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Last updated: 2022/11/18
NameA_BomoIG_DN31572_c2_g3_i3
Scaffold_idBomo_Chr12
NCBI non-redundant
(nr)
ATP-binding_cassette_sub-family_G_member_1-like_[Bombyx_mori]
Ontology
GO:0000139 C Golgi membrane
GO:0000166 F nucleotide binding
GO:0005515 F protein binding
GO:0005524 F ATP binding
GO:0005543 F phospholipid binding
GO:0005548 F phospholipid transporter activity
GO:0005654 C nucleoplasm
GO:0005739 C mitochondrion
GO:0005768 C endosome
GO:0005783 C endoplasmic reticulum
GO:0005789 C endoplasmic reticulum membrane
GO:0005794 C Golgi apparatus
GO:0005886 C plasma membrane
GO:0005887 C integral component of plasma membrane
GO:0006355 P regulation of transcription, DNA-templated
GO:0006810 P transport
GO:0006869 P lipid transport
GO:0008203 P cholesterol metabolic process
GO:0009720 P detection of hormone stimulus
GO:0009897 C external side of plasma membrane
GO:0010033 P response to organic substance
GO:0010745 P negative regulation of macrophage derived foam cell differentiation
GO:0010872 P regulation of cholesterol esterification
GO:0010875 P positive regulation of cholesterol efflux
GO:0010887 P negative regulation of cholesterol storage
GO:0010888 P negative regulation of lipid storage
GO:0015485 F cholesterol binding
GO:0016020 C membrane
GO:0016021 C integral component of membrane
GO:0016887 F ATP hydrolysis activity
GO:0017127 F cholesterol transfer activity
GO:0019534 F toxin transmembrane transporter activity
GO:0030301 P cholesterol transport
GO:0032367 P intracellular cholesterol transport
GO:0033344 P cholesterol efflux
GO:0033700 P phospholipid efflux
GO:0033993 P response to lipid
GO:0034041 F ABC-type sterol transporter activity
GO:0034374 P low-density lipoprotein particle remodeling
GO:0034375 P high-density lipoprotein particle remodeling
GO:0034436 P glycoprotein transport
GO:0034437 F obsolete glycoprotein transmembrane transporter activity
GO:0042157 P lipoprotein metabolic process
GO:0042632 P cholesterol homeostasis
GO:0042803 F protein homodimerization activity
GO:0042987 P amyloid precursor protein catabolic process
GO:0043231 C intracellular membrane-bounded organelle
GO:0043531 F ADP binding
GO:0043691 P reverse cholesterol transport
GO:0045542 P positive regulation of cholesterol biosynthetic process
GO:0046982 F protein heterodimerization activity
GO:0046983 F protein dimerization activity
GO:0055037 C recycling endosome
GO:0055085 P transmembrane transport
GO:0055091 P phospholipid homeostasis
GO:0055099 P cellular response to high density lipoprotein particle stimulus
GO:1901998 P toxin transport
Transcript
Level
FPKM:15.42 TPM:8.58
ORF EntryO_BomoIG100329_complete:A_BomoIG_DN31572_c2_g3_i3
Sequence
(Nucleotide)
GTTCATACTAATCAAAGAGCTAAGTGATTTTAATAATACACAAATGTGAAGGCTCTTTTA
TAACAGTGAAAATAAGGATATTAAATATTGAATTTAAAGTAAACCAACGCGCTTGAATTA
TTTAAATAGAGAGTTCTAACTAAAGTATTATGTTCTAGTGTAATAAACATGGATAACGTA
TATATTCTCAACAATATAGGGAAGGGAAGCGTGAAGGTGACGATCACACCGACCCAGCAC
AAGACCCTCAGTCACCTACCGAAGAGGCAGCCCGTGGATCTGGCATTTACGGACTTGACT
TACAAAGTGCAAGAGGGAAGGAAGAGCAATGTCAAAACGATCCTCAAGTCTGTTTCGGGT
CGGCTCCGTTCCGGCGAGCTCACGGCCATCATGGGTCCGTCGGGTGCCGGGAAGTCGACG
CTTCTCAACATACTCACAGGATACAAGACTTCCGGTATGGAGGGTAGTATAACAGTCAAC
GGTATGGAGCGTAACCTGTCCAGTTTCCGGAAGCTGTCCTGCTACATCATGCAGGATAAT
CAGCTTCACGGCAACCTAACTGTCGAAGAGGCCATGGGCGTGGCGACATCCCTCAAGCTG
CCAAGTTCCACTACGAGAGACGAAAAAGAAATGCTGACCGAAACGATCCTCCACACCCTC
AGCTTGATGGAACACCGTAAGACGATGACGTCGAACCTGTCCGGGGGTCAAAAGAAACGT
CTCTCCATCGCTCTGGAGTTGGTCAACAATCCACCTATTATGTTCTTCGATGAGCCTACA
TCAGGTCTGGACAGTTCTTCGTGTTTCCAATGCATCTCGCTGCTAAAGACGCTCGCCAGC
GAGGGCAGGACCATCATCTGCACCATCCACCAGCCCTCCGCCAGGCTGTTCGAGAAGTTT
GACCATCTGTACACCCTGGCGGACGGCCAGTGCGTGTACCAGGGCAGCACCGGGAGATTA
GTCGACTGGCTTGGCAGTCTGAAGCTGCAGTGCCCTTCTTACCACAATCCGGCTTCGTTC
ATAATCGAAGTGTCTTGCGGCGAATATGGCAACAACACTGGCAAACTGGTGCGAGCTATT
GACAACGGAAATAATGATATAAGAAACGGTATGCCCTTCCCGGATCAAACTCCGGACTAC
AACAACAAGAAGGACATGGAGGTGTCCCTTCGTGCCGGGAGCAATTGGGACAAAAACGAC
CTCAGCCAGGTCCAGGAGAAGTTCAAGGACAACAACTCGAACGGCGCCAACGGGCACGGG
AACTTGCAGAACGGGATCCTGCAGTACGCCACTAGCGAGGTCTCTAAAGGCGAACCGTTG
TCGTTGCAAATGGACACGGACAAGCAGGACAACGCGGCGGCCGCGCTGCTCGGCACCGAG
GGCTCGCCGGAGCGGTACGCCACCTCCGAGTGGAAACAGTTTTGGGTCGTATTGAAGAGG
ACCCTCTTATTCAGCAGGCGAGATTGGACCCTGATGTACCTGCGGCTGTTCGCTCACATC
CTGGTCGGCTTCCTCATCGGGGCGCTGTACTACGACATCGGAGACGACGGCTCCAAGGTG
CTCTCCAACCTCGGCTTCCTGTTCTTCAACATGCTCTTCCTCATGTACACCTCGATGACC
ATCACTATACTTAGCTTCCCACTGGAGATGCCGGTCCTGGTGAAGGAACACTTCAACCGC
TGGTACTCGCTGCGGTCCTACTACTTGGCGATTACGGTATCCGACATACCGTTTCAGGCC
ATATTCTGTATAATCTACGTGGTGATAGTGTACCTGCTGACGTCACAGCCGCCGGTCTGG
TTCCGGTTCGCGATGTTCCTCTCGTCGTGCCTGCTGATATCGTTCGTCGCTCAGAGCGTC
GGTCTGGTGGTCGGAGCCGCAATGAACGTGCAGAACGGTGTGTTCCTGGCGCCGGTGATG
TCCGTCCCCTTCCTCTTGTTCAGCGGCTTCTTCGTGTCGTTCAACGCGATCCCGGTGTAC
CTGCGCTGGATCACCTACCTGTCCTACATCCGCTACGGGTTCGAGGGCACCGCGCTGGCC
ACCTACTCCTTCAACAGGACCAAGCTGCAGTGCCACGCGCCCTACTGTCATTTCAAGTAT
CCCCAGACCACCCTCGAGGACCTGGACATGGAAGACGCCGATTTCGCGCTAGACATAGCG
GCGCTGTGTCTCATCTTCGTTCTACTGCGTATATTCGCCTTTCTCTTCTTACGCTGGAAA
CTCAAGTCGACTAGATAAACTAAATTGTACCTTACGTTCTTCACTTTAGGGTATAAAATC
GCTGAGATGCCTATTTAAGTGCTTAAGAACAAGTCGTTTGTTAATTTCGGGTTTTTTAAA
GTATATTTTTTTTTAATATTCGATAATCGAGTTTATTTTGTTGCATCGATAAAATACGAT
CTTTCAAACCCGAAATCAACAGCCGAATAAAACAATTAAATAAATAATAAATATATATAT
TATTATAGATATATATGTAAATTACATGAATGCGGTTAATGTGATAAGCGGTGAAAACAA
TTATTCGAATATTTATGAAAAAGAAAAATTCTATACGCGTTTTGATATAACGTCATCTAG
TTAAGATTAAGTATCAGTTTTGGAACAAAAATTTCAGACTACGTACCGAAATTCAATTAT
AAAATATTCATTAGGAAATATGTTTTACACAAATAATTCAACCATGACAAATTATTAAAT
TTTATGTACAAAACCAATACAAAGTGACTTGTTTCAAAAGGGTAATTAATACAAAAAACA
TAATGTAAATAAACAAAGAGAAATGTGATAGAAATCATGTGATATAAAAAAAAGTTTATA
TACATATTATATATTTATATATAGAAGTATATACGGCATTATATATACGACATTCCAGTT
TTTGCTACTATTCCTGTTTTACTCAGACCTCAAACTGAACAATGTAGAAGAAATTCAAGT
AATAATTAAGATCATAATTATGCTCTTGTTATTTTTGGGTGTATTACTATCACGAGCAAA
TTCGAAAATGTCGCCAATAAGACGATTTATTTTTGTATTGTAGATTGACAATTACTGACG
TTGACACTGACAAGAAGGTTTCTATTTACTCGAGGTCAATTTAGAGTTTGTTGTGTAGTG
ATATGTTGACTCAGTCCACAGGTAGGCAGATGAGGTTATCTACTGTATGGTGATCATTTG
ATATCTGTATTCAATTAGAATACGCGCGATGTATTGATTCTAAAGGACAACGACCGAATG
TTAACCAGAACGTGTATTCATATCAAACACGACCGATGCGAATGAATGATTGAATGAAAA
AGATAATCGATTTTAATAATGACAATCGTATCGAAAGGTAAATTTTTTACAGACTTTTTT
ATTTCGATATAATCTCTTTGAAATTGTCTTCATAAATGGCCTTCTTGAAGTGCGTCTGTT
GATTAATCAATGACTGTAATGTCATATTGAGATCCTTACATAAAACGTATTTTTATAGAA
GAAAAATATTTCTAATGATTTGATCATATAACTCAAGAGATGGCGCCACTAACAGTACAT
ATGAATTTTTGATTAATATAATCCACTAAATGTCGTTACAGGGAAATCAAAATATTAAAT
TTTAAAAAGAATGAAAACGTAATAATACATATATTGAAAATTATTTGTTAACGAGCTTAA
AAAATAAGTTTAAAATCAATAATGTTATTTATAACCAATTAATCCAATCTCTTTAATATT
TATGCAAGTTTAATCAAAGAAGAAGGAGCGTTATAAATAAAACATCAAATGTATACCGTC
ATCACCATCATGTTATCATCAGCCCACAGTCCCAATCCACATCACTGAACCCAGTCTTCG
ACTCTCCCTATCCATTTCTTGCCAGTCGAAGTTCATCGCACCACCAAGCTACCAAATCTA
TATACTACTTCTCATATAAAATGCATACAGGGTATTAAACATTAACAATATGTCAAAAAG
ATAATCCTTTGTACTTGGTGATGAAAAGAAAGAAAAAAAAATGAATAGAAAAAAGATTAA
ATAACATTGCTTATCCTTATATGTCCTTCTTAAAATATCATATCATATCTAATGGGTACC
TTATTTATATAGAGTATAATATGCAAAAAAAATATTAAAAATAGAAGATGACCTTTTCAA
TAATAGTTGATGGCTCTGTATCTTCTTATTAACACTGAGCTTGATGTACTTATTGGTACA
CATTACTGTTGCGCATAATATCAATAAGAGACATCTGGGAAATAATTAGTGCCTTATTTT
AATCAAGAATTCTGAGTTAAAATTGTATATATCAAAAGGCCTTAAATGATAATTATCGGG
ACCAATTTGTAAAGAAATGCAAAAATATTATTTTTTAAACTACAATTTGAGTAAATAAAA
ACTATATATTAAATGGAATTAGCTGATATTAGGTGTTTAGTGTATAATTGTTGTATTCAT
GGAGCGTGTTAATAAACTATTCGTCTAGGACTTGGGTAATCAATATTTTTGCGTTGTAAA
AACAGAATTAATCTTTCGAAAGAAAAAAAAGTTTTTGTCTTTCATAATAATAAGCTTCTC
GCAGTTATCCAGCCGATGCCTTCAGCTCTAATACTAGGGGCAGGCTTAGGGACCCGGGTA
ACCGTACTCGTCGAACTCGACAAAGAGGTCGACGGGCAACCTAACCTAAACATCAGCCCG
CGGAGTTTCACGTCGGATCTTCTCAGCGGGTCGTAATTCCGATCCGGTAGTAGATTCATT
CGCGA
(4745 bp)

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