Serpentinimonas maccroryi: SMCB_1730
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Entry
SMCB_1730 CDS
T03627
Name
(GenBank) cell division protein FtsI/penicillin-binding protein 2
KO
K05515
penicillin-binding protein 2 [EC:
3.4.16.4
]
Organism
cbab
Serpentinimonas maccroryi
Pathway
cbab00550
Peptidoglycan biosynthesis
cbab01100
Metabolic pathways
cbab01501
beta-Lactam resistance
Brite
KEGG Orthology (KO) [BR:
cbab00001
]
09100 Metabolism
09107 Glycan biosynthesis and metabolism
00550 Peptidoglycan biosynthesis
SMCB_1730
09160 Human Diseases
09175 Drug resistance: antimicrobial
01501 beta-Lactam resistance
SMCB_1730
09180 Brite Hierarchies
09181 Protein families: metabolism
01011 Peptidoglycan biosynthesis and degradation proteins [BR:
cbab01011
]
SMCB_1730
Enzymes [BR:
cbab01000
]
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
SMCB_1730
Peptidoglycan biosynthesis and degradation proteins [BR:
cbab01011
]
Peptidoglycan biosynthesis and degradation
DD-Transpeptidase (Class B PBP)
SMCB_1730
SSDB
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Paralog
GFIT
Motif
Pfam:
Transpeptidase
PBP_dimer
Motif
Other DBs
NCBI-ProteinID:
BAO83958
UniProt:
A0A060NWP8
LinkDB
All DBs
Position
complement(1862589..1864625)
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AA seq
678 aa
AA seq
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MHDVELQLLRFRRRAQIALVVVLLALGLLALRMYVLQIQRHADLQTRAESNRTAVIPLPP
LRGQIVDRHGVLLADSLAVFTLEITPALVADMDHTLQTLAELVPITPGELRRFQRLRAES
HRFASLPLRSRLTPEEMSVLAAQLFRLPGVSIQARHLRYYPLGASAAHVVGHVGRINQRD
RERMAEWPPEKQANYRGSDHIGRLGVEQSHEALLHGSTGFRRVEINSHGQVLRTLETVPA
RTGQTLRLTLDARLQHLVEQLFGARRGALVAIDVRNGEVLAFVSMPSFDPNSFVDGIGVE
EWRALNESIERPLFNRALRGTYPPGSTFKPFMALAGLELGLRRPETTVYDPGFWVLGNQR
FRSVGERHLGHVDLRSGMAVSSNVYYYTLAHEMGIDVLHGFMHPQGFGQRTGIDLVGEGR
GLLPNQAWKRSAYSHPAQQRWFPGDTVAVGIGQGYSAFTMLQLAHATATLANGGVRHQPH
LGLRAYALGEPRGRELATHQGTPMGWQSQNLQAVLEAMEAVNLPGGTAAGVFAGAPYRSG
GKTGTAQAVGIGQRERYDAAQLEEHQRSHSLYIGFAPLEAPTVALAVIVENAGFGSVAAA
PIARRVFDYLLLGLYPSEADIAATALGQTRAPTGLQRLAREVAWPGRPAPPAPQPAPAVQ
PALVSQPAPATQPAAVPR
NT seq
2037 nt
NT seq
+upstream
nt +downstream
nt
atgcacgacgttgaacttcagctgttgcgttttcgacgccgggcgcagatcgcgctcgtg
gtggtgttgctggccttggggctgctggctttgcgcatgtatgtgctgcaaattcagcgc
catgccgatttacagacccgcgccgagagcaaccgcaccgccgtcatcccgctgccgccg
ttgcgtggccagatcgtggaccgccacggtgttctgctggccgacagcctggcggtgttt
acgctcgaaatcacgccggctttggtggccgacatggaccacaccctgcagacgctggcc
gagctggtgccgatcaccccgggcgagttgcgccgctttcaacgcctgcgcgccgaatcg
caccgctttgcctcgctgccgctgcgcagtcggctgacgcccgaagaaatgtcggtgctg
gcggcgcaactgtttcgcctgcccggggtctcgatccaggcgcggcacctgcgctactac
ccgctgggtgcgtcagcggctcatgtggtcggacatgtggggcgcatcaaccagcgcgac
cgcgagcgcatggccgaatggccgcccgaaaagcaagccaactaccggggctccgaccac
atcggcagactgggggtggagcaaagccacgaagcgttgctgcacggcagcaccgggttt
cgccgggtcgagatcaactcgcacggccaggtgctgcgcacgctcgagaccgtgcccgcc
cgcaccggccaaacgctgcgcctgacgctggatgcgcgcttgcagcacttggtggaacaa
ctgtttggcgcgcgccgcggtgccttggtggccatcgacgtgcgcaacggcgaggtgctg
gctttcgtgagcatgcccagttttgaccccaattcttttgtcgatggcatcggcgtggaa
gaatggcgcgccctgaacgagtcgatcgagcgcccgctgttcaaccgggctttgcgcggc
acctatccgccgggctcaaccttcaagcccttcatggccttggccgggctggagctgggg
ctgcgccgccccgaaaccacggtctatgacccgggcttttgggtgctgggcaaccaacgt
tttcgcagcgtgggcgagcgccatttggggcacgtggacttgcgcagcggcatggcggtg
tcgagcaacgtgtactactacacgctggcgcacgagatgggcatcgacgtcctgcacggc
tttatgcacccccaaggctttggccagcgcaccggcatcgacttggtgggcgaggggcgc
ggcctgttgcccaaccaagcttggaagcgcagcgcctacagccacccggcgcagcagcgc
tggttccctggtgacacggtggccgtgggcatcgggcagggctacagcgcgtttaccatg
ctgcaactggcccatgccaccgccaccttggccaacgggggcgtgcgccatcagccgcac
ttggggctgcgcgcctacgccttgggtgagccccgggggcgcgaactggcgacgcaccaa
ggcacgcccatgggctggcagagccagaacctgcaagcggtgctcgaggccatggaggcg
gtgaacctgcccggcggcacggcggcgggggtgtttgccggtgcgccctaccgcagcggt
ggcaagaccggcaccgcgcaggcggtgggtatcgggcaacgggagcgctacgacgccgcg
cagctcgaggagcaccagcgcagccactcgctctacatcggctttgcgccgctggaggcg
cccacggtggcgctggcggtgatcgtggagaacgccggctttggctcggtggccgcggcc
ccgatcgcgcgccgggtgttcgactacctgctgctgggcctgtacccgagcgaggccgac
atcgccgccaccgccctgggccagacccgagcgcccacggggctgcagcggctggcgcgc
gaagtcgcctggccggggcgcccagcgccgccagccccgcaaccagcgccggccgtgcag
ccagcgctggtctcgcagccagcgccagcgactcaaccagctgcggtgccccggtag
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