Fidelibacter multiformis: FMIA91_09000
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Entry
FMIA91_09000 CDS
T10786
Symbol
asnB_2
Name
(GenBank) asparagine synthase B
KO
K01953
asparagine synthase (glutamine-hydrolysing) [EC:
6.3.5.4
]
Organism
fml Fidelibacter multiformis
Pathway
fml00250
Alanine, aspartate and glutamate metabolism
fml01100
Metabolic pathways
fml01110
Biosynthesis of secondary metabolites
fml01230
Biosynthesis of amino acids
Brite
Enzymes [BR:
fml01000
]
6. Ligases
6.3 Forming carbon-nitrogen bonds
6.3.5 Carbon-nitrogen ligases with glutamine as amido-N-donor
6.3.5.4 asparagine synthase (glutamine-hydrolysing)
FMIA91_09000 (asnB_2)
Peptidases and inhibitors [BR:
fml01002
]
Cysteine peptidases
Family C44
FMIA91_09000 (asnB_2)
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Other DBs
NCBI-ProteinID:
BFN37021
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Position
complement(1060695..1062353)
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AA seq
552 aa
AA seq
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MCGIVCCFEIRTGMESMRPRILDMAKKVRHRGPDWSGIYGSNRAIMAHERLAIVDPQSGG
QPLYSPDKKLILAVNGEIYNHQSIRKRYEGTYPFMTHSDCEIILPLYRENGADFLEELNG
IFAFALYDEENERYLIARDHIGIIPLYTGRDQLGQFYVASEMKALEGICHQIEIFPPGHY
LDSSIGEIRRWYKRDWVKYEAVKDNTTNLAHLRQSLEHAVHRQLMSDVPYGVLLSGGLDS
SIIAAIARKYAAKRIETGDSQEAWWPRLHSFAIGLEGSPDLIAAKRVADYIGTVHHEIHF
TLQEGLDAIRDVIYHLETYDVTTVRASTPMYLLARVIKSMGIKMVLSGEGSDEIFGGYLY
FHKAPGARDFHDETVRKLEKLHLYDCLRANKSLAAWGIEGRVPFLDKEFLDVAMNINPMD
KMIRPGRMEKWLPRKAFEDLLPADIVWRQKEQFSDGVGYGWIDILKEISSHKVSDEAMEN
AHFRYPVNPPLSKEEYFYRSIFSEHFPSEAAARTVPSVPSIACSTETALSWDKNFSQLAD
PSGRAVKGIHKG
NT seq
1659 nt
NT seq
+upstream
nt +downstream
nt
atgtgtggtattgtctgctgttttgaaatccggaccgggatggaatccatgcgtccccgg
atattggatatggccaagaaggtacgacaccggggaccggattggtcagggatttatggg
tcaaaccgggctattatggcacatgaacgcctggccattgtcgatccccagtccggtggc
cagcctttgtacagtccggacaaaaaactcattttggctgtgaacggtgaaatatacaac
caccagtccatccggaaacggtatgaagggacctatccttttatgactcattccgattgc
gaaatcatcctgccgttatatcgtgaaaatggagcagactttcttgaagagctgaatggg
atttttgcctttgccctgtacgatgaagaaaatgagcgctatttaattgcccgggatcat
atcggcattatacccctctacaccggccgggatcagctggggcaattttatgtggcttct
gagatgaaagccctggaaggaatctgccaccaaattgagatatttccgccaggtcattat
ctggacagttccattggggaaatccgacgttggtataaacgggactgggtaaaatatgaa
gccgtaaaggacaatacaacaaacttggctcacctccgccaatccctagaacatgccgtt
caccgacaactgatgagtgatgtcccatacggggttctcctgtctggtggactcgattct
tcgattattgctgccatcgcccgaaaatatgctgcaaaacgaatagaaaccggggacagt
caggaggcttggtggccgcggcttcattcctttgccatcggtctggaaggatccccggac
ctgatagcggctaaaagagtggcggactacatagggaccgtgcaccatgaaattcatttt
acccttcaggaaggactggacgccatccgggatgtcatctatcatctggaaacatacgat
gtaaccacggtccgggcatctactcccatgtatcttctggcccgggtgataaaatccatg
gggattaaaatggtgctttccggtgagggatccgacgaaatcttcggcggttacctctat
tttcataaagctcccggcgccagggatttccatgatgaaaccgttcgaaagctggaaaag
ctccacctctatgattgtcttcgtgcaaataaatcccttgcagcctggggaattgagggc
agagtcccctttttggataaggaattcctggatgtggccatgaacatcaatccaatggat
aaaatgattcgtccgggccggatggaaaaatggctgcctcgtaaggcatttgaggatttg
ttgccagccgatattgtatggcggcagaaagaacaattttccgacggggtgggatacggc
tggattgatattctgaaagaaataagttcccataaagtctcagatgaagccatggaaaac
gcccatttccgttatcctgtcaatccccccctcagcaaggaagaatatttttaccgaagt
atattttcggaacactttccttcagaagccgctgcccggacagtcccctctgttccatcc
atcgcatgcagcactgaaaccgctctgtcctgggataaaaatttctcccaattggcagat
ccatccggaagagctgttaaaggaatccataaaggataa
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