KEGG   Rummeliibacillus stabekisii: ATY39_05020
Entry
ATY39_05020       CDS       T04369                                 
Name
(GenBank) methylmalonyl-CoA mutase
  KO
K01847  methylmalonyl-CoA mutase [EC:5.4.99.2]
Organism
rst  Rummeliibacillus stabekisii
Pathway
rst00280  Valine, leucine and isoleucine degradation
rst00630  Glyoxylate and dicarboxylate metabolism
rst00640  Propanoate metabolism
rst00720  Other carbon fixation pathways
rst01100  Metabolic pathways
rst01120  Microbial metabolism in diverse environments
rst01200  Carbon metabolism
rst04980  Cobalamin transport and metabolism
Brite
KEGG Orthology (KO) [BR:rst00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00630 Glyoxylate and dicarboxylate metabolism
    ATY39_05020
   00640 Propanoate metabolism
    ATY39_05020
  09102 Energy metabolism
   00720 Other carbon fixation pathways
    ATY39_05020
  09105 Amino acid metabolism
   00280 Valine, leucine and isoleucine degradation
    ATY39_05020
 09150 Organismal Systems
  09154 Digestive system
   04980 Cobalamin transport and metabolism
    ATY39_05020
Enzymes [BR:rst01000]
 5. Isomerases
  5.4  Intramolecular transferases
   5.4.99  Transferring other groups
    5.4.99.2  methylmalonyl-CoA mutase
     ATY39_05020
SSDB
Motif
Pfam: MM_CoA_mutase
Other DBs
NCBI-ProteinID: AMW98866
UniProt: A0A143HBJ1
LinkDB
Position
1032680..1034344
AA seq 554 aa
MTNMKEVNFPKPSYEEWKDASIKALKGKPFESLFTKTIEGITIEPLYTMEDLLNTLDGKL
DAQANTVREMRSEGAFAIAQSTYADCIDEYISELKNSVLFGNQYLMIDQVSFEWSEEALK
KLAGLLNDHPFFIRTADPEILNVFDFIENKEAKGFVLSNEHCQINGFQNVRKVSANIIDA
HYKGANAVQELAIALAIASEQMEKVADFNQLENQFFAAFSIDTQFFMEIAKLRAFRILWK
AFAKAYGIKNPKPVKIHAETSLRRFSKLDPYVNLLRAGNEAFAAAIGGADLLTVHPHNII
TKPTSQSVRIARNVGLVIREESHVTKIEDPSGGAYYIESLTHDLAKEAWEKFVGIEAMGG
YTQYVESGRLEKELEETMTKRLLEVETSKTILVGTNDFADANEEASVETFYKVQRLAEPF
EGLRRNMKDAKVKAAILPFGDLKKIKPRIDFATGVLATAGMISNVIEPTSDIEKAKEWLK
NSKEDYVIFCATDEDTLNAIPVLLEEKPASIILDVAGKFDTDWHTKGLNGYLYKGQNMIR
KLKNIAETLKEVQR
NT seq 1665 nt   +upstreamnt  +downstreamnt
atgacaaatatgaaagaagtaaatttcccgaaaccatcttatgaggaatggaaagatgcc
tcgataaaagcattaaaagggaagccatttgagtcgcttttcactaaaactattgaaggt
attacaattgaaccgctttatactatggaagacttattgaatacattagatggaaaatta
gatgcacaagctaacacagtccgagagatgaggagtgaaggtgcttttgcgatcgcccaa
tccacctacgctgattgtattgatgaatacatctctgaattaaagaattctgtattattc
ggtaatcaatatttaatgattgaccaagtgagctttgagtggagtgaagaggctctgaaa
aaactcgcaggattgctgaatgaccatccattttttatacggactgcagatccagaaatc
ctaaatgtttttgactttatagaaaataaagaagccaaaggttttgtattatctaatgag
cactgtcaaatcaacggttttcagaatgttcgaaaggtaagcgctaacataattgatgct
cattacaaaggggcaaacgctgtacaagaattagccatagctcttgcaatagcgagtgaa
caaatggaaaaagtagcagatttcaatcagcttgaaaatcaatttttcgctgccttttca
attgatacacaattttttatggagatagcaaaacttcgagcttttcgaatactttggaaa
gcattcgctaaagcttacggtattaaaaatccaaaacctgtgaaaattcatgcagaaaca
tcacttagaagattctcaaaattagatccttacgtaaacttgctacgggcagggaatgaa
gcatttgctgcagctataggtggagctgatcttttaacagtacaccctcataatattata
acgaagccaacaagccaatcagttcgaattgcacggaatgtgggcttggtaatacgcgaa
gaatcgcatgttaccaagatagaggacccttctggtggtgcttattatatcgaatcatta
acgcacgatttagctaaagaagcctgggaaaagtttgttggaattgaagcaatgggtggc
tatacacaatatgtagaaagtggccgattagaaaaagagcttgaagaaacaatgactaaa
cgtcttcttgaagtggaaacaagtaaaaccatacttgttggcacaaacgattttgctgat
gctaatgaagaggcttcagttgaaacattttataaggttcaacgtcttgcagaaccattc
gaaggtttgagacgaaatatgaaagatgctaaagtcaaagcagctattttgccatttggc
gatttgaaaaagattaagccgcgtatagattttgctacaggggtcttagctactgccggt
atgatttctaacgtaatagagcctacatcagatatagaaaaagctaaggagtggttaaaa
aatagcaaagaggattatgtcattttctgtgcaacagatgaggatactctgaatgcaatc
cctgttttgttggaagaaaaaccagcctctattatattggatgtggcggggaaatttgat
accgattggcacacaaaaggtttaaacggatatttatacaaaggccaaaatatgatccga
aagttgaagaatattgctgaaacattgaaggaggttcaacgatga

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