KEGG   Alterisphingorhabdus coralli: RB602_08300
Entry
RB602_08300       CDS       T10589                                 
Name
(GenBank) enoyl-CoA hydratase-related protein
  KO
K13779  isohexenylglutaconyl-CoA hydratase [EC:4.2.1.57]
Organism
acoa  Alterisphingorhabdus coralli
Pathway
acoa00907  Pinene, camphor and geraniol degradation
acoa01120  Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:acoa00001]
 09100 Metabolism
  09109 Metabolism of terpenoids and polyketides
   00907 Pinene, camphor and geraniol degradation
    RB602_08300
Enzymes [BR:acoa01000]
 4. Lyases
  4.2  Carbon-oxygen lyases
   4.2.1  Hydro-lyases
    4.2.1.57  isohexenylglutaconyl-CoA hydratase
     RB602_08300
SSDB
Motif
Pfam: ECH_1 ECH_2
Other DBs
NCBI-ProteinID: WOE73868
UniProt: A0AA97F5U5
LinkDB
Position
1745577..1746398
AA seq 273 aa
MTELPKTEALELEQDGGWLTIWFNQPEKRNPLTGEMTRELQTVLDAVRDDRNVRGITLRG
RGGIFCAGGDLKAFKSMAGAEGEDAHADIIAMSKSGAAIFQSVNSMPQVVIALVEGAAMA
GGLGLACCADVMIVEKGAKFAFTETAIGLTPAQIAPYVLQKVGYATGRRLMLTAARLNGA
TAAEIGLADQCVDDAAGLREAEHAIRKQVLQCAPGAVADIKHLILALPQLEGEERVKAAA
ENFAGRVLSDEGREGLASFLEKRKPEWAQGAGA
NT seq 822 nt   +upstreamnt  +downstreamnt
atgacggaacttcccaagaccgaggcactggagctggagcaggatggcggctggctgaca
atctggtttaatcagccagaaaagcgcaatccactgacgggcgaaatgacccgcgaactg
cagactgtgcttgatgcagtgcgcgatgatcggaatgttcgcggtattaccctcaggggg
cgtggcggcatattttgcgccggtggtgacctgaaagcttttaagagcatggccggtgcg
gaaggcgaggatgcacatgcagatattatcgcaatgtcaaagtcgggggcagccatcttt
cagtcggtcaattcgatgccgcaagtggtgatcgcacttgtcgaaggcgcggcgatggcg
ggtggcttgggtctggcatgctgcgctgatgtgatgattgtcgagaaaggcgcgaaattt
gccttcaccgaaaccgctatcgggctgacaccagcgcagattgcgccttatgtgctgcag
aaagtcggctatgccacaggccgcaggcttatgctgacagcagcacggctcaatggcgca
acagctgcggaaatcggtctggcagatcagtgtgtcgatgatgctgcgggcttgagggag
gcggaacatgctattcgcaaacaggtcctgcaatgtgcgccgggcgcggttgccgatatc
aagcacctgatcctcgcactgccgcagcttgaaggcgaagagcgtgtgaaggcagcagcg
gagaatttcgcaggacgcgtgctaagcgatgaaggccgtgaaggcctcgcatcattcctg
gaaaagcggaaacctgaatgggcgcagggagcaggcgcatga

DBGET integrated database retrieval system