KEGG   Thalassovita mediterranea: KUV46_02555
Entry
KUV46_02555       CDS       T07443                                 
Symbol
rodA
Name
(GenBank) rod shape-determining protein RodA
  KO
K05837  peptidoglycan glycosyltransferase [EC:2.4.99.28]
Organism
tmd  Thalassovita mediterranea
Pathway
tmd00550  Peptidoglycan biosynthesis
Brite
KEGG Orthology (KO) [BR:tmd00001]
 09100 Metabolism
  09107 Glycan biosynthesis and metabolism
   00550 Peptidoglycan biosynthesis
    KUV46_02555 (rodA)
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01003 Glycosyltransferases [BR:tmd01003]
    KUV46_02555 (rodA)
   01011 Peptidoglycan biosynthesis and degradation proteins [BR:tmd01011]
    KUV46_02555 (rodA)
  09182 Protein families: genetic information processing
   03036 Chromosome and associated proteins [BR:tmd03036]
    KUV46_02555 (rodA)
Enzymes [BR:tmd01000]
 2. Transferases
  2.4  Glycosyltransferases
   2.4.99  Transferring other glycosyl groups
    2.4.99.28  peptidoglycan glycosyltransferase
     KUV46_02555 (rodA)
Glycosyltransferases [BR:tmd01003]
 Polysaccharide
  Bacterial polysaccharide (excluding LPS)
   KUV46_02555 (rodA)
Peptidoglycan biosynthesis and degradation proteins [BR:tmd01011]
 Peptidoglycan biosynthesis and degradation
  Glycosyltransferase
   KUV46_02555 (rodA)
Chromosome and associated proteins [BR:tmd03036]
 Prokaryotic type
  Chromosome partitioning proteins
   Other chromosome partitioning proteins
    KUV46_02555 (rodA)
SSDB
Motif
Pfam: FTSW_RODA_SPOVE
Other DBs
NCBI-ProteinID: QYJ01284
LinkDB
Position
complement(530472..531644)
AA seq 390 aa
MARAARASAIRFEDRTFAGTLGELPWGLVLMLITVACIGTAALYSSTFTNPEEAGLPARH
AVRFAISLGILFVIALVPIGIWLRAAWPAYFVTLAMLIGVELFGLTRGGATRWLQLGPIG
VQPSEFMKLALTLALARYYHNNLTFQSGRFFIHLPALFIIIVPAALIFKQPDFGTTLALI
ASGAVLIFLAGLYYRIIAAVVIAGIASAWPIYMFVLQDYQRERVNTFLAQLTGQSVNALD
DGYQIEQAKIAIGSGGWQGRGFMEGTQAQLDYIPEQHTDFILTVIAEEFGFLGATGLLLL
WAAILAWGLVIAGRSTSLFGRFAAVGCVATVAFFILFNVAMVLGLVPVVGVPLPLVSYGG
TVMFTTMACFGILLSVHLGRDERLSTQGMI
NT seq 1173 nt   +upstreamnt  +downstreamnt
atggcgcgagctgcgcgcgcctctgccataagatttgaagaccggacctttgcagggacg
ctgggcgaactgccttggggcctggtcctgatgctgatcaccgtcgcctgtatcggcacc
gcagcgctctattcctccacattcacaaaccccgaagaagcgggcctgccggcccgtcat
gcggttcgtttcgctatttcgctgggcatcctgtttgtcatcgcgctcgtgccgatcggc
atctggctcagggctgcatggcccgcctatttcgtgacgctggccatgctcattggtgtg
gagctgttcggcctgacgcgaggcggggcgacgcggtggctgcagctcggcccgatcggc
gttcagccgtcagagttcatgaagcttgcgctcaccctcgcgcttgcgcgctactaccat
aataacctgaccttccagtcgggcaggttcttcatccacctgccggcccttttcattatc
atcgtcccggcggcgctgatcttcaaacagcctgacttcggcacgacgctggcgctcatc
gcatctggcgccgtcctcattttccttgcaggtctctactatcgtatcatcgcagcagtc
gttatcgcaggcatcgccagtgcgtggccgatctacatgtttgtactgcaggactatcag
cgcgagcgcgtgaacacattccttgcacagctgacaggtcagtccgtcaacgcgctcgat
gatggctaccagatcgagcaggcaaagatcgctatcggctcaggcggttggcagggcagg
ggcttcatggaaggcacgcaggcccagctcgactatattcccgaacagcacaccgacttc
atcctgaccgtcattgcggaagagttcggcttcctcggcgcgacagggcttctgcttctc
tgggcagccattctcgcctgggggctggtgatcgcggggcggtcgacatccctctttggc
cgctttgcggctgttggctgcgtcgcgacggtcgccttcttcatcctgtttaatgtcgcc
atggtgctggggctggtgccagttgtcggcgtgccgctgccgctcgtatcctatggtggc
accgtgatgttcacgacaatggcgtgtttcggcatcctcctttccgtgcaccttggccgc
gacgagcggctcagcacgcaggggatgatttga

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