Sinorhizobium meliloti 2011: SM2011_a2363
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Entry
SM2011_a2363 CDS
T02497
Name
(GenBank) Amidase
KO
K01426
amidase [EC:
3.5.1.4
]
Organism
smel
Sinorhizobium meliloti 2011
Pathway
smel00330
Arginine and proline metabolism
smel00360
Phenylalanine metabolism
smel00380
Tryptophan metabolism
smel00627
Aminobenzoate degradation
smel00643
Styrene degradation
smel01100
Metabolic pathways
smel01120
Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:
smel00001
]
09100 Metabolism
09105 Amino acid metabolism
00330 Arginine and proline metabolism
SM2011_a2363
00360 Phenylalanine metabolism
SM2011_a2363
00380 Tryptophan metabolism
SM2011_a2363
09111 Xenobiotics biodegradation and metabolism
00627 Aminobenzoate degradation
SM2011_a2363
00643 Styrene degradation
SM2011_a2363
Enzymes [BR:
smel01000
]
3. Hydrolases
3.5 Acting on carbon-nitrogen bonds, other than peptide bonds
3.5.1 In linear amides
3.5.1.4 amidase
SM2011_a2363
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Motif
Pfam:
Amidase
Motif
Other DBs
NCBI-ProteinID:
AGG70981
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Position
pSymA:1331099..1332514
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AA seq
471 aa
AA seq
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MAGDATSLGQAIQMGRLTASEAMEASLAAACQLAETGAIVHVDPTLGRTAAENADARLRH
LPGGGRIPPFLGVPSLAKDLGGPFAGLSVAAGSNMLERRAAVAEDSDLAERLRGTGLCFF
GLTTVPEMGLSLASEPAAGPICRNPLDAGRTPGGSSGGAAAAVAAGIVAIAHATDAGGSM
RVPAACCGLFGLKASRGAIAAGPSFGNHLGGIASELALCRSVRDLAVIFNAAAGRARGPF
ADPWFAPSPPGPLRVGLLLETGDQYPTEPARSEAVEEAARALEADGHSVVPMYWDAFAAS
VATSGRALRDIIAVNLANFVVSAGLDAGRSERLTQAFINHGSQLEATALWATLGDAVHAS
HAVWSLFDRVDCILTPMLASAPLPIGSFPFDHDDIDLQIRRMTAFAPLAALANATGFPAL
TLPFGADDAGLPLPVQILAPMGGDRLLIELAARLEREGRWQHRFAVAGIPE
NT seq
1416 nt
NT seq
+upstream
nt +downstream
nt
atggcaggtgatgcaacttccctcggtcaggcgatccaaatgggccgcctcaccgcttcc
gaagcgatggaagcatccctggcggcggcctgccaattggcagaaacaggcgcaatcgtc
cacgtcgacccaacgctcggacgaacggccgcagaaaatgcggacgcccgcctgcgccac
ctgccgggcggcgggcggattccaccattcctcggcgtcccgagccttgccaaggatctg
ggcggcccctttgccggcctttcagttgcggccggatcgaacatgctcgagcgccgtgcc
gccgtcgcggaagacagcgatctggcagagcggctccgcggaacaggcctttgcttcttc
ggactgaccaccgtgccggaaatgggcctctcgctcgcaagcgaaccggcggccggcccc
atctgccgcaaccccctcgatgccggccggacgcccggcggctcctccggcggggcggcg
gctgccgttgccgccggcatagtggcgatcgcccatgcgacggatgcgggcgggtcgatg
cgcgtccccgcggcatgttgcggtctcttcggcctcaaggcgagccggggtgcgatcgcg
gctggaccatccttcggcaatcatctcggcggcattgccagtgaactggcgctgtgccgc
tccgtccgcgaccttgcggtgatcttcaacgcggcagccggacgcgcaaggggaccgttt
gccgatccgtggttcgccccctccccgcccggccccttacgtgtcggtcttcttctcgag
accggcgaccaatacccgaccgaaccggcgcgcagcgaggctgtcgaagaggccgcgcgc
gcactggaggcggacggccacagcgtcgttccgatgtattgggatgcatttgccgcaagc
gttgcgacgagcggccgggctctgcgcgacatcattgccgtcaaccttgccaatttcgtc
gtttccgccggtctcgatgccgggcgctcggaacggctgacgcaggcttttatcaaccat
ggatcgcaactcgaggcgaccgcgctctgggcgacgctcggcgacgccgtccatgcgagc
cacgcggtctggtcgcttttcgaccgggtagactgtattctgacgcccatgcttgcttcg
gcaccccttccgatcggatcctttcctttcgaccacgacgatatcgaccttcagattcgc
cgcatgactgcatttgcgccactcgccgcactcgccaatgcgaccggctttccggccctc
acgctccccttcggcgcggatgacgccggattgccgctgccggtgcagatcctggcgccc
atgggcggcgaccgcctcctcatcgagcttgcggcacgcctggaaagagagggccgctgg
cagcaccgtttcgcggtcgcgggaattccggaatga
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