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Last updated: 2022/11/18
NameA_TrvaFAMAMG_TR10687c10_g6_i4
Scaffold_id
NCBI non-redundant
(nr)
PREDICTED:_ribose-phosphate_pyrophosphokinase_2_[Papilio_xuthus]
Ontology
GO:0000166 F nucleotide binding
GO:0000287 F magnesium ion binding
GO:0002189 C ribose phosphate diphosphokinase complex
GO:0004749 F ribose phosphate diphosphokinase activity
GO:0005515 F protein binding
GO:0005524 F ATP binding
GO:0006015 P 5-phosphoribose 1-diphosphate biosynthetic process
GO:0006144 P purine nucleobase metabolic process
GO:0006164 P purine nucleotide biosynthetic process
GO:0006167 P AMP biosynthetic process
GO:0007399 P nervous system development
GO:0009156 P ribonucleoside monophosphate biosynthetic process
GO:0009165 P nucleotide biosynthetic process
GO:0016208 F AMP binding
GO:0016301 F kinase activity
GO:0016310 P phosphorylation
GO:0016740 F transferase activity
GO:0019003 F GDP binding
GO:0019693 P ribose phosphate metabolic process
GO:0030246 F carbohydrate binding
GO:0031100 P animal organ regeneration
GO:0034418 P urate biosynthetic process
GO:0042803 F protein homodimerization activity
GO:0043234 C protein-containing complex
GO:0043531 F ADP binding
GO:0044249 P cellular biosynthetic process
GO:0046101 P hypoxanthine biosynthetic process
GO:0046872 F metal ion binding
Transcript
Level
FPKM:0.86 TPM:0.84
ORF EntryO_TrvaFAMAMG11561_3prime_partial:A_TrvaFAMAMG_TR10687c10_g6_i4
Sequence
(Nucleotide)
TGATTTTACTTATAAATTTGAGTTGCAAAGTATTAATACAATGAATGCATAGTACATTAC
AAGTTAAACAGTTACTGTTGTAAAATTTCAATTCATCTTATTTCTGAAAATTTCAAAAAT
CACTAAACTATAAAATTTATCTATTGTCTTTTGTAAACAAATTGAGATAAACAAGGTTTC
AAAAACAACTGAGATTAGACTTATTTTATACTTCGACTTACACTAAATTACAAAACTAAA
ATATTAATTTTCCAACATTCCCTACAAAATAACATCCATGTTAAAATATCACCGTTTCAA
TAAAGCAACATCGAGCCTAACAATGGCCGACCGAGAGACTTCTGCAAGCAGCAACGTTGT
TGGAAAACTTAACCTAAATAATAAATTGATTAAAACTAATATGGAACATTAGAGAAGAGG
TAGGAAACGGACTCTCCATTGTGTGTACGTCGGACCGCCTCGGCTAACATCATCGATACA
TCAATACATTGTATTTTAGGGCATTCCTGCATGTGCCTTTCTTGAGGTATCGTGTTAGTG
ACAACAACAGCCTCAAGACAGGCATTGTTGATCCGAGAAATAGCCGGTCCGGAGAAAATA
CCATGTGTCAAAATAGCATACACTTTCGTTGCTCCTGCTTCTATCAATTTTTCTGCAGCA
TGACATATTGTACCACAAGTGTCTGCCATGTCGTCAACTAAAATAGCTGTTCTGTCTTTT
ACGTCACCAACAAGTACCATGGAGGCTACTTCGTTGGCCTTCTTCCTTTCTTTGTGGATC
AAAGCGAACTCAACATTCAGTCGATCTGCAATGGAGGTCACTCTCTTCGCCCCACCAGCG
TCAGGGGACACCACAATGCTCGTTTTCCAGTCTGGTATGTTTTCTTTGATCCATTTCAGT
ACCGCAGGTTCGGCGAAGAGGTTATCCACCGGAATGTCGAAGAAGCCTTGTATTTGCGAC
GCGTGGAGGTCCATGGTGATTATGTGATCGGCGCCCGACACCGACAAAATGTTGGCCACA
AGTTTGGCGGTGATTGGCGCTCTGCTTTTGTCTTTTTTGTCTTGTCGCGCGTACGGGAAG
CAAGGTATGACGGCGGTGACCCGAGACGCGGACGCTATTTTACAAGCGTTGATCATAATC
AACAACTCCATCAAGTTGTCGTTTATTTCTCCACTGCCACTTTGAACGATATACACATCT
TCGCCGCGCACAGATTCTCCGATTTCAACGCACGTTTCCATATTACTGAATTTTTTGGTT
ACAACCTTACCGAGATCGATGCCCAGTCGATCGACGATCTTCTGCGCCAGGTCTGGGTGG
GAGCTTCCACTGAAGACTTTGATGTTCGGCATCCTTGTTGTTAGAGGTAGAACGTGATCT
AATTTATTCACTACGTCTTCGAGGGTTATTGTTGATTTCATCGACGCTAAGCCAGACGTC
GTACCGAGTCGCGTTGTGCGAGGCGATAACACTTTGTTGAACTATTTATGTGTCTATAAA
CGATAGTAATGATAAAAGTCAAAGGGCAACGTGGGGTCTTGTTGCGCCGCCGTGAATCCC
GCACGGATCGCCACTTGACCACACTTCACGCAATAATAGCTTCGTCTTGCTTTTCCAACT
CTGCTTCTCGCACGTTTTTTTACCAAAACTTCAAAACCAAATTGATTTGACCTGCAGAGT
GCAGTTGCTGTCATTTTTAATGATTATGCGGCAATGGTTTATCACTTCTTAAATTTTAAA
ATTAGAACATGTTGTTTTTTTAGCGTAAAATTGATTGATTGAGGATGAATAATCATGGTT
TCGTTAGCTTTGTAGTGAAAAAAAAAACAAAACTGTCAACCATGACTATTTCATGGCCTC
TGTCAACTGTCATGTTTAGCTGTTTTGTTAGAGATGTGCAAAAATCTGAAAGTATCGACA
TCGATTCTAAACCAAATTTGATTCTTTGAAACTTAATTTAAAATGAAGCTGATAATTCAT
AAATAAAGAATACAATATTGCTGACTGAATTCATTGATTATTGTGATGACTTTTTTCATA
ACCAAATTGATTTCGAAGGATCGTTAACGCCTTTTAAGTTTTTTTCATCAATTATTAAAT
AAAAATACTAAAATTAGCCAGTAAAACAGTGCCATAATCAACTGTATTTATCTATTTAAC
TTTAATTATTGAAAACAATTTCAACTGGTTTCGAAGTTGAGTGGAAAAATCGATAACCAC
TGAACTTGATGGCAAGTTGGACATCCCTAGTAGTTTTGGTAAAAAGTTCGTGGCGGCGGG
ATTGCCTTTTTTACATCTTTTTTTGTAATTTTCGTTATAAAATTCTTGTGTATTTAGTTA
TCTTCGACAAAACCAACAGTACTTTAAAAATTACCTCTTATTAAAGTAATCTAAAAGAGG
CTGTAGTGGTAGTATTTGTCGTAATAAAAATGTGAAAACAACACAGTGTTTTTTTCACAA
CAAACCTTTCTATAAACAAAAACCATGGAAGACGAGAATAAAATCACAACTAATTCTAAC
ACAAAACTGTTACGGTGCGCGGAATGGCTGAAGAATCAAAATCGGCAACCAAACAAGAAG
ATTTTACAGCACAGTCTATTTAACCAGAATGCCGAAAAATATAAAAATCCCAATACAATT
GAAACTTGTACTGTGCCTGATGGTGTTAACGAGCCGGATATTAAACCGAAATCAGTGCCT
CTAAAACGTCTAAGAGTAGACAGACTCAGCATGGTCTGTGAATGGCAGGACTGTAAACTA
GTCTATGGAAACTACGAGTCTTTCCAGAAACACATACGGACACACACACCTGACGTACTT
CAAGTTGTAGACGATGAACAGAACATAACCTACGCATGCCTCTGGGATATATGTGGTCAC
AAAACTACTATCTACCCAGAGCTATTCCGACATATAAACTACCATGCTTATCATGCTAAG
TTGCTAGCTATCGGTTTCAATGGTCGAGCTACTTTAGACCTGGAGAGGTGTAAGAAAGAT
TCTAGTAAAAGGAATCAGTTGCCGCGGATTCCGGAAGAGCATTGCTGTATGTGGACGGAT
TGCGAATTAAAATTTAATGGTATTCAGGTAAAGTGGATTTTTG
(3103 bp)

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