Paramicrobacterium chengjingii: HCR76_04225
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Entry
HCR76_04225 CDS
T07557
Name
(GenBank) phosphoenolpyruvate carboxylase
KO
K01595
phosphoenolpyruvate carboxylase [EC:
4.1.1.31
]
Organism
mchn
Paramicrobacterium chengjingii
Pathway
mchn00620
Pyruvate metabolism
mchn00680
Methane metabolism
mchn00710
Carbon fixation by Calvin cycle
mchn00720
Other carbon fixation pathways
mchn01100
Metabolic pathways
mchn01120
Microbial metabolism in diverse environments
mchn01200
Carbon metabolism
Module
mchn_M00168
CAM (Crassulacean acid metabolism), dark
Brite
KEGG Orthology (KO) [BR:
mchn00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00620 Pyruvate metabolism
HCR76_04225
09102 Energy metabolism
00710 Carbon fixation by Calvin cycle
HCR76_04225
00720 Other carbon fixation pathways
HCR76_04225
00680 Methane metabolism
HCR76_04225
Enzymes [BR:
mchn01000
]
4. Lyases
4.1 Carbon-carbon lyases
4.1.1 Carboxy-lyases
4.1.1.31 phosphoenolpyruvate carboxylase
HCR76_04225
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Gene cluster
GFIT
Motif
Pfam:
PEPcase
PEPcase_2
Motif
Other DBs
NCBI-ProteinID:
QPZ39275
LinkDB
All DBs
Position
complement(861681..864353)
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AA seq
890 aa
AA seq
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MTDSYPPTSAISIIQAPRHMEIPDALRSDVSLLGELLGRVLIETGGTDLLDDVEKLRGLT
IDAYENEDVKAFEDAEALVESFSSERAEEVARAFTCYFHLVNLAEERHRVRVLQGRNPEP
SDDVGASFTSTMDALVRELGDEGAQRMLDSLEFRPVLTAHPTEARRRAVASSIRRISELV
AENDDPRLGENVQAENKRELLAEVNVLFRTAPLRSTRPTPLDEVRTAMNIFDQTLFEAMP
RIYRLIDDRLVGKAAGTLPPRSHAFVRFGSWIGADRDGNPNVTAKITRQAAAIQSEHVLL
GLERAAARVGRMLTLDAGDTAASAELLSLWQRQRSLADELTSEIATRSPNEPHRRVMLMI
AERIAATRGRNADLAYPHPDELLSDLRTVQSSLVAAGDKRSAYGEVQGLIWQVETFGFHL
AELEVRQHSKVHRQALDELDRGAQPSEMTDEVLDVFRTIGALQTRYGVDAARRYIISFTQ
SVDDIANVHRLARYAFGDGETPVLDVIPLFETFNDLRNAPEILEKMIELPEVKQRLEATD
RHLEVMLGYSDSSKDVGPVSATLTLYEAQDAIARWAERNSIRLTLFHGRGGAMGRGGGPA
NEAVLSQPPGSVDGRFKLTEQGEVIFAQYGNPIIALRHLEQIASATLLASSPSNGELNAT
AATAFADIAQVMDAASRERFYELIHADGFAPWFAEVTPQEEVGLLPLGSRPARRGLSVES
LEDLRAIPWVFSWSQARINLAGWFGLGTALKAVGDSDELQQAYREWPLFTTMIDNVQMSL
AKTDERIATRYLQLGDRGDLSALVLDEMELTRKWALIATGTTELLENRAVLQRAVRLRSP
YVDALSLLQLRALRTLRGTATQETETTIDQARNLLLLSVNGVAAGLQNTG
NT seq
2673 nt
NT seq
+upstream
nt +downstream
nt
atgactgattcttatccccccacatcagcaatctcgatcatccaggctccccgccacatg
gagattcccgacgccctccgttccgacgtgagtctgctcggcgaactgctcggccgtgtg
ctgatcgagaccggcggcacagacctgctcgacgacgtcgaaaagctgcgcggtctgacg
atcgatgcctacgagaatgaagacgtgaaggcgttcgaagacgccgaagccctcgtcgaa
tcgttctcttccgagcgtgcagaagaggttgctcgcgcgttcacgtgttacttccacctg
gtgaatcttgcggaggagcggcatcgcgtgcgcgtgctgcagggccgcaatccagaaccg
agcgacgatgtcggagcatccttcacctcgacgatggacgcactcgtgcgcgagctcggc
gacgaaggtgcgcagaggatgctcgatagcctcgagtttcgtccggtgctcaccgctcac
cccactgaggcgcgccgccgcgctgtcgcctcgtcgatacgccgcatcagcgaactcgtc
gccgagaacgacgacccgcgattgggcgagaacgttcaggcggagaacaagcgcgagctg
ctcgccgaggtgaacgtgctctttcgcacggcaccgctgcgctcgacacggccgacgccg
ctcgacgaggtgcgcacggcaatgaacatcttcgaccagacactgttcgaggcgatgccg
cgcatctaccgcctcatcgacgaccggctcgtgggcaaggcagcaggcacgctcccaccg
cgctcgcacgcgttcgttcgcttcggctcgtggatcggtgccgaccgcgacggcaacccc
aacgtgacggcaaagatcacccgtcaggccgcggcaatacagtcggagcatgtgctgctc
gggctcgagcgtgccgccgctcgcgttggccgcatgctcacgctcgacgcgggcgacacc
gcggcgagcgctgagctgctttcactctggcagcgtcagcgttcgctcgcagacgagctc
acaagcgagatcgccacgcgttcacccaacgagccgcaccgccgcgtcatgctgatgatc
gcggagcgcattgccgcaacgcgtggacgcaacgccgacctcgcctacccgcatccagac
gagcttctctccgacctgcgcacggttcagagctctctcgtggccgcgggcgacaaacgc
agcgcctacggcgaagttcagggcctcatttggcaggtcgagaccttcggcttccacttg
gccgagcttgaggtgcgtcagcactcgaaggtgcaccgccaggcgctcgacgaactcgac
cgcggtgcccagccgagcgaaatgaccgacgaagtgctcgatgtgtttcgcacgatcggc
gcgctgcagacgcgctatggggtggatgctgcacggcggtacatcatctcgtttacgcag
agcgtcgacgacatcgccaacgttcatcgcctcgcgcgttacgcattcggggacggcgag
actcccgtgctcgatgtgattccgctgttcgagacgttcaacgacctccgaaatgccccg
gagattctcgagaagatgatcgagctgcccgaggtgaagcagcggctcgaagccactgat
cgtcacctagaagtgatgctcgggtactccgactcgtcaaaggacgtcggcccggtctcg
gcaacgctcacgctctatgaggcgcaggatgccattgcgcgctgggccgaacgcaacagc
atccgcctcaccctctttcacggtcgtggcggagccatgggccgaggcggcggaccggcg
aacgaggcagttctctcgcagcctcccggctccgtcgatgggcggttcaagctcaccgag
cagggcgaggtcatttttgcccagtacggcaacccgatcatcgcgcttcgccacctcgag
cagattgcgtcggcgactctactggcgtcaagcccgtcgaacggcgagctcaatgccaca
gcggctacggcgttcgccgacatcgcccaggtgatggatgccgcgagcagagagcgcttc
tatgaactcattcatgcggacggcttcgcaccgtggttcgcggaggtcactccacaggaa
gaagtcggccttcttcctctgggctcgcgccccgcgcgccgcggtctctccgtcgagtcc
cttgaagacctgcgggcgatcccgtgggtgttctcctggtcgcaggcgcgcatcaacctc
gccggctggttcgggctcggcaccgcactcaaggccgtgggagacagcgacgaattgcag
caggcctaccgcgaatggccgctgttcacaacgatgatcgacaacgtgcagatgtcgctc
gcaaagaccgacgagcgcatcgccactcggtacctgcagctcggcgaccgcggcgatctc
tcggctctcgtgctcgacgagatggagctcacccgcaagtgggcgctcatcgcgacggga
accacagaactgctcgagaaccgcgcggtgctgcagcgtgcagtgcgcctacgcagcccc
tatgtcgatgctctgtcgctgctgcagctgcgcgccctgcgcacgctgcgcggcacggcg
acgcaggagaccgagacgacgatcgaccaggcacgcaatcttctgctgctctcggtgaac
ggcgtcgcggccgggctgcagaacaccggctga
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