Entry
Name
(GenBank) bifunctional aspartate kinase/homoserine dehydrogenase I
KO
Organism
clk Capnocytophaga leadbetteri
Pathway
clk00260 Glycine, serine and threonine metabolism
clk00270 Cysteine and methionine metabolism
clk01110 Biosynthesis of secondary metabolites
clk01120 Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:clk00001 ]
09100 Metabolism
09105 Amino acid metabolism
00260 Glycine, serine and threonine metabolism
CGC53_03620
00270 Cysteine and methionine metabolism
CGC53_03620
00300 Lysine biosynthesis
CGC53_03620
09110 Biosynthesis of other secondary metabolites
00261 Monobactam biosynthesis
CGC53_03620
Enzymes [BR:clk01000 ]
1. Oxidoreductases
1.1 Acting on the CH-OH group of donors
1.1.1 With NAD+ or NADP+ as acceptor
1.1.1.3 homoserine dehydrogenase
CGC53_03620
2. Transferases
2.7 Transferring phosphorus-containing groups
2.7.2 Phosphotransferases with a carboxy group as acceptor
2.7.2.4 aspartate kinase
CGC53_03620
BRITE hierarchy
SSDB
Ortholog Paralog Gene cluster GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
Position
complement(834066..836477)
Genome browser
AA seq
803 aa AA seq DB search
MKILKFGGKSLANDGIEKVIDIIITSHKEPLSVVVSARGNTTDELEALLEKASKGEDYTA
DFQHLKNEQQYDPRVSFEPEFQLLEKLLEGVSLLKDYSPKTKDLVLAQGELMSAKLVAAL
LKRKGLESTFIDSREIFKTDAVVGNAQIINSVSEKLTRDRFATIPPNHVAVVTGFIASTE
KGDTTTLGRNGSNYSAALLANYLNASELQNYTHVDGIFTANPELVPEAKIIRHLSYEEAN
ELANFGASILHAKTIIPLIEKGIPLRIKNTFNSDDAGTLIHKESEQEGIKSISVIKDNAL
IVMEGRGLLGKVGVDARIFRALAQKGISVSIISQGSSERGVGLVVASKDAKLAKAAIDEE
FSHDFYTNDVSSVSIVDDVAVISIVGQPLSTFHHPYNALIRNQIVPLLINNAVTGKNVSL
VLKTEKLHKALNVIHGEIFGVSRRINLVIFGKGTVGGTLINQVIAAHDNILQRKNISLRI
VAIANSQKILTAAKGIGKGWEEAFEREAVPYNFDTLQAFVDKNHLENLIAVDVTASKTFV
DNYIPLVKSGYDLVSANKIANTISFSFYQELRKTLKQYQKTYLYETNVGAGLPLIDTIRL
LHHSGENITRIKGIFSGTLSYLFNTFSAEDKPFSEVLQHAINSGYTEPDPREDLCGNDVG
RKLLILARELDLGNEFTDVKIQNLIPEHLREGSVEDFLQRLDEFNAPYQQIKEAQEPDHV
LRYVGDLHGDLASANTVQLDVSLVSVPRNSALGQVKGADSIFEIYTESYGDNPIVIQGAG
AGASVTARGVFGDILRLAEKSRV
NT seq
2412 nt NT seq +upstream nt +downstream nt
atgaaaatattaaaatttggtggtaaatcacttgccaatgatggtattgaaaaggtgatt
gacattatcattacttcacataaagaacctctatcggtagtagtatcagcgagaggtaat
actactgatgaattagaggcactgcttgaaaaagcaagtaaaggagaggattatactgcc
gattttcaacacttgaaaaacgagcagcagtatgatccgcgagtgtcgtttgaacccgaa
tttcagctactcgaaaaacttcttgaaggagtatctctattaaaagattatagtcccaag
actaaagatttggtattggcacaaggcgaactaatgtcagctaaactcgtagcagcacta
ctcaaacgcaagggcttagaaagcacctttattgatagtcgtgaaatcttcaaaaccgat
gctgtagtaggcaatgcacaaattatcaattccgtatccgaaaaactcacccgtgaccgc
tttgctactattcctcccaatcacgtagctgtagttacaggctttattgcctctactgag
aaaggcgataccaccaccttggggcgcaatggtagtaactattcagcagcccttttggct
aactatctcaacgcctctgaactgcaaaactacactcacgtcgatggtatttttactgcc
aatccagaattagtacccgaagcgaaaatcatacgtcatctttcttatgaagaagctaat
gagttggctaactttggggcttctatacttcacgctaaaaccattattccgcttattgag
aagggtataccattgcgcattaagaacactttcaatagtgatgatgcaggtacactcatt
cacaaagagagcgagcaagagggtatcaaatcgatttcagttattaaagataacgccctt
atcgtgatggaaggtcgcggactccttggcaaggtgggggttgatgcccgcatttttagg
gctttggcacagaaaggtattagtgtgagcattatctctcaaggttcatcagagcgcgga
gtaggtttggtagtagcttctaaagatgctaaacttgctaaagccgctatagacgaagag
ttttcgcacgacttctataccaatgatgtgagcagtgtgagcatcgtagatgatgtagca
gtcatctcaattgtagggcaacctctctctactttccatcacccttataatgcactgata
cgcaaccagatagtccctttacttatcaataatgccgtaacgggtaaaaacgttagtttg
gtgcttaagaccgaaaagcttcacaaggcactaaatgttatccacggcgaaatctttggg
gtgtcacgccgtatcaacttggttattttcggcaaaggtacagtgggtggtacgcttatc
aaccaagtgatagctgcccacgataatatcttgcaacgcaagaatattagcttgcgtatt
gtagccattgctaattctcagaaaatactcactgctgccaaagggattggcaaaggttgg
gaagaggcttttgagcgcgaagctgtaccttataactttgatactttacaagcctttgtt
gataaaaatcacttagaaaaccttattgcagtagatgtaaccgccagcaagactttcgta
gataactacattcctctggttaagagtggttacgaccttgtttcagctaataaaatagcc
aatactatctcgttcagcttctaccaagaactgcgcaaaacccttaagcaataccaaaaa
acgtatctttatgaaaccaatgtaggagcaggattgccgttgatagataccattcgccta
ctacaccattcgggcgagaacattacccgtatcaaggggatattctcaggtacgctcagc
tacctgttcaataccttttcagcagaagataagccgtttagcgaagtgctccaacacgct
attaacagtggatataccgagcctgaccctcgtgaagacctttgcggtaatgatgtagga
cgcaagctacttatcttagcccgcgagcttgacttaggcaatgaattcactgatgtaaag
atacaaaaccttatcccagagcatctgcgagagggctctgtcgaagactttttgcaacgt
ttagacgagtttaatgccccttatcagcaaataaaagaagcccaagagcctgaccatgta
ctgcgctatgtaggcgacctccacggcgatttagcttctgctaatacagtgcagttagac
gtatcgttagtatctgtccctcgcaatagtgctcttggtcaggtaaaaggagctgattca
atctttgagatttatacagaatcttatggcgataaccctattgtcatacaaggggcagga
gcaggagcctcagtaacagcacgaggcgtatttggcgatattctaagattagcagaaaag
agtagagtgtaa