Burkholderia gladioli ATCC 10248: BM43_6603
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Entry
BM43_6603 CDS
T03826
Name
(GenBank) hypothetical protein
KO
K01114
phospholipase C [EC:
3.1.4.3
]
Organism
bgo
Burkholderia gladioli ATCC 10248
Pathway
bgo00562
Inositol phosphate metabolism
bgo00564
Glycerophospholipid metabolism
bgo01100
Metabolic pathways
bgo01110
Biosynthesis of secondary metabolites
bgo02024
Quorum sensing
Brite
KEGG Orthology (KO) [BR:
bgo00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00562 Inositol phosphate metabolism
BM43_6603
09103 Lipid metabolism
00564 Glycerophospholipid metabolism
BM43_6603
00565 Ether lipid metabolism
BM43_6603
09140 Cellular Processes
09145 Cellular community - prokaryotes
02024 Quorum sensing
BM43_6603
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
02042 Bacterial toxins [BR:
bgo02042
]
BM43_6603
Enzymes [BR:
bgo01000
]
3. Hydrolases
3.1 Acting on ester bonds
3.1.4 Phosphoric-diester hydrolases
3.1.4.3 phospholipase C
BM43_6603
Bacterial toxins [BR:
bgo02042
]
Type II toxins: Membrane damaging toxins
Toxins that enzymatically damage the membrane
BM43_6603
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Paralog
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Motif
Pfam:
Phosphoesterase
PLipase_C_C
UCR_Fe-S_N
Motif
Other DBs
NCBI-ProteinID:
AJW94782
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All DBs
Position
2:3088822..3090696
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AA seq
624 aa
AA seq
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MTSNKRRDFLKLGTHTLAAAGMASVLPPAIRNALAQTTPPGKLADIEHVIIFMQENRSFD
HYFGMLPGVRGLSDPHPAPLPSGQTIWYQPNNGTGSYAARNPSGKLVANVMPYPLNPGTG
SPVNYQGVNLNHDWKGSQSTWANWNAWIQKKGYRSMGYLKPADLPFYYALANAFTVCDAY
HCSLFGPTNPNRRYLWTGTSGAGTITNSSWTHYIVENDDLWESNVTSDPANDRGQQNGWD
WKTYADVLEDNQVNWKVYQGYGNYGDNALAYFNPFRRGGDADKIARARSYGGKSGDNDAQ
SANGLIAALQADLAAKDANGKSSFPAVSWIVAPYTYCEHPTALSSDGESFAERVINTVIG
SKDVWSKCAIFITYDENDGYFDHVPPPIPPLDGYGKHNLQTAAGTPIDLGDETYQSTPIG
LGPRVPMMVVSPWSKGGRVSSRLSDHTSVIRFLETWLTARGYPAGKVQCPNISAWRRAVC
GDLTETLNLAAPVNTPSDSDVLHWSITEPSNGPNSSYAPYPYSDGDTFSPGVPAKSRGAC
PLPYQAAVTARKSGTSIALSFDNTKSSAAATFIVYVNALSSAQKVFHYSVAAGTTLDDSL
VLSASDSQCQVFGPPSPGGYFWKF
NT seq
1875 nt
NT seq
+upstream
nt +downstream
nt
atgacatcgaacaaacgccgcgattttctgaaactgggaacccacacgctggccgccgcc
ggcatggcgtcggtcctgccccccgcgatccgtaacgcgctcgcccagaccacgccgccg
ggaaagctcgccgacatcgagcacgtgatcatcttcatgcaggagaaccgctcgttcgac
cattacttcggcatgctgccgggcgtgcgcggcctctccgatccgcatccggcgccgctg
ccgagcggccagacgatctggtaccagccgaacaacggcacgggcagctacgccgcgcgc
aatccctcgggcaagctggtggccaacgtgatgccctatccgctcaatcccggcaccggc
agccccgtcaattaccagggcgtcaatctcaatcacgactggaagggctcgcaaagcacc
tgggccaactggaacgcctggatccagaagaagggctacaggagcatgggctacctgaag
cccgccgacctgcccttctactacgcgctcgccaatgccttcacggtctgcgacgcctat
cactgctcactgttcggcccgaccaacccgaaccgccgctacctgtggaccggcacctcg
ggcgccggcacgatcaccaattcgtcctggacgcactacatcgtcgagaacgacgacctg
tgggagagcaacgtcacctcggatccggccaacgacaggggccagcagaacggctgggac
tggaagacctatgccgacgtgctcgaggacaaccaggtgaactggaaggtgtaccagggc
tacggcaactacggcgacaacgcgctggcctacttcaacccgttccggcgcggcggcgat
gccgacaagatcgcgcgggcgcgcagctacggcggcaagtccggcgacaacgacgcgcaa
tcggccaacggcctgatcgccgcgctgcaggccgacctggcggccaaggacgcgaacggc
aagagcagcttcccggccgtctcgtggatcgtcgcgccctatacctattgcgagcacccg
accgcgctctcgagcgacggcgaatccttcgccgagcgcgtgatcaacacggtgatcggc
agcaaggacgtgtggagcaagtgcgcgatcttcatcacctatgacgagaacgacggctac
ttcgaccacgtgccgccgccgatcccgccgctcgacggctacggcaagcacaacctgcag
accgccgccggcacgccgatcgatctcggcgacgaaacctaccagtcgaccccgatcggg
ctcgggccgcgcgtgccgatgatggtggtgtcgccgtggagcaagggcgggcgcgtgtcc
tcacgactctcggaccacacctcggtgatccgcttcctagagacctggctcaccgcgcgc
ggttatcccgccggcaaggtgcaatgcccgaacatctcggcctggcgccgcgccgtgtgc
ggcgatctcaccgagacgctgaacctggcggcgcctgtcaacacgccgagcgactcggac
gtgctgcactggtcgatcaccgagccgagcaacgggccgaactcgagctacgcgccctat
ccgtattcggacggcgataccttctcgccgggcgtgcccgccaagtcgcgcggcgcctgc
ccgctgccttaccaggccgcggtcacggcccgcaagtccggcacctcgatcgcgctgagc
ttcgacaatacgaaatccagcgccgccgccaccttcatcgtctatgtgaacgccctgagt
tcggcgcagaaggtgttccactactcggtggcggccggcaccacgctcgatgattcactg
gtgctgagcgcgagcgacagccagtgccaggtgttcgggcccccgtcgccgggcgggtat
ttctggaagttctga
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