KEGG   Rothia mucilaginosa: RMDY18_16380Help
Entry
RMDY18_16380      CDS       T01144                                 

Definition
enolase
Orthology
K01689  
enolase [EC:4.2.1.11]
Organism
rmu  Rothia mucilaginosa
Pathway
Glycolysis / Gluconeogenesis
Methane metabolism
Metabolic pathways
Biosynthesis of secondary metabolites
Microbial metabolism in diverse environments
Carbon metabolism
Biosynthesis of amino acids
RNA degradation
Module
Glycolysis (Embden-Meyerhof pathway), glucose => pyruvate
Glycolysis, core module involving three-carbon compounds
Gluconeogenesis, oxaloacetate => fructose-6P
Brite
KEGG Orthology (KO) [BR:rmu00001]
 Metabolism
  Overview
   01200 Carbon metabolism
    RMDY18_16380
   01230 Biosynthesis of amino acids
    RMDY18_16380
  Carbohydrate metabolism
   00010 Glycolysis / Gluconeogenesis
    RMDY18_16380
  Energy metabolism
   00680 Methane metabolism
    RMDY18_16380
 Genetic Information Processing
  Folding, sorting and degradation
   03018 RNA degradation
    RMDY18_16380
Enzymes [BR:rmu01000]
 4. Lyases
  4.2  Carbon-oxygen lyases
   4.2.1  Hydro-lyases
    4.2.1.11  phosphopyruvate hydratase
     RMDY18_16380
Exosome [BR:rmu04147]
 Exosomal proteins
  Proteins found in most exosomes
   RMDY18_16380
BRITE hierarchy
SSDB OrthologParalogGene clusterGFIT
Motif Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
UniProt: 
Position
complement(1837900..1839180)
Genome map
AA seq 426 aa AA seqDB search
MAVITAVHARQILDSRGNPTVEVEVLLEDGAFARAAVPSGASTGEWEAVERRDGDKSVYL
GKGVLGAVKSVIEEIAEEVIGIEASDQRAVDAAMIALDATNNKGKLGANAILGVSLAVAK
AAAESADLPLYKYLGGPNAHVLPVPMMNILNGGSHADSNVDIQEFMIAPIGFDNYSDALR
AGVEVYHSLKSVLHDRGLATGLGDEGGFAPNLESNAAALDLIVEAIEKAGYKPGEQVALA
LDVASSEFYNDGAYEFEGQKKSAAEMSAYYADLVAKYPLVSIEDPLDENDWEGYKTLTEQ
IGDKVQIVGDDLFVTNPERLARGIEEGAANALLVKVNQIGSLTETLDAMELAQRHEYRCM
VSHRSGETEDVTIADLAVATNAGQIKTGAPARSERVAKYNQLLRIEEELGEAAVYAGKSA
FPRFKA
NT seq 1281 nt NT seq  +upstreamnt  +downstreamnt
atggctgttattaccgcagttcacgcacgccagatcctggattcccgtggcaacccgacc
gttgaggttgaggttctgctcgaagacggtgctttcgcacgcgcagctgtgccctcgggc
gcatccaccggtgagtgggaagctgttgagcgccgcgatggcgacaagtccgtatacctg
ggcaagggtgttctgggcgcagtgaagtctgttatcgaagaaatcgctgaagaggtcatc
ggcattgaggcttccgaccagcgcgctgttgacgcagccatgatcgctctggatgcaacc
aacaacaagggcaagctgggtgcaaacgcaatcctgggtgtctccctggctgttgctaag
gctgctgctgagtccgctgacctacccctgtacaagtacctcggtggcccgaacgctcac
gttctgcccgtccccatgatgaacatcctcaacggtggttctcacgcagactccaacgtt
gacattcaggagttcatgattgctcccatcggcttcgacaactactctgacgctctgcgc
gcaggtgttgaggtttaccactccctgaagtccgtgctgcacgaccgcggcctggcaacc
ggcctgggcgacgagggtggcttcgcacccaacctggagtccaacgcagctgcactggac
ctgattgttgaggcaatcgagaaggctggctacaagccgggcgagcaggttgcactggct
cttgacgttgcttcctccgagttctacaacgacggcgcatacgagttcgagggccagaag
aagtccgcagctgagatgagcgcatactacgctgacctcgttgcaaagtacccgctggtt
tccatcgaggatcccctggatgagaacgactgggagggctacaagaccctgaccgagcag
atcggtgacaaggtccagatcgtcggtgacgacctgttcgtgaccaaccccgagcgtctg
gctcgcggtatcgaagagggcgcagctaacgctctgctcgtgaaggtgaaccagatcggt
tcgctgaccgagaccctcgacgcaatggagctggcacagcgccacgaataccgttgcatg
gtttctcaccgttccggtgagaccgaggacgtcaccatcgccgacctggctgttgcaacc
aacgctggccagatcaagaccggtgctcccgcacgttccgagcgcgttgctaagtacaac
cagctgctgcgcattgaggaagagctgggcgaggcagctgtttacgctggcaagtccgca
ttcccccgcttcaaggcataa

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