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Last updated: 2022/11/18
NameA_BomoN4EE_TR28406_c2_g4_i1
Scaffold_idBomo_Chr15
NCBI non-redundant
(nr)
putative_cation-transporting_atpase_[Danaus_plexippus]
Ontology
GO:0000166 F nucleotide binding
GO:0000287 F magnesium ion binding
GO:0004012 F ATPase-coupled intramembrane lipid transporter activity
GO:0005524 F ATP binding
GO:0005768 C endosome
GO:0005794 C Golgi apparatus
GO:0005802 C trans-Golgi network
GO:0005886 C plasma membrane
GO:0006890 P retrograde vesicle-mediated transport, Golgi to endoplasmic reticulum
GO:0006897 P endocytosis
GO:0008152 P metabolic process
GO:0015914 P phospholipid transport
GO:0016020 C membrane
GO:0016021 C integral component of membrane
GO:0016787 F hydrolase activity
GO:0045332 P phospholipid translocation
GO:0046872 F metal ion binding
Transcript
Level
FPKM:4.85 TPM:6.46
ORF EntryO_BomoN4EE10212_complete:A_BomoN4EE_TR28406_c2_g4_i1
Sequence
(Nucleotide)
GCAAACGATCCTATTCCATACAAATATGAGCTAACTTTTACGCTATCGAGAACGTTAAAA
AACTCTCACTAAGCACACTGTGCACAGCAGTGGACGTGGGCTGGCTGATTATTATAAATG
TTTAACTAAATATTTAACTAAATTGTCAATTATTTGATAATGAAAATTAAATCTATTATT
TCAAATGTATACCGTATTTTAAATTGAGACAATATTATTATCTTAAATATTATTGATCGA
AAACTCTATTCTGGTTCCCTAACTGTTGAGGTCTATGATCAGAGGAGGTGCCTTTTTTTT
AACAATTGTATTTTGTTTCTGTGAATTGCCAAACATTCTTAATATCGATTTATTCTTATC
GAGTATGTACGTATATTAACTAGTATAATTAAGTATGTATAATGTTACGTTCCGGCCGCG
TCGACCGTCTCGAGATGTTGTAGTCGTTTCATTCGGAACGTCGACTTATCGATCGCAGAA
TAGTTTTCGTAACATTTTCATTTGCAATATAAAATTATACAACACTAGACACTTATCGTA
ATATTTTGGGTACTTCAAACTATATATTTATAAATTATAGCTTATGTGTTATTCTGATGT
GTAAGCTATATTATTGTAAATTTTCATCAAAATCAATCCACTAGTTTTTGCGTGTAAAAG
TAAGAAACATATATCCATACATCGTTACAATCTTTCGTGTTTACAATATTATTAAGATTA
ACTGTTCAGGAATGACTAATTAGAGAAGACCGGGTCGACTAATAAGCGCAAGTTTGAATG
AAACACAAATCGTTTTAATGTGATCTTACGGCCTATACGTTTAAGGATCACGTTCGAATG
TTCTTGTACTGGCGGTTGCTCCATTTCCTGTGCATGTATTTGACGATATACAGTGGTAGA
CACGACACTAGAGTTATCGTGATCACCTTCCACCAGAAGTCCCAATGCCTAATAAAATCA
GCGTCAAAGTACGTGGTGAATATCAACAAGGTTATTATGTACATGAGGAGGCTGACCAGC
TCGGCTCCGACCATGAGCCAGTGCCACGTGACCACCGTGAGGGCCACCATGATGAGCTCG
GTCAGTATCAGGGCGGTGTAGCTGATCTCGACTATGTGGATCAGCTGGTCCTCGAACAGA
ACTAGCGCCCCGTACATGATCACGCCACCTTGATATATAGATATTCCGGTCCAAATATAG
AACGTTTTGTAGGATAGCTGGCGTCCTCTCGTCAGCTGTTTGTAGAGCTGCGGGTAGCGG
AGCACCGTGGAACTGGATATATCTTTATCGAGCACCAATGAAAAGACAGGCAGCATCGTG
AATAGAGTACCGTAACCGACCATCAGGAAGCCGGGGTACAGCGAAACCGACGAGAAGTAG
AACACCACTGAGAACACCGCCTGCATAGTGGAAACGATGAGTCCCCGATGCACTATGAAG
AGGCAGAGCGCCGCCGAGCGCATGACGGAGCGGCGGCCGTGCACGAGGAACAGGCGTGCC
AGGTTCGAGAGCTGGCGGACGCTGACGTCACCGGCCAGCGACGCCGCGCGACCCTCCGCT
CCCTCTATACCGACGCCAATATCGGCTTCCTGTATCATGGCGACGTCGTTTCCTCCGTCC
CCGACGGCGGCGACCACGTGTCCGCGGGCGCGCAGCAGTCGCGCGACCGTCGCCTTCTGC
GTGGGCGAGCAGCGCGCGACCACCACGCCGCTGCAGCCGCACAGCAGCTTCACGAACTCC
TCCTCGTACGACTGCAGACACACTTCGAGCGTTTCTCCTTCGATGATGAGGTCCATGTTG
GGCTGGTCGGCCAGCGCCAGCAGCAGCGCGTGCGCGTGGAGGCGCGAGCTGCAGTCGCGC
GCCACCCGCCACTCCGCGCCGCCGCCCAGCTGCAGCGAGCGCGCGATGCACAGCGCCGTC
TCCAGCTTGTCGCCAGTCAGCATCCACGTCTTGATACCGGCAGCGCGCAGCATGCCGAGC
GTGGCGGGCACGCGGTCGGCGAGGCGGTCCTCCACGCCGGTGAGCCCCAGCAGCTCCAGC
CCGCGGTGCAACTTGCACAGCGCGGCCGCCGTGCGCTCGCCGCGCCCGCTCGTGCACAGC
CGCGCCTCCTTGTACTCCGCCTCGAACTCGAGGTACTCATCGCGTGCGAGCGTGCGGTGC
GCCACGACGAGCGTGCGCAGCCCGTCGGCCGCCAGCCGCCCACACTGCGCGCCCAGCCAG
CCCGAGCGCACCAGCCGCGCCAGCGCCACGTCCGCGCCCTTCACGTAGTACCGTATCTCC
TCAGAATTCTCCTCCTGAACAATGATCCCCATCATTTTGCTTTCGCTCGTAAACGGGAAT
ATCTGCAGTATGCTGAACTGTATAATTTCATTGGTCGCCCTCAGTTTTAAAGAGATGTTG
TGCAAGTCTCTTCTATACAGGGACACGCCCATCATATCGGTCCACTTGACCAAGGCGACC
TCGTCCGGACTCGAGGCCTGGTAGTCGCAGAGCTCCTGCTGCGGCACCGCACCCCCGCAG
CTCTCCGAGACCACTGAACTCGCCATATCGGACTGCGCGTCATCGTCCCCGGCGGGCGCG
TCGTACACCGGGGTGACGTTGTGGCACAGCGCGATGGCCAGCACGGCCTGCCACACCTGG
CGCGGGGTGGGGGCAGCGGGGTCGGGCGCGTCCACCGGCGACGCCGCCAGCGACGGGCCG
TCGTTCGTGATGTGCTGCGTCAGGAGGGCTTCCACCTCATTAAATCTTTCTCTGTCAAAC
AAAGCGTTTCCTAAGTGCAGCTTCTGGAAGACCATCTCGTTCTTGGTGAGAGTGCCGGTC
TTGTCCGCCAGCAGGTACTGGATGCGACCCAACTCCTCTGGTATGGTCGTGGACCTCATC
ACGGTACCTTCGATCTCTTTGTCGCGTTGTATTGTCCATGAATAGAACGCTTTGCCCATA
TCAAGGTTTACTCTTAAGCTTATAGGAATTATGTAGGAGAACAGTAAGATGAATCTAAAG
AAGAATCCGAACCAGGGCCCCGTGAACCCCTTGAGTATGATCAGCAGCAGCGACACGAAT
AGCGTTGCGAAGAAGAGCACTTTGGTGAGGTCGTTGACCTGCAGGTCCAGGCGGCCGACC
TTAGACCGCGGCGCGGCGTTGTTCATTACACTCCGAGTTTCGCTTCCCGTGTATATAACG
AGGCCTGTGGCTTGACCTGACGCCACGACGCAGCCACTCCACAGCGTGTTCTCAATGTCC
AAAGAGTCGCGTTCCTCCTCGTCCAATCGAATACAAGTTCCTATGAACGAGTGTATGTCC
TTCTCGGGTTTCTCTACAAATATCTGAGCGTTTATATCCAGGAGATGGGCGTCGGTCGGC
AGCTTTTGCGTCGATGAAAGAGGTATCCGTAATTTCCAATCAATCTCTCCATCCAACTGG
TCGGTCCTTATGAATACTGTACCCATGGTCTCGTTAGTTCTAAGAAGTATCATGTCAGCA
GGTACTCTTTGCCCTTTATGTAGCATTACAATGTCTCCAACACGCAGTTCTGATGCTGCG
ACATATTCCATTTGAAATGGACGGTAGTCTTCTATTGGAGTATCTAGTACTATTCTTTCA
TATTTCTGTCTATTCACTTCTTTATCTCTCCTATATCTTCTATAATCATCTACTGCTTCC
CTGAACAATGTTACAGCTAAAACAAAACATAGTGGTCCCCAGTAGGTGTACAGGTATCCA
ATGCGAATGCTTGGAATGAACTGACTAACCGCCATCACAAGAAAATACATATTGAGAAAG
AATCTGAACTGTTCATATAAAACTAGGGGTAGGAATGTTAGGAGGTTGTATTTCTGATTG
CAAACATAATTGGGAGGAAACTCCTCATCAGGTAAGTGTCCCAAGTTAATTGCTCGAGAA
CTAAGTTCCTTCTTTTTAAATCTTGATAACAGTAGCCAAGACAGAAGAGATTTTCTTTTA
GGCCTCATTAGTAAAGGTGTTGTTTCCATTGTAATATTTTAAACTTATGTGTAATATAAC
AAAACCCAAGTTCAAATTTGATGTTTTGAATTTTTGGGTGAACGAAACATAAAAAGGAAA
AACACAAACATTCAACTTGCAGAAAACAAAGTTTACAACAGTGTCACGAAGTTGATTAAT
TTTTACTTCATACTTCATACATACTATTTAAGTGTTTAATCTATATCATACATAGACTAT
AGACGAGTGAAAACAATTGTTATCTACATTCTTTTTAG
(4238 bp)

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