Cupriavidus gilardii: CR3_1015
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Entry
CR3_1015 CDS
T04050
Name
(GenBank) Selenium-binding protein 1
KO
K17285
methanethiol oxidase [EC:
1.8.3.4
]
Organism
cgd
Cupriavidus gilardii
Pathway
cgd00920
Sulfur metabolism
cgd01100
Metabolic pathways
cgd01120
Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:
cgd00001
]
09100 Metabolism
09102 Energy metabolism
00920 Sulfur metabolism
CR3_1015
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:
cgd04147
]
CR3_1015
Enzymes [BR:
cgd01000
]
1. Oxidoreductases
1.8 Acting on a sulfur group of donors
1.8.3 With oxygen as acceptor
1.8.3.4 methanethiol oxidase
CR3_1015
Exosome [BR:
cgd04147
]
Exosomal proteins
Exosomal proteins of breast milk
CR3_1015
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
SBP56
Rad54_N
Motif
Other DBs
NCBI-ProteinID:
ALD90259
LinkDB
All DBs
Position
1:complement(1201270..1202679)
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AA seq
469 aa
AA seq
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MSLRPDPTFHASPALAMQAPAEEYAYTVMLSPDGSQPDALAVIDVKPGSPTYSQVVHTVP
MTHRGDELHHFGWNACSSALSPLTGHAFLERRFLIIPGMRSSRIYIVDTKPHPTQAAIHR
VIEPDEIFRKTGYSRPHTVHCGPEGIYVSTLGGAGKDGTDGAPGIFIMDCETFDVLGRWE
IDRGPQDKHYDFWWNLPRDYMVSSEWALPPQFENGLVPEDLLSNRYGHRLHFWDLRARRN
VQTIDLGAQHQMALEVRPAHDPVREYGFVGVVVDTTNLEGSIWTWWREDGQFHVEKTATI
PAEPAAADLLPPMLQPFGAVPPLVTDIDLSLDDRFLYVSCWGTGEMRQYDVTDPRKPRLT
GSVHLGGIARRTPHPNGKPFAAGPQMVEISRDGRRVYWSNSLYSSWDDQFYPDGVPGAQV
MAHADPDGGLTLADDFWVEFPAGYRAHQIRLEGGDCSTDSFCYPSVGPR
NT seq
1410 nt
NT seq
+upstream
nt +downstream
nt
atgagcctgcggccagatcccacattccacgcttcaccggcgctggcgatgcaagcgccg
gccgaggagtacgcctacacggtgatgctgagccccgatggctcccagcccgatgcgctg
gccgtcatcgacgtcaaaccgggctcgccgacctacagccaggtcgtgcatacggtgccg
atgacccatcgcggcgacgaactgcaccacttcggctggaatgcctgctcctccgcgctg
tctccgctgaccgggcatgcgtttctggaacggcgcttcctgatcatccccggcatgcgc
tcgtcgcggatctatatcgtcgacacgaagccgcatccgacccaggcggcgatccaccgc
gtgatcgagcccgacgagatcttccgcaagaccgggtattcgcggccgcacaccgtgcat
tgcggccccgagggcatctatgtcagcacgctcggcggcgccggcaaggatggcaccgac
ggcgcgcccggcatcttcatcatggactgcgagaccttcgacgtgctgggccgctgggag
atcgaccgcggcccgcaggacaagcactacgacttctggtggaacctgccgcgcgattac
atggtatcgagcgaatgggcgctgccgccgcagttcgagaacggcctggtgcccgaggac
ctgctgtccaaccgctatggccatcgcctgcacttctgggacctgcgcgcgcggcgcaac
gtgcagaccatcgacctcggcgcgcagcatcagatggcgctcgaagtgcgccctgcccac
gacccggtgcgcgaatacggcttcgtcggcgtggtggtcgacaccaccaatctcgaagga
tcgatctggacgtggtggcgcgaggacgggcaattccacgtcgagaagaccgcgacaatt
ccggccgaaccggccgccgccgacctgttgccgccgatgctgcagccgttcggcgccgtg
ccgccgcttgtgaccgacatcgacctgtcgctcgacgaccgctttctctacgtgtcgtgc
tggggcaccggagagatgcgccagtacgacgtcaccgacccgcgcaagccacggctgacg
ggttccgtccatctgggtggcatcgcgcgccgcacgccgcatccgaacggcaagccgttc
gccgcgggaccgcagatggtggagatcagccgcgacggccgccgcgtctactggtccaat
tcgctctattcgagctgggacgaccagttctatcccgacggcgtgccgggggcccaggtg
atggcgcatgccgatcctgacggcggcctgacgctggccgacgacttctgggtcgagttc
cccgcgggctaccgcgcccatcagatccgcctcgaaggcggcgactgctcgaccgattcg
ttctgctatccgtccgtcggaccgcgatga
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