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Last updated: 2022/11/18
NameA_BomoEE_comp63829_c0_seq1
Scaffold_idBomo_Chr3
NCBI non-redundant
(nr)
PREDICTED:_rap1_GTPase-activating_protein_1-like_isoform_X1_[Bombyx_mori]
Ontology
GO:0000139 C Golgi membrane
GO:0003924 F GTPase activity
GO:0005096 F GTPase activator activity
GO:0005515 F protein binding
GO:0005769 C early endosome
GO:0005794 C Golgi apparatus
GO:0005829 C cytosol
GO:0007165 P signal transduction
GO:0016020 C membrane
GO:0017016 F small GTPase binding
GO:0030424 C axon
GO:0030425 C dendrite
GO:0030695 F GTPase regulator activity
GO:0042803 F protein homodimerization activity
GO:0043025 C neuronal cell body
GO:0043087 P regulation of GTPase activity
GO:0043547 P positive regulation of GTPase activity
GO:0045665 P negative regulation of neuron differentiation
GO:0051056 P regulation of small GTPase mediated signal transduction
GO:1903697 P negative regulation of microvillus assembly
GO:1904425 P negative regulation of GTP binding
GO:1904442 P negative regulation of thyroid gland epithelial cell proliferation
GO:1990792 P cellular response to glial cell derived neurotrophic factor
Transcript
Level
FPKM:18.73 TPM:32.67
ORF EntryO_BomoEE10001_complete:A_BomoEE_comp63829_c0_seq1
Sequence
(Nucleotide)
ACGCGCTATGCACCGGCGCACGCGCTACATACATCTCGGTTGGACGGAGGCAGCCGCCGC
GTGCACCCGTCGCGACTTGAATCGAGCGATGCGACGATTTCGACCAATGAGCGATTTAGT
TACTCTTCGACTCTCGTTGAGAATGGTAGTTAGTGACGCTGTGCTGTAAACGAAAGCGCG
TGTCCGAACATTTAAAAAAAAAACTGTTTGTGGATTATTTGAAAAGTGCGTATGTGTGAT
AATGTGCTTGTTGGATATAACTCTGATGTAATAAATAATTAAGAAATATTGTATTCGCGA
GACTATTTTGGGATTGTTTACTATGGTTATCGTCAGTGTTTTTAACAGGAACTTCACCGT
TCGGAAGCGGTGGCATAGTGCAGTGCTTGTAATATTCTATATATTACACTTTTAAAGTCA
CCGCCTAATCCGAATGAAGTCGAAAGTTGTGAAAATGAAAATATTGCCCACAGGCGGGCA
AAAAGAATCTTACACGTTATTGTCAGCGAGAAGGAGATACATGAAGAAACTTATGCGGCA
GCACGTGTCGGCGCCATGGAGCTCTTCAACAGCGGCGGGTACTCGTGCTCAACACGAGTT
ATTTGAGCTACTTGAACGAGTACAGTGTTCGCGATTAGACGATCAAAGGGCAGTACTTCC
ACCATATTTTTCTCAGGTTACCCGGCCGGAGAACCGTCACTCGGTGCCCGTGGGAAGTGC
CACTAGAGACAAACAGTATTCAGGACTTCCACCATCTCCAGCTGTTGCTTGTCAGGCCAG
TCAGAGGCTCCTGGAAGAGATTCTTTCGAAGCCTGGAACCCCACCGACCATAGTTCTACC
TCCAAGTGGAGGTTACTGGGTAGACGGAGTTGACGATAGTCCACATGATGGCGAGGAAGT
CGCGCCAAGACCGCAGCCTGGGACCCCGCGGCAGTCCAATAGACGGCACAACATCGACAC
CGATGAAACCGCCACATACTACAGGAGATATTTCCTTGGCCAGGAGCATATTAATTTGGT
AGGCAACGATCAAAATCTGGGACCTGTCGTCATGTCTCTGAAGAAAGAACACATAGCTGG
CCAGGAACAGACTAGAATACTTCTGAGGCTTCGAACAGAGACCATGCGAGGAACCATACC
CACTGGATCAGGGCCGCTTTCTTCCCCTCTAAGAATGGCGAAAATGCTTAACGAAAAAGT
TAATGTGGACAATTTCATGGCTGTCACTTGTCTGAACGCTTCATCGTTGATAGCCGCTTT
TGATGAGCGCGTGTTGAACGAAAGGTTCAAGTTTGGAGTTCTCTACCAGAAGTACGGACA
GACTACAGAAGAACAGATTTTTGGGAACAACGACACGTCACCGGCCTTTGACGAGTTTTT
GGAGATGCTGGGACAGAGGATCAAGCTGAAAGATCACAAAGGTTATCGAGGAGGTCTTGA
CGTGACGGGTCACACCGGCACTGAGGCAGTCTACGAGCAATACCACAACCGGGAGATAAT
GTTCCACGTGGCGCCACTGCTACCCCACACTGCCGGAGACGCGCAGCAGCTGCAGAGGAA
ACGACACGTGGGGAACGACATTGTAGCCGTCGTCTTTCAGGAGAAGGCGACTCCGTTCAC
ACCGGACATGATCGCCTCGCACTTCCTACATGCGTTCATAGTTATCACGCCAGAGTTCGT
GGATGGGGAGACCAGGTACAAAGTGGCCGTCACCGCACGTGTGGACGTACCATTCTTCGG
GCCGACTCTCCCGCAGCCGTCTCTATACCGTAAAGGAAGAGAATTCAAAGACTTCCTCCT
AACGAAACTGATAAACGCCGAGAACGCTTGCTTCAAAGCCGATAAGTTCGCCCAACTGGA
ACTCCGGACTAGGGCGTCGCTGCTGCAGCACTTGTGTGACGACTTGAAGAGTAAGACTAG
CGAGTTCATGGGCGCGCCGGCGAAGATCGAACCGGGGGCCGTGTCGCCGAAACCGGACGG
AACACCGAAACAAGAAGGGCCCGGCTCTAAATTCATCATAACCGTAAAGAACGTGCTAAT
ATCGAAAGTAAAATCACCGAGTGTAGACACGAATCTCTCAGGCGATAACAACAAGAATTA
CGCGAACAAAAACAAATTCATGCCAAACGAGACTCACACTCCGAATAGCGGTCGTTCGAA
GTCATCTATAGCGTCGTCGTCGGCGAGCGCAGTGTCGGTTCGTTCAGCCGGTGGGTCCGG
GGAGTCCAGTCCGGATGTGACGTCACGAGCCGCCCCTCCGAGACCGCCGCTGAACGACCA
CAGCGACGACTCCAGCCTCAACTCAGTCGACTTGGATCCGCTTGGCGGCGTATACGTAGA
CAGCGACACCGGTCTGGAGTCGATGTCGTCTGCGGAGGCGGGTGCGGGGTGCGGGGCGGG
CGCTGCGGGGGGACGCGCCGACGGAGCCGCACCGCCGCGGGGGGACGCCGACCTACGACA
AGAGGTCTGCAGGCTCAAGAATGACAAACTGGATCTACTCAAGCAGAACATTACCTGGCA
GAATGAAATCAAGAACTTACGCGAAAGAGAAATATCTCTGCAAGCCGAGTTGGCCGCCGC
GGCGAGGGAAGTCCGAAGGCTCAGAGAGCAACAACAGTCACTAAGCACAACCATCCCGAA
CCCTTCGCCACACGATTCCACGGCCTAATACGAACTTTGAGCCGAAGCCGCAAGGCTCAA
ATTAACAAAATCAACCCAACTCAAAAGGTGACGTGATTATTTATTAGATCTGATTGTGAG
AAATGATTAGTTTAAACTGATACCTATATTATTATTGTCGTAGAATTTTTTGAAAGTCGA
TCATCGTAATAGATAAATATATCGGTGTCAAAACTTAATAATATTTATAGATACATGTTG
TTCTCTCTTCTGTGTTGTGTGATTCATGTTATAGAAAAATATATCGACTTGATTTCTGGC
AATCTTTATATACTTAGTTCAATGTTTCATCAATAGATGTCGTAATATTTCCGAATTTTA
AAATTGTATTCTATGATTGTCTTTGCGTAAAACTATGCTTCGAATACAATTATATTATAT
TGTAGCTCGTTTCCGAGTACAAGAAAAGTATATTATAAAAATAATCTGTAGCATATGTAG
AGAGAATGTGATTCGAATCTTTTATATGTTGTTATACGAAACAAGATTGTTACTATGTCT
ATAATCTAAGACAAATGCTTTTTGTAAACGTTGTGATAATTAAGCTTACTTCAAATTCAT
GCCGTTTAAAATTAAAAACCCAACAACTTATACAAATATTATATTTTGCACTCACACTAT
TATCAAATACGTTTTTATTCACTGTAATATTTTATGTATTTTGAAAAGACCGCTTGTGTT
CTTCAACTTTTATTCTCGACTGCGGGAATGAAGACAGGTTATATTTATTAGTTAAGATCC
ATATAGAATCTTGATTTTTACCAATATTTCAAACGCTATTACTGTTCCACTACACACTTC
AGTTTTCCTAAAATGTATATCACGCTCATATCTACAAATACTAATTTAGAAGAAGCGTAG
TTCGTTCATTCATAGTTCATTATTATAAATTGCGAGCGTTAGATGTTAGAAGAAATTTAT
TAGTACTGAATTATTAAGTGAAAACTTTATGACGTCATATGTGGTGTTTTAGAAATTTCA
ATGACTCTTAGTTTTGACATAGTTTGACTTATTTACATGATTTCCCAGTACATATTTGTA
CGTAGAAGTACGCATTTGCAATTATTCTTTTGGTATTGTGCAATCTTCTGTTCTTTGGGT
AATTTAGCATAATTTAAGTATACCGGTTAATGTACATATATGGCGACTGGACTATTGATT
TCAATAAGAAAAGCAGTATTTTTTTTTTTCATAATTTATGCTTCGATTTAAGTTCGTTTT
GAGTGTTCGTTTGATTACGTTTTGTTGTTTATAATTAATATTTTATACCAAAGCTAACAT
TCCCCACTAAAATAGTGTAGGTTTTTTTTTTCTAGAACCAGTATTCAAGGTTTGATTGAT
GGACGTATGCTAACACAATTTCTAAGTTTACATTTAGCCTCGTAAATAAATGTATTCTTT
TAGATATTTTGTTCGAATGTTGATTTAATAGTTGATTGTAACTAACTGTTGATTCGTCTT
CATTTAGACCTAAACCAAATATTGAGCGCGGAGCGTTAGAAAAGTAGTTTTTAAGAGATA
CTATTGAAATATATGAATAGTTACATCCTAAAAAAAAAAA
(4240 bp)

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