KEGG   Burkholderia gladioli ATCC 10248: BM43_4560
Entry
BM43_4560         CDS       T03826                                 
Symbol
mrcA
Name
(GenBank) mrcA, penicillin-binding 1 (Peptidoglycan synthetase) transmembrane protein
  KO
K05366  penicillin-binding protein 1A [EC:2.4.99.28 3.4.16.4]
Organism
bgo  Burkholderia gladioli ATCC 10248
Pathway
bgo00550  Peptidoglycan biosynthesis
bgo01100  Metabolic pathways
bgo01501  beta-Lactam resistance
Brite
KEGG Orthology (KO) [BR:bgo00001]
 09100 Metabolism
  09107 Glycan biosynthesis and metabolism
   00550 Peptidoglycan biosynthesis
    BM43_4560 (mrcA)
 09160 Human Diseases
  09175 Drug resistance: antimicrobial
   01501 beta-Lactam resistance
    BM43_4560 (mrcA)
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01003 Glycosyltransferases [BR:bgo01003]
    BM43_4560 (mrcA)
   01011 Peptidoglycan biosynthesis and degradation proteins [BR:bgo01011]
    BM43_4560 (mrcA)
Enzymes [BR:bgo01000]
 2. Transferases
  2.4  Glycosyltransferases
   2.4.99  Transferring other glycosyl groups
    2.4.99.28  peptidoglycan glycosyltransferase
     BM43_4560 (mrcA)
 3. Hydrolases
  3.4  Acting on peptide bonds (peptidases)
   3.4.16  Serine-type carboxypeptidases
    3.4.16.4  serine-type D-Ala-D-Ala carboxypeptidase
     BM43_4560 (mrcA)
Glycosyltransferases [BR:bgo01003]
 Polysaccharide
  Bacterial polysaccharide (excluding LPS)
   BM43_4560 (mrcA)
Peptidoglycan biosynthesis and degradation proteins [BR:bgo01011]
 Peptidoglycan biosynthesis and degradation
  Glycosyltransferase/DD-Transpeptidase (Class A PBP)
   BM43_4560 (mrcA)
SSDB
Motif
Pfam: Transgly Transpeptidase PCB_OB
Other DBs
NCBI-ProteinID: AJW96389
Position
2:561418..563946
AA seq 842 aa
MFLRKPDPSTAPSSEPPGQPGGDRAPRRRGGWRRLRTALVGLVCAGVVAGASTLAYLAWV
VYPSLPPVSALGDYQPAEPLRIFSSDGELLAEYGIERRIPLEAGAIPLRARQALLAAEDA
SFYAHPGVDAGGLLRAVFVDALRGGKAQGGSTITMQLARNFFLSRHKTFARKLYEVLLAI
KLERSLPKDRILQLYMNQIYLGERSYGFGAAARTYYGRDLGELTIAQTAMLAGLPKAPSA
YNPISDPERAQARQRYVLARMREVGYLSPAEYRAALDEPPYQRPEPRRDSVPAGSVSELV
RQMMVERYGEAAYESGFRVTTTVALGEQRAAFEAVRHGAEAYQQRHGYARPEASVAAPVL
VDGQLSEAAAQALKQRPEVGGMSSAVVIGAGAGRLDLMRADGERVALSGGALAVLSSGAG
RRVVLPSSLKPGAIVRIARDGDGRWVLRQLPAVQAALVAISPDDGAIRALVGGNGYTPSQ
LNHVTQAWRQPGSSFKPFIYSAALAKGFAPASVIDDLPLEIPASYPGGPVWRPRESGALL
GPIALREGLARSKNLVAVRVLRAIEPAYAKDYIVRAFGLRSDLIVPNLPMALGAGAVTPL
QMATGYASFANGGFRVQPYLIAKIQDGAGQVLFEAAPARAGADAPRVISAANSYLMTDML
RRAAMHGTGAATNALKRGDLAGKTGTTNNYRDGWFAGYQRQLATVVWMGFDTPASMGPRE
YGARNALPVWIEFMGHALAGVPESIEAPPEDIALIDGEPYDKAFLPGQGFVAGLDAQGAI
PLMAQRAGGEAGAIAAVATSGPVATHADARAASTPGVVSSDEKARILRYFAAPSEAGDGE
GM
NT seq 2529 nt   +upstreamnt  +downstreamnt
atgttccttcgcaagcccgatccctcgacagccccttcctccgaaccgcccgggcaaccc
ggcggcgatcgcgcgccgcgccgacgcggcggctggcgccgcctgcgcacggcgctggtc
ggcctggtctgcgccggcgtggtggccggcgcctcgacgctggcctacctcgcatgggtg
gtctacccgtcgctgccgccggtttccgcgctcggcgactaccagcccgccgagccgctg
cggatcttctcctcggatggcgaactgctggccgaatacggcatcgagcgccgcattccg
ctggaggcgggggcgatcccgctgcgcgccaggcaggccctgctggcggccgaggatgcg
agtttctacgcgcatcccggcgtcgacgcgggcggactgctgcgcgcggtgttcgtcgac
gcgctgcgcggcggcaaggcgcaaggcggcagcaccatcaccatgcagctggcacgcaac
ttcttcctgtcgcgccacaagaccttcgcgcgcaagctctacgaggtgctgctcgccatc
aagctcgaacgcagcctgcccaaggaccgcatcctgcagctctacatgaaccagatctac
ctgggcgagcgttcctacggcttcggggcggcggcgcgtacctattacgggcgcgacctg
ggcgaactgacgatcgcgcagacggccatgctcgcgggcctgccgaaggcgccttcggcc
tacaacccgatcagcgatcccgagcgggcgcaggcacgccagcgttacgtgctggcgcgc
atgcgcgaggtgggctacctgagcccggccgagtatcgcgccgcgctcgacgagccgccg
taccaacggcccgagccgcgccgcgattcggtgccggccggctcggtcagcgagctggtg
cggcagatgatggtcgagcgctacggcgaggcggcctacgaatcgggcttccgggtcacc
accacggtggcgctgggcgagcagcgcgccgccttcgaggcggttcggcacggcgccgag
gcgtatcagcagcgtcatggctacgccaggccggaggccagcgtggccgcgccggtgctg
gtcgatggacagttgtccgaagcagcggcgcaggcgctgaagcagcgacccgaagtcggc
ggcatgtccagcgcggtggtgatcggcgccggcgccggccgtctcgacctgatgcgcgcc
gacggcgagcgcgtggcgttgtcggggggcgcgctggcggtgctgtcgtccggcgccggg
cggcgcgtggttttgccttcgtcgctgaagcccggcgcgatcgtgcgcatcgcgcgcgat
ggcgatggccgctgggtgctgcgccagttgccggcggtgcaggcggcgctggtcgcgatc
tcgcccgacgacggcgcgatccgcgcgctggtcggcggcaacggctacacgccgagccag
ctcaaccacgtcacccaggcctggcggcagcccggctcgagcttcaagcccttcatctat
tcggcggcgctggccaagggcttcgcgccggccagcgtgatcgacgacctgccgctggag
atccccgccagctacccgggcggcccggtctggcggccgcgcgagagcggcgcgctgctc
gggccgatcgcgttgcgcgagggcttggcgcgctcgaagaacctggtcgcggtgcgcgtg
ctgcgcgcgatcgagccggcctatgccaaggactacatcgtgcgcgccttcgggctgcgc
tccgacctgatcgtgccgaacctgccgatggcgctgggtgcgggcgcggtcacgccgctg
cagatggcgaccggctacgcgagcttcgccaacggcggcttccgcgtgcagccctacctg
atcgcgaaaatccaggacggcgcggggcaggtgctgttcgaggcggcgccggcgcgtgcc
ggtgccgacgcgccgcgcgtgatcagcgccgccaacagctacctgatgaccgacatgctg
cggcgcgcggcgatgcacggcacgggcgcggccaccaatgcgctcaaacgcggcgacctg
gctggcaagaccggcaccaccaacaactatcgcgacggctggttcgccggctaccagcgg
caactggcgaccgtggtgtggatgggcttcgatacgccggcctcgatggggccgcgcgag
tacggcgcgcgcaatgcgctgccggtctggatcgagttcatggggcatgcgctggcgggc
gtgccggaatcgatcgaggcgccgcccgaggacatcgcgctgatcgacggcgagccttac
gacaaggctttcctgccgggccagggtttcgtcgccgggctcgatgcgcagggtgcgatt
ccgctgatggcgcagcgcgccggcggcgaggctggcgcgatcgcggcggtggccacgtcg
gggccagtcgcgacgcacgccgatgctcgagcggcgtcgacgcccggcgtggtgtcctcc
gacgagaaggcgcgcatcctgcgctacttcgcggcgccttcggaggcgggggacggggag
gggatgtag

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