Entry
Name
(RefSeq) C-1-tetrahydrofolate synthase, cytoplasmic isoform X3
KO
K00288 methylenetetrahydrofolate dehydrogenase (NADP+) / methenyltetrahydrofolate cyclohydrolase / formyltetrahydrofolate synthetase [EC:1.5.1.5 3.5.4.9 6.3.4.3 ]
Organism
haw Helicoverpa armigera (cotton bollworm)
Pathway
haw04981 Folate transport and metabolism
Module
Brite
KEGG Orthology (KO) [BR:haw00001 ]
09100 Metabolism
09108 Metabolism of cofactors and vitamins
00670 One carbon pool by folate
110379090
09150 Organismal Systems
09154 Digestive system
04981 Folate transport and metabolism
110379090
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:haw04147 ]
110379090
Enzymes [BR:haw01000 ]
1. Oxidoreductases
1.5 Acting on the CH-NH group of donors
1.5.1 With NAD+ or NADP+ as acceptor
1.5.1.5 methylenetetrahydrofolate dehydrogenase (NADP+)
110379090
3. Hydrolases
3.5 Acting on carbon-nitrogen bonds, other than peptide bonds
3.5.4 In cyclic amidines
3.5.4.9 methenyltetrahydrofolate cyclohydrolase
110379090
6. Ligases
6.3 Forming carbon-nitrogen bonds
6.3.4 Other carbon-nitrogen ligases
6.3.4.3 formate---tetrahydrofolate ligase
110379090
Exosome [BR:haw04147 ]
Exosomal proteins
Exosomal proteins of other body fluids (saliva and urine)
110379090
BRITE hierarchy
SSDB
Ortholog Paralog Gene cluster GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
Position
20:complement(join(5726601..5726843,5728529..5728814,5729593..5729696,5730681..5730829,5731254..5731464,5731816..5732033,5732361..5732664,5733567..5733732,5734341..5734514,5734956..5735181,5736219..5736330,5736708..5736942,5737589..5737725,5739830..5740028,5740535..5740572))
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AA seq
933 aa AA seq DB search
MVAQPISGTEVARSIENELRQQVAEARTKLASFKPHLAIVQVGGREDSNVYIRMKLKAAE
NIGISAEHLKLPRDITESELLAKITELNESPYVHGIIVQMPLDSEHPIDGHRITDSVAAD
KDVDGLNTINEGRVAVGDLSGFVPCTPAGCVELIKRTGVPIAGKNVVVLGRSRIVGTPVS
ELLKWEHATVTVCHSKTKNLSEITKTADILVVAIGRAEMVRGSWIKPGAVVIDCGINPIP
DATKKSGQRLVGDVAYAEAVQVAAHVTPVPGGVGPMTVAMLMRNTVQAARRQLDRLLAPA
WPLRPLRITPLSPPPSDILIARSQKPKDISELAHEIGLFSNEVSQYGRTKAKISLSVLDR
LHSQKGGKYIVVAGITPTPLGEGKSTTLLGLVQALSAHRGRNSFAVMRQPSQGPTFGVKG
GAAGGGYSQVIPMEEFNLHLTGDIHAVTAANNLLAAQMDARIFHELTQKDGPLYDRLVPK
IKGVRKFSPIQLRRLKRLGITKTDPDTLTEGEKSKFARLNIDTNKIMWNRVVDLNDRYLR
KITVGQSPTEKGFTRETAFDISVASEIMAILALGKDVDDIKEKLANMVVALDKSGNPVTA
DDLGMTGALLVLLRDAFEPTLMQSLEGTPVLVHTGPFANIAHGCSSILADKIAMKLAGEN
GYVATEAGFGSDIGMEKFFDIKCRASGDTPHCAVIVSTVRALKMHGGGPPVSPGQPLHDV
YVQENVELLSKGLCNLGKHISNGNKFGVPVVVAINKHGNDTPAELNLVKEFATKNGAFRA
VVCEHWSKGGLGALELADAVIEACDSKSNFDYLYPLQLSIQDKIQIIAKEMYGAGNVEYT
DEVLEKIKAFTDKGYDKLPICMAKTSNSLTGDPAIKGAPTGFTLKVNNIFASVGAGFVVP
MVGEISKMPGLPTRPCIYDIDLNTKTGEIEGLF
NT seq
2802 nt NT seq +upstream nt +downstream nt
atggtcgcacaaccaatttcgggaaccgaagtggctagatccatcgagaatgagctccgg
cagcaagtggccgaagctcgcacgaagctggccagcttcaagccacacctggccatcgtg
caggtgggaggccgagaggactccaatgtctacatcaggatgaagctgaaggctgctgag
aatatcggcatctctgctgaacacctgaagctgccgcgtgatatcactgagagtgagctg
ctggcgaagatcacggagctgaacgagtctccgtacgtgcacggcattatcgtgcagatg
cccttggactcggagcaccccatcgacggacacaggatcacagactccgtggccgccgat
aaggatgtcgatggcttaaacaccataaacgagggtcgtgtagcagtaggagacctctca
ggtttcgttccctgcacgccagccggctgcgtggaactcatcaagaggactggcgtgccc
atcgccgggaaaaatgtggtcgtattaggccgcagccgtattgtgggcaccccagtctcc
gagctgctgaagtgggaacatgccacggtgactgtgtgccactccaagacgaagaacttg
agtgagattacaaagacagccgatatcctggtggtagctatcggtagagccgagatggtc
cgtggttcttggatcaagcctggagcagtggtcattgactgcggcatcaaccccattcct
gacgctacaaagaagagcggtcagcgtctggtgggcgacgtagcgtatgcggaggcggtg
caagtggcggcgcacgtgacgccggtgccgggcggcgtgggcccgatgacggtggcgatg
ctgatgcgcaacaccgtgcaggccgcgcgccgacagctcgaccgcttgctggcgcccgcc
tggccgctgagaccgctcaggattacgccgctttcgcctccacccagcgacattctaatc
gcccgctctcaaaagcccaaggacataagcgagctagctcacgagatcgggctgttctcc
aacgaggtgtcccagtacggacgcactaaggccaagatctcactgtcggtgctggacagg
ctgcacagccagaagggcggcaagtacatcgtggtcgctggtatcacccccacacccttg
ggcgaaggcaagagcaccacgcttctaggtctggtgcaggcactatcggcacaccgcggc
cgcaactccttcgccgtgatgcgccagcccagccagggtcctaccttcggagtcaagggt
ggtgcagctggaggtggatactcgcaggttattcccatggaggagttcaaccttcactta
acgggtgacatccacgcggtcaccgcagccaacaacctccttgctgctcaaatggacgcc
aggatcttccacgaactgacccagaaggacgggcctctgtacgaccgtctggtccccaag
atcaagggagtcaggaagttctcccctattcagctgaggaggctgaagcgattgggcatt
actaagacagaccccgacactttgacggagggagagaagtccaaattcgcgaggctgaac
attgatactaataagattatgtggaacagggttgtggacttaaacgacaggtatctccgt
aagatcacagttggacaatcccctactgagaagggtttcacccgcgagaccgctttcgat
atctccgtggcgtcagaaattatggccatcctcgctttgggcaaagatgtcgacgatatc
aaggaaaaactagctaacatggtagttgctctggataagagtggaaacccggttactgct
gatgatttgggtatgacgggagctctcttggtccttctccgcgacgctttcgagccgacc
ctcatgcagtctctggaaggtacccctgtcctggtgcacacgggacccttcgccaacatc
gctcacggctgctcctccatcctggctgataagatcgccatgaaactggccggagagaat
ggatacgtggccacggaggccggattcggatctgatattggtatggagaagttcttcgac
atcaagtgtcgcgcgagcggcgacactccccactgcgcggtgatcgtgtccaccgtgcgg
gcgctgaagatgcacggcggcggcccgcccgtctccccggggcagccgctacatgacgtc
tatgtgcaggaaaatgtggagctgctgagcaaaggtctgtgcaacttgggtaaacacatt
agcaatggtaacaagttcggcgtgccagttgtagtggctatcaacaaacacggaaacgac
acgcccgcggaattgaacttggtgaaggaattcgcgaccaagaacggcgcgttcagggct
gttgtatgcgagcactggtccaagggcggcctcggagccctggagctggctgacgctgtc
atcgaggcttgtgactccaagtcaaacttcgactacttgtacccactacagctgtccata
caagacaagatccagatcattgccaaggagatgtatggagccggtaacgtcgagtacacc
gatgaagtgcttgaaaagattaaggcgttcactgataagggttacgacaagctcccgatc
tgtatggccaagacgtcgaactcgctaacaggcgacccggccatcaagggagcccccaca
ggcttcaccctcaaggtcaacaacatcttcgcgtctgtgggcgccgggttcgtggtaccc
atggtgggcgagatctccaaaatgcctggcctgcccacccggccctgcatctatgacatc
gacctcaacaccaagaccggggagatcgaaggactcttctaa