KEGG   Chitinibacter mangrovi: ABHF33_14520
Entry
ABHF33_14520      CDS       T11125                                 
Name
(GenBank) nucleoside-diphosphate sugar epimerase/dehydratase
  KO
K24300  UDP-N-acetylglucosamine 4,6-dehydratase [EC:4.2.1.135]
Organism
cmav  Chitinibacter mangrovi
Pathway
cmav00541  Biosynthesis of various nucleotide sugars
cmav00552  Teichoic acid biosynthesis
cmav01100  Metabolic pathways
cmav01250  Biosynthesis of nucleotide sugars
Module
cmav_M01009  UDP-QuiNAc biosynthesis, UDP-GlcNAc => UDP-QuiNAc
Brite
KEGG Orthology (KO) [BR:cmav00001]
 09100 Metabolism
  09107 Glycan biosynthesis and metabolism
   00541 Biosynthesis of various nucleotide sugars
    ABHF33_14520
   00552 Teichoic acid biosynthesis
    ABHF33_14520
Enzymes [BR:cmav01000]
 4. Lyases
  4.2  Carbon-oxygen lyases
   4.2.1  Hydro-lyases
    4.2.1.135  UDP-N-acetylglucosamine 4,6-dehydratase (configuration-retaining)
     ABHF33_14520
SSDB
Motif
Pfam: Polysacc_synt_2 Epimerase CoA_binding_3 RmlD_sub_bind GDP_Man_Dehyd PglD_N 3Beta_HSD KR CoA_binding adh_short TrkA_N TMD0_ABC
Other DBs
NCBI-ProteinID: XBM00251
UniProt: A0AAU7F997
LinkDB
Position
3073607..3075496
AA seq 629 aa
MKAVALPRIIKSLIILAADFVLLPLALWAAISLRLDNWAYPLQYDWWVFLLPSIIAAPLF
IRFGLYRAVIRYIEDRAVITILTAVTLATLFFVAALQLFQITGVPRGSLLIYWLLALIII
ISSRFAARSILRKFAPFASERKRVLIYGAGNAGRQLAVALRAGHEYEPIGFVDDAVEQQG
LQIGGLKVFSNEQMLQQIEYQEVSQVLLAIPSASRSRQIELVNQLEPLAVEVRILPSMAD
LVNTEIRPIEARQVGVDELLGREPVPPNKELLRRNISGKVVMVTGAGGSIGAELCRQIIK
NQPSALVLYELSEFALYSIEQELIHTIRDQGLDISLHPVLGSVQNEMRLTAIMSRYEVNS
VYHAAAYKHVPLVEFNVTEGILNNTFGTYAAAAAAIEAGVELFVLISTDKAVRPTNVMGA
SKRMSELILQAFALMQKSSTRFCMVRFGNVLGSSGSVVPVFRKQIAAGGPVKVTHPEINR
FFMTIPEASQLVIQAGAMGGNGEVFVLDMGKPVRIVDLARRMIHLSGFKVKDDTTPHGDI
AIEFSGLRPGEKLYEELLIGDNVSGTEHPRIMKANEGCLSPDELAQVMADLGAACAANDS
RRIIEILQECVAGFKPDQDVRDHLYEFED
NT seq 1890 nt   +upstreamnt  +downstreamnt
atgaaagcagtagcattgccccgcatcatcaaaagcctgattattctcgctgcagacttt
gtacttttacctttggcattatgggctgccatctccttgcgcttggacaattgggcttat
ccactgcagtatgactggtgggtatttttgctcccttcaattattgcagcgccacttttt
atccgttttggcctgtatcgcgcagtgatccgctatatcgaggatcgggctgtgatcacg
attctgactgcagtcaccttggcgacgctgttttttgtcgccgcgttgcagctatttcag
attaccggcgtgccgcgtggctcattgctcatttactggctgctggctctgatcattatc
atttctagccgctttgctgcccgctccattttgcgcaaattcgcgccctttgcttccgaa
cgaaagcgggttttgatttatggtgctggcaatgcaggccgtcagcttgccgtggcttta
cgtgcagggcatgaatacgagccgataggttttgttgacgatgcggttgagcagcaaggc
ttgcaaattggcggcttgaaagtgtttagcaatgagcaaatgctgcaacaaatcgagtac
caggaggtatcacaggttttgctggcgattccctctgcgtcgcgttcgcgacaaatcgag
ttggttaatcagctggaaccactcgcggtagaggtgcggatattgccgagtatggctgat
ctggtgaataccgaaatccggccgatcgaagcccggcaggtgggagtggacgagctcttg
ggtagagagccggtgccgcctaataaagagttgttgcgtcgaaatattagcggcaaagtg
gtgatggtcactggtgcaggtggctcgattggtgccgagttgtgtcggcagatcattaaa
aatcagcccagtgcgctggtactgtacgaattgtccgaatttgcactgtattcaattgag
caggaattaattcacaccatacgtgaccagggtttggacatttcgctgcatccggtactg
ggctcggtacagaacgagatgcgtttaacggcgattatgtcgcgctatgaggtgaattcg
gtttatcacgccgcagcctacaaacacgttccactggttgaatttaatgtcaccgaaggc
attttgaataacacttttggcacttatgcggctgcagccgcagcgatcgaggccggcgtt
gaattgtttgtactgatttccaccgacaaagccgtgcggccgaccaatgtcatgggggcg
agcaagcggatgtcagagctgattttgcaagcctttgccttgatgcaaaagtcctcaacc
cgcttctgtatggtcagatttggcaatgtgcttggctccagtggctcggtggtgccggtg
tttcgcaagcagattgcggcaggtggcccggtgaaagtgactcatccagaaatcaaccgc
ttttttatgaccattccggaagcttcgcagctggtgattcaggcgggggcgatgggtggt
aatggcgaggtgtttgtgctggatatgggcaaacccgtgcgcattgtcgatttggcgcgc
cgcatgattcacctgagcggttttaaggtcaaagatgatacgacgccgcatggcgatatc
gccatcgagttttccggcctgcgtcccggtgagaagctctatgaagaattgctgattggc
gacaatgtcagcggcaccgagcatccgcggattatgaaagccaatgaaggctgtttaagt
ccggatgaactggctcaggtgatggccgatctgggcgcggcctgtgcggcgaatgattcg
cggcggattatcgaaatcctgcaagagtgcgttgcgggctttaagcctgatcaggatgtg
cgtgatcatttgtatgaatttgaggattaa

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