Eikenella corrodens: SAMEA4412678_1250
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Entry
SAMEA4412678_1250 CDS
T05039
Name
(GenBank) Acyl-CoA dehydrogenase, short-chain specific
KO
K20035
3-(methylsulfanyl)propanoyl-CoA dehydrogenase [EC:
1.3.99.41
]
Organism
ecor
Eikenella corrodens
Pathway
ecor00920
Sulfur metabolism
ecor01100
Metabolic pathways
ecor01120
Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:
ecor00001
]
09100 Metabolism
09102 Energy metabolism
00920 Sulfur metabolism
SAMEA4412678_1250
Enzymes [BR:
ecor01000
]
1. Oxidoreductases
1.3 Acting on the CH-CH group of donors
1.3.99 With unknown physiological acceptors
1.3.99.41 3-(methylsulfanyl)propanoyl-CoA 2-dehydrogenase
SAMEA4412678_1250
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Motif
Pfam:
Acyl-CoA_dh_1
Acyl-CoA_dh_M
Acyl-CoA_dh_N
Acyl-CoA_dh_C
ACOX_C_alpha1
Acyl-CoA_dh_2
DUF6193
Motif
Other DBs
NCBI-ProteinID:
SNW08822
UniProt:
A0A8B4GG73
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Position
1:complement(1266786..1268549)
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AA seq
587 aa
AA seq
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MSYRAPINELLFALQTHGNLAEITQWYAESGLDEDTAAAIIEEAAKFSEEVFLPTSRTGD
LHGARLENGKVITHPDLAAAYQAFCEAGWPGLRAPAEYGGQGLPAVISAACEEMYYCGNL
ALSLLPMLTVGAVETIAKHGSEEQKQTFLPKMSQGLWSGTMNLSEPQAGTDLSQVATKAV
PQEDGSYRISGQKTFITWGEHELTENIIHLVLARLPGTTSGIKSLSLFIVPKYKIKPDGS
IGERNGVSATAIEHKMGIHASPTCVMQFDEAEGYLIGKAGRGLLYMFTMMSHARLGVGIE
GHAVAEAAYQQALAYAHERIQGSAPDGTPLTIIHHPDVARMLLVQKATIAAQRALYLQAA
AALDASHQHPEPAAKKAAKGRLDYLIPIVKAWCSDNGTVLANLAMQVFGGAGYIEETGIA
QLVRDVRITAIYEGTNGVQAADLARKTVSDKGSLVRTLLAEAQQTANELAAVEPATAEPL
QRALELAERSTVLLVQQHEANPAATALNAAAYLEQISLTLGASALAQNFLAARNAEARFG
SAFCQAQQHTARAYLAYVLPQAHACTERIRQGAEPLLAVPFEAFASS
NT seq
1764 nt
NT seq
+upstream
nt +downstream
nt
atgtcctaccgcgcccccatcaacgaactcttattcgccctgcaaacccacggcaacctg
gctgaaatcacccaatggtatgccgaaagcggtttggacgaagacaccgccgccgccatc
atcgaagaagcggccaagttcagcgaagaagtcttcctgcccaccagccgcaccggcgat
ttgcacggcgcgcgattggaaaacggcaaagtcatcacccatcccgacctcgccgccgcc
taccaagccttctgcgaagccggctggcccggcctgcgcgccccggccgaatatggcggc
caaggcctgcctgcggtgatttccgccgcgtgcgaagaaatgtactactgcggcaacctc
gccctctcgctgctgcccatgctcaccgtgggcgcggtggaaaccattgccaaacacggc
tccgaagagcaaaagcaaaccttcctgcctaaaatgagccaaggcctctggagcggcacc
atgaacctctccgagccgcaggccggcaccgacctctcccaagtagccaccaaagccgtg
ccgcaggaagacggcagctaccgcatcagcggccagaaaaccttcatcacctggggcgaa
cacgagctgaccgaaaacatcatccacctcgtgcttgcccgcctgcccggcaccacctcc
ggcattaaaagcctttccctgtttatcgtgcccaaatacaaaatcaagcccgacggcagc
atcggcgagagaaacggcgtgtccgccaccgccatcgaacacaaaatgggcatccacgcc
agccccacctgcgtgatgcagttcgacgaagccgaaggctacctcatcggcaaagccggg
cgcggcctgctttatatgttcaccatgatgagccacgcccgcctaggcgtgggcatcgaa
ggccacgccgtggccgaagccgcctaccagcaggcgctggcctacgcccacgagcgcatc
caaggcagcgcgcccgacggcaccccgctcaccatcatccaccaccccgacgttgcccgc
atgctgctggtgcaaaaagccaccatcgccgcccagcgcgccctgtatctccaagccgcc
gccgcgctcgacgcctcgcaccaacatcccgagcccgccgccaaaaaagccgccaaaggc
cggctcgactacctcatccccattgttaaggcctggtgcagcgacaacggcaccgtgctc
gccaacctcgccatgcaggtgttcggcggcgcaggctatatcgaagaaaccggcatcgcc
cagctcgtacgcgacgtgcgcatcaccgctatctacgaaggcaccaacggcgtgcaggct
gccgatctcgcccgcaaaaccgtgtccgacaaaggcagcctcgtgcgcaccctgctcgcc
gaagcccagcaaaccgccaacgagctcgccgccgttgagcccgccaccgccgagccgctc
caacgcgccctcgaattagccgaacgcagcaccgtcctcctcgtgcagcagcacgaagcc
aaccccgctgccaccgccctaaacgccgccgcctatctggagcaaatctccctcaccctc
ggcgcgtccgccttggcgcaaaacttcctggctgcgcgcaacgcagaagcacgctttggc
agcgcattctgccaagcccagcagcacaccgcccgcgcctacctagcctacgtgctgccc
caagcccacgcctgcaccgaacgcatccgccaaggcgccgagcccctgctcgccgtgccg
tttgaagccttcgcttcgtcttaa
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