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Last updated: 2022/11/18
NameA_TrvaFAMAMG_TR17422c0_g1_i3
Scaffold_id
NCBI non-redundant
(nr)
PREDICTED:_trifunctional_purine_biosynthetic_protein_adenosine-3_isoform_X1_[Amyelois_transitella]
Ontology
GO:0000166 F nucleotide binding
GO:0003824 F catalytic activity
GO:0004637 F phosphoribosylamine-glycine ligase activity
GO:0004641 F phosphoribosylformylglycinamidine cyclo-ligase activity
GO:0004644 F phosphoribosylglycinamide formyltransferase activity
GO:0005524 F ATP binding
GO:0005737 C cytoplasm
GO:0006164 P purine nucleotide biosynthetic process
GO:0006189 P 'de novo' IMP biosynthetic process
GO:0008152 P metabolic process
GO:0009058 P biosynthetic process
GO:0009113 P purine nucleobase biosynthetic process
GO:0016740 F transferase activity
GO:0016742 F hydroxymethyl-, formyl- and related transferase activity
GO:0016874 F ligase activity
GO:0046872 F metal ion binding
Transcript
Level
FPKM:0.28 TPM:0.28
ORF EntryO_TrvaFAMAMG20442_complete:A_TrvaFAMAMG_TR17422c0_g1_i3
Sequence
(Nucleotide)
CCCGAATATTAATATTCGATTCGAACGATATTCGCACACCCCTAATAAGTACAGATGAGT
TGACTCACCACCGTGGGTATGCCCGCCTTCTCAGCCCGCTGCAGCGCGAAGGCGTCGTGC
TTGTTGGACACCACGAGGGACACGTCCGCGCACACGCAGTGTGCGGGCTCGCGCGTCGTG
TCGATCAGGGCTTGTAGGTTGCTACCGTTGCCCGACACTAGCACTGCTACCCTCTTGTTG
TGCATGAGCGGCATCCTCCTGGTGAAGTCCATGGCGGAGGCGAAGTTGTCGACCAGCACG
CGCGCGCCGCCCGCCGGCCGCGCCTGCAGCGACCCCACCACCATGGCGCCGTACGAACGA
CTTATATTCATCACATCAGCTTGATGTTCTGGCGACACAATTAACACCATCCCGATACCG
CAGTTGAATGTCTGTAACATCTCCTCGTCTTGTACCGACCCGGCGTCCGCTATCCACGCA
AACACGGGATGCACATGCCACCAGTGCGCGTTGAGACGGGCGCGCACGTGGTCGGGCATG
ACGCGCGGCAGGTTGTGCAGCAGTCCGCCGCCGGTGATGTGTGCGGCGGCCTTCACCAAG
CCGCGCTCCACGCAGCCGAGCACCGCGCGGCCGTATATGCGGGTCGGCTTTATTAGTTCC
TCGCCTAAAGTAAGTCCCTCGGGGCTGAAAGGCGCCTTATCATTAAGGGTTAGTCCAGAT
TTCTTCATCAACTTGTGAATAAGACTGAACCCGTTGCTGTGGACTCCGTTTGACGGTAGA
CCGATTAATATATCTCCAACATTAATATCGTTTATTTTAGGTAAGATATTGGCTCTCTCG
ACAACTCCGAGCGCGAACCCGGCGATGTCGTACACGCCCGGCTCGTACATGCCCGGCATC
TCCGCCGTCTCCCCGCCAATGAGCGCAGCCTGCGCCTGCCTGCAGCCGGCCGCCACGCCG
CCGACCACGCTGGAGGCGACGGGCACGCTGAGCGCGCCGCACGCGAAGTAGTCGAGGAAG
GTGAGGGGCGCGCCTCCGTTGCACACGATGTCGTTGACGCACATGCCGACCAGGTCCACG
CCGATGGTGCCGTGCTTGTTCATCTCCTGCGCGATCTTCAGTTTGGTGCCCACGCCGTCT
GCTGCTACCACCAGGACCGGGTCCTTATAATTTTGTTCGACTGCTTTCAGTTGGAAACAA
CCGCCGAAGCCTCCTAAACCTCCTATAACTCCTGCTCGAGTTGTCGACCTGGCCAGCGGT
TTGATCATGGACACGAGCGAGTCCCCCGCCTCGATGTCGACGCCGCTGTCTTTGTACGAG
AGCGACTTCTTGGGGGCCTCGCGGGATGACACGTAGGGGGCCTTCAGGGGGGACATAGCT
TCAGAGAACTTCTCCACCACTACTTGATGACCTCCTTCAGCTCCAATCTCCTCAATCTCC
CCTATAACGTGCAAGTCCTCAACAGAAGCCAGTAACTGTTCCACCACCTCAGGGTCTGCG
ATGACGACCATCCCCACGCCGCAGTTGAACGTACGAAGCATCTCGAAATCTGACACTAGA
CCTTTAGCCTGCAGCCATCCAAATATAGGTTTGATACGGAACTTCCTTGCGTCAAGTTTA
GCCCTCAGATTGGGTGACAAGATCCTAGGGATGTTCTCCAGTAGCCCTCCGCCGGTGATA
TGTGCCAAGCCCTTAATTAGGCCCTTTTTGATGGCGGGTAAAAGGGCGTTGACGTACAGT
GCTGTTGGAACTAGGAATTCTTCGCCGAAGCTTTTGTTTGACGTGCTGAAGGGAGCTGGG
TCTTCGTATCTGTGCTGCGTCTCAGCCATGATCTTCTGCACGAGGCTGTACCCGTTGCTG
TGCACGCCGGACGAGGACAGCGCCAGGATGACGTCACGCGCGCGCGACTGTCGCGGCAGC
TGCTTGCTGTTGTCGACCACGCCCACCGCGAACCCGGCCAGGTCGTACTTGCCCACCGAG
TACATCGACGGCATCTCTGCTGTCTCACCACCTAAGAGCGCACAGCCCGACATGATACAC
GCATTAGCGATCCCCTTGACGATGGTGGTGGCGACGTCTAACTGCAAGCGGCCGCACGCC
ATGTAGTCCAGGAAGGCGAAGGGCTCGGCTCCGGCGCACAGGATGTCGTTGACGCACATC
GCGACCAGGTCCTGGCCTATCGTATCGTATCTCTGCATTAGCTCTGCTATCTTCAGCTTA
GTCCCGACCCCATCAGTTCCCTGCACCAACACCGGGTCCTCCCACTTCTCCCCCATAGCA
GACAGCTGGAACAGCCCGCTGAAGCAGCCGAGCCGCCCGAGCACCCCGCGCCGGTGCGTC
GCCGTGGCCAGTGGCTCCATCTGCCGCACCAGCGTCGCAGCAGCGTCTATATCTACGCCG
CTTTGTAGGTACGAGAGGCCGTTGATCTTGGTGAAGGCCCGATGCGCGATGTCCTTCCTG
TACTGCGCGCCGGGGAAGTCTATCATGGACGCGGCGGCGGTGGCTGCGGCGGCGGCGGCT
CGCAGCGACTCTCCGCGTGCACACACCAGCAGCACGCGGCCGCCCCACGTGACGAGGGAC
CCGTTGGCTCCGCGAGCCACTCCGCTGTGGAACACCACTATCTCCGGATTTGCCTGGACC
TTAGACAGACCACTGATAACACATCCTTTAGTGGAAGTTTCGGGGTATCCTTTAGAAGCA
ATAACCACTCCGACGGCGGACATCTTGGTGTTCCATTGTACTTGTATCTGTCTCAGATTA
CCATTCACACAAGCCTTCATAATTTTATAAAGATCAGACTCCAGTAAGGTCATCAGGATT
TGTGTCTCCGGGTCTCCGAAACGACAGTTGAACTCCAGCGTCATGGGACCGGACTTTGTC
ACCATCATGCCGGCATAAAGTACACCAACATATTTAATGCCCTCAGCTTTAAGACCGTCC
ACTGCCCTCTGCAGCACCTGGTCCTTAACATCAGCGAGTTGGTCTGGAGTTATCAAGGGG
CACGGAGAATAGGCGCCCATACCACCGGTATTAGGACCCGTGTCGCCGTCGCCTATGCGC
TTATGGTCTTGTGCTGGTGGCATCATTGAGACTGTCTCACCGTCAGTGAATGCTAGAACC
GAAACCTCATCTCCTTCAAGCAGCTCTTCGATGACAACTGTCTGTCCTGCTGAACCAAAC
TTGGCGTCAGTTAATATTTCATCGACAGCTTTGCACGCCTCTTCTTTAGAAGTGGCCACG
ACCACTCCTTTACCTGCGGCTAGACCGGCAGCCTTCACTACCAAGGCAGGGTATGGTGCG
GTGTTAATAAACTGTTTGGCAGCTTCAGCTTCAGTGAAGGACTTGTGTCTAGCTGTTGGG
ATCTGATATTTGTTCATGAACTTCTTGGCCCAATCCTTGTTGGCTTCGATTTCGGCGCCT
GCCTTTGTTGGCCCAAAGCAGGGGATGCCGAAGGGAGCTAGCCCATCGACAATGCCGTTC
GCGAGTGGATCTTCCGGTCCGATCACGACCAGATCTATGGAGGATTCTTTGCACCATTCT
GCTAGAGCGGGGTAATTCTTTATGTCCAAATCGATGCTTTCCACTTTGTTTGTTGTTGAA
ATACCGACACTACCCGGCGCGCAATAAATCTTTTTTACGATAGACGATTCAGCCAGTTTC
CAGCATAGAGCATGCTCCCGACCACCACCGCCGATCACCAAGACGTTCGCTTCCGACATT
TTAATATAGAAAAATACAATAAAACCACTAAAACTGTTACAAAATTAAGTAACTTTTGTT
CACGTGTTTGTATTTTATAATTTGATTTTTAGGGTACGAAGAACTATGAGATATGCGAGG
AAGCAATTCGTCTTCGGAATTTATATTCAGTTCGGTTTGAGATTAATTATTTAATTAATT
ATATTAATTTTATAATAACTGGGACACTTGTTTACTAGACACGCG
(3945 bp)

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