaggtggacaaggaagagctctcgcaaagccaacaggcaggattcatctat
ctgatcctctgcaccgtttcaggtgttgctgccggcctgcagaacacaggctga
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