Entry
Name
(RefSeq) quinolinate synthase, chloroplastic-like
KO
Organism
tang Typha angustifolia (narrow-leaf cattail)
Pathway
tang00760 Nicotinate and nicotinamide metabolism
Module
tang_M00115 NAD biosynthesis, aspartate => quinolinate => NAD
Brite
KEGG Orthology (KO) [BR:tang00001 ]
09100 Metabolism
09108 Metabolism of cofactors and vitamins
00760 Nicotinate and nicotinamide metabolism
140758183
Enzymes [BR:tang01000 ]
2. Transferases
2.5 Transferring alkyl or aryl groups, other than methyl groups
2.5.1 Transferring alkyl or aryl groups, other than methyl groups (only sub-subclass identified to date)
2.5.1.72 quinolinate synthase
140758183
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Motif
Motif
Other DBs
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All DBs
Position
3:complement(join(5056477..5056545,5056954..5057115,5057678..5058190,5060077..5060256,5060464..5060682,5061842..5062126,5065258..5066025))
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AA seq
731 aa AA seq DB search
MDSSAALLSRIRVLPNPNPNSNHYSIPIHSTAWRPRQLMPRLSSIAVKCLQAGNSNPNPN
PTVGSAPGSLLSCSAVASQEAPPAADVARARLRRLVDEFRSLPEPIDRVKRLIAYAAALP
PFPEEDRVSRNRVMGCTAQVWLTASVDEVGRMRFTADSDSEITKGYCSCLLSVVDGASPE
EVLEMRPEDFGDLNVVGLTGRTHSRINTWHNVLMSMQKRTKALIAAREGRPPVEPFPSLV
IGVDGIHAKGSYAEAQAKFLSPDSLKIKELVNVLREKKIGVVAHFYMDPEVQGILTAAKK
QWPHIYISDSLVMADTAVKMAEAGCQYITVLGVDFMSENVRAILDQAGFEKVGVYRMSDE
QIGCSLADAAASPRYMHFLETASRSPPSLHVIYINTSLETKAHGHELVPTITCTSSNVVQ
TILQAFAQIPDINVWYGPDSYMGANIAELFHQMACMSDEEIAEIHPKHERNSIKSLLPRL
HYYQEGNCIVHDMFGHEVVEKLKELYCDAFLTAHFEVPGEMFSLAMEAKRRGMGVVGSTQ
NILDFIRSRLKEALDRNVDDHLQFVLGTESGMITSIVAAVRELLGSDVSSGRARIEVEIV
FPVSSDSVTRTSVNGPHGLGSVIASDLAKLAIVPGVATGEGCSIHGGCASCPYMKMNSLN
SLLRVCHQLPDEGHTLSAYEAGRFDATTPLGKSVAEVGCEPILHMRQFQATGKLSEMLVH
QILSQTGEAVS
NT seq
2196 nt NT seq +upstream nt +downstream nt
atggattcctctgccgctctcttgtctaggattagggttctcccaaaccctaacccgaac
agtaaccattatagtatcccgatccactccacggcgtggcggccgaggcagttgatgccg
cggctctcctccatcgccgtcaagtgcttgcaagcgggaaacagtaaccctaaccctaac
cctaccgttggatcggctcccgggtctctcctctcttgctccgctgttgcatcccaggag
gcgccgccggccgctgatgttgcgcgggccagactccgccgcctcgtcgatgagttcaga
tccctccctgagccgattgaccgcgtgaagcggttgatcgcttatgctgccgccctccca
ccgttcccggaggaggaccgcgtctcccggaaccgcgtcatggggtgcaccgcgcaggtg
tggttgacggcttccgtggatgaggtcgggcggatgcggtttactgcggactctgattcg
gagatcacaaaggggtattgctcttgtctgttgtcggtcgttgacggagcttcgccggag
gaggtgctcgagatgaggccggaggattttggggatctgaacgtggtggggttgactggg
aggacacattcgaggataaacacgtggcacaatgtgctgatgagcatgcagaagaggacc
aaggcgttgatcgctgcacgggaggggaggccaccggttgagccgtttccttcgctggtt
atcggggtcgacgggattcatgcgaagggaagctatgcagaagctcaggcaaaattttta
tcccctgattctttgaagatcaaggaacttgtcaatgtgcttagggagaagaagattggt
gttgttgcacacttctacatggaccctgaggtccagggcatcttaactgctgcaaagaag
caatggccacacatctacatatccgattcattggtaatggcagatactgctgtcaaaatg
gcggaagccggatgtcagtatattacagtactaggtgtagacttcatgtcagaaaatgtt
cgtgcaatacttgatcaagccggctttgaaaaggttggtgtttacaggatgtcagatgaa
caaattggctgctctttggcagatgctgcagcaagccctagatacatgcattttcttgag
acagcttcaagatctcctccttctttacatgtgatatacataaatacttccttagagaca
aaagctcatggacatgaactagttcccacgattacctgtacttcctctaatgttgtgcaa
actatattgcaggcatttgcacagataccagacataaatgtctggtatggtcctgattct
tatatgggggcaaatatagctgagttgtttcaccaaatggcttgcatgtcagatgaagag
attgcagagatacatccgaagcatgagaggaactctatcaaatcactattaccacgccta
cactattatcaggaaggcaactgcattgttcatgacatgtttggtcatgaagtagtggaa
aaattgaaggagctgtactgtgatgcattccttacagctcactttgaagtccctggagaa
atgttctctttggcaatggaagcaaagaggagaggaatgggagtcgtgggctccacgcag
aatatattagatttcatcagaagcaggttgaaggaagctttggataggaatgttgatgat
caccttcagtttgtgttaggaacagaatctggaatgatcacttccattgttgctgcagtt
agagaattgctgggttcagatgtttcctctggaagagcaagaattgaagttgagatagta
ttcccagtctcatctgactcagtgaccaggacatctgtaaatgggcctcatgggctaggt
tctgttatagcaagtgatctagctaaacttgctattgttcctggggtggcaactggtgaa
ggatgctctattcatggagggtgtgcttcctgtccatacatgaagatgaattctcttaat
tcactactgcgagtatgccaccaacttcctgatgaaggccatactctatcagcctatgaa
gctggcagatttgatgcaacaactcctcttggaaaatcagttgcagaggttggatgtgag
ccaattttgcacatgagacagttccaggcaacagggaagttgtccgaaatgcttgttcat
cagattcttagtcagactggagaagcagtatcatga