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Last updated: 2022/11/18
NameA_BomoASG_c26747_g1_i4
Scaffold_idBomo_Chr4
NCBI non-redundant
(nr)
long-chain-fatty-acid--CoA_ligase_4_isoform_X1_[Bombyx_mori]
Ontology
GO:0000166 F nucleotide binding
GO:0001676 P long-chain fatty acid metabolic process
GO:0003824 F catalytic activity
GO:0004467 F long-chain fatty acid-CoA ligase activity
GO:0005524 F ATP binding
GO:0005737 C cytoplasm
GO:0005739 C mitochondrion
GO:0005741 C mitochondrial outer membrane
GO:0005777 C peroxisome
GO:0005778 C peroxisomal membrane
GO:0005783 C endoplasmic reticulum
GO:0005789 C endoplasmic reticulum membrane
GO:0005811 C lipid droplet
GO:0006629 P lipid metabolic process
GO:0006631 P fatty acid metabolic process
GO:0006641 P triglyceride metabolic process
GO:0007584 P response to nutrient
GO:0008152 P metabolic process
GO:0008610 P lipid biosynthetic process
GO:0015908 P fatty acid transport
GO:0016020 C membrane
GO:0016021 C integral component of membrane
GO:0016874 F ligase activity
GO:0030182 P neuron differentiation
GO:0030307 P positive regulation of cell growth
GO:0031090 C organelle membrane
GO:0031957 F very long-chain fatty acid-CoA ligase activity
GO:0031966 C mitochondrial membrane
GO:0032307 P negative regulation of prostaglandin secretion
GO:0035338 P long-chain fatty-acyl-CoA biosynthetic process
GO:0043025 C neuronal cell body
GO:0043231 C intracellular membrane-bounded organelle
GO:0044233 C mitochondria-associated endoplasmic reticulum membrane
GO:0047676 F arachidonate-CoA ligase activity
GO:0060136 P embryonic process involved in female pregnancy
GO:0060996 P dendritic spine development
GO:0070062 C extracellular exosome
GO:0070672 P response to interleukin-15
Transcript
Level
FPKM:10.19 TPM:7.81
ORF EntryO_BomoASG11065_complete:A_BomoASG_c26747_g1_i4
Sequence
(Nucleotide)
CTCTAGTCGTGTCCGGGCCGGGTAGTGTGTATGACGTTGGTGATTTTTTGTATTTAAATA
AGATTATTTAATATTTCGTGTTACATTTACAAGTGTTAATTTATTTTGAAGAACCGCTGG
CATCGAACGTCCAAACACACAAACATGTTCATAGACGAAAACGAAACGCCCGACTCATGG
TGGGTGTCGGCGGTGCTAAGGACCATACGGACCGTCGCGTTTGTCTTCGACGTCATCACG
TTCCCGATCCACCTCCTCGTCCAGAGACCTTGGAGGAAACGTGCCTTGTCAAGAAGAATA
AAGGCTCGTATAATAAGCAGTACCGAGAACAGCATAACGATTAGTCCGCTAACGCCACCC
TGCGACCTACACCTGCGTCTGGTCCGCGATGGCGTCACCACCATGGAGGGCATGCTCCGC
GCCGCCACCCAGCGCTGGGGGCAGCGGCCCTGTCTGGGGACGCGCGCCGTGCTCAGCGAG
GAGGACGAACCGCAACCAAACGGACGAGTCTTTAAGAAGTTCAAAATGGGCGAGTACATA
TGGCGGACGTACGCGGACGTAGAGCGTGAGGCGCGAGAGTTCGGCGCGGGGCTGCGCGCG
GTGGGCTGCGAACCGCGGCGCAACGTCGTCATTTTCGCAGAGACGCGCGCCGAGTGGATG
CTCGCCGCGCACGGCTGCTTCACGCAGAGCATCCCCGTTGTCACAATCTATGCCACACTG
GGAGACGAAGCTATCGCTCACGGCATCAACGAGACCGAAGTGTCCACGGTCATCACCACG
CACGATCTCCTGCCCAAGTTCAAGAAGATTCTCGCGAAGACGCCCAAAGTGGAGACCATC
ATCTACATGGAGGACCAGCTCAAGCCGACCGACACGCAGGGCTTCAAGGAGGGAATCAAG
ATCGTGAGCTACAAGAATGTCGTGGAACTCGGCAGGGAGTCTAAGATCGCGTCGATGTGT
TCCCCGGGCGCAGAGAGCGTGCGGCCCGGCGCGGCGGACACGGCCATCATCATGTACACG
TCGGGCTCCACGGGCGTGCCCAAGGGCGTGCTGCTGTCGCACCGCAACATGCTGGCCACG
CTCAAGGCCTTCGCCGACGCCATCCCCATCTACGAGGGCGACGTGCTCATGGGCTTCCTG
CCGCTGGCGCACGTGTTCGAGCTGCTCGCCGAGAACCTCTGCATCATCGGAGGCGTGCCC
ATCGGCTACTCCACTCCGCTGACGATGCTGGACTCGTCCAGCAAGATCATGAAGGGGACG
AAGGGCGACGCCACCACGCTGAGGCCGACCTGCATCACCACCGTGCCGTTGATAATGGAC
CGCATCAGCAAGGGCATCACGGACAAGGTGAGTCGCAGCGGGGAGCTGGCCGCCGCCGTG
TTCAAGTGGAGCTACAGCTACAAGCAGACCTGGATGCGGCGCGGCTACGACACGCCCGTG
CTGGACTACCTGATATTCCGCAAAGTGGGCGGGCTGCTGGGCGGCCGCGTGCGCCTCATG
ATCTCGGGCGGCGCGCCCCTGTCGCCTGACACACACCTACAGGTGAAGATCTGCCTGTGC
TGCTCCGTGGTGGCGGGCTACGGGCTCACGGAGACCACGTCGTGCGGCACCGTCATGGAC
CCGCACGACCGCTCCACGGGCCGCGTGGGCGCCCCGGCCGCCGGCGCGCTGCTGGCGCTG
CGGGACTGGGACGAGGGCAACTACCGCGTCACCAACAAGCCGCACCCGCAGGGCGAGATC
ATAATCGGCGGTGACTGCGTCGCCGAGGGGTACTACAAGAACCCGCAGAAGACGAAGGAG
GAATTCATCGACGCCGAGGGGAGACGCTGGTTCAAATCCGGAGATATCGGGGAGCTGCAT
GACGATGGATGTATTAAGATTATTGACCGCAAGAAGGACCTGGTGAAGCTGCAGGCCGGC
GAGTACGTGTCGCTGGGCAAGGTGGAGGCCGAGCTGAAGACGTGCCCCATCGTGGAGAAC
ATCTGCGTGTACGGCGACAGCAGCAAGTCGCACACCGTGGCGCTGGTCGTGCCCAACGCG
CCGCGCCTGGCCGCGCTCGCCCAGCGCCTGCAGCTGCCCGCGGGCGCCGACCCCCCCGCG
CTGTACGCGCAGCCCGCGCTGGAGCGCGCCGTGCTGGCCGAGCTGGCCGAGCACGCGCGC
AAGTGCGGCCTCGAGAAGTTCGAGGTGCCCGCCGCCGTCAAGCTGTGCACCGAGGTCTGG
TCGCCCGACATGGGGCTGGTCACCGCCGCCTTCAAGATCAAGCGCAAGGACATCCAGGAG
CGGTACAAGGAGGACATCAAGCGGATGTACGCGTCCTGACCGCGCCCCGCACCCCCCGCC
ACCCGGTAGACTCCTAAGGTTATTTGTGTACTATTCAGGAAATTATATTTTAGAACCATT
CATTTCCATCATTACATCTCATAACACTCCTCCGGCACGTCGGCACCGGCAGCTGTGTCG
TGCAGTCGTCACCCATTCCCGCGAGGCGCGACGTGGCTTGTCGACTCGACGAGCAGTGCG
ACTTGTGTGTTGTGTAATTTTAGTACACGTGTAAATTAACTCGAAATTTGTAATCGAAAT
AATTAGGCAATTATTTGAGTACGTTTTCGATAGAACATGTTGATAAAAGTATATACCACA
TAGGTAATATTCACCATAGTATCAGATTTAAATTGAGTCACTTTGGCCGTGGCCGTTCTA
GTTAGTTGTGGTCGAGGGGCACTTCACGCTGTGTCCCCCGGGGGATGGCCCCCGCTATGT
CTCCCCCGAGGGGACGGTCCCCGCTGTCCTCCCGGAGGGGGGGGCTGTGCCCCGAGGGGG
CGGCCCCCGTACTACATACTCATAATATTATTAGCTGTTAAATAACAAATCATGTAAATA
TTAGTGTGCGTCTACAATTATTATGTTAATTTTTCAATGTAAAATGTTGATATAATTATA
TCTATGTATTCGTGGCCTAGAAGTTCTCTTTACACAATCTGTATGTGCTTTGATTATTGT
AATACATTTCAGATAATTATATTTAAAATAGAATCTTCCCCGTGAAGCTACGACTCCTCC
CCCCTCCCGTCTTAGTCCCGCCACCACTATTGTAACATAAACCCTTAATTAATTCCTGTT
CGAATCCCTGATGAAAGGTTCCCAAGTGGAGGACTCGCCAGTCAGCCGGTTGCTAAAGGA
AAAAACAGATGACTGAGTAAAAATATGTGGCCGCGAGGTTGATACTGGTGCCCCGCACTG
ACCCTCCGAGAGGCTCACTCCTGGAATACTTACCCTCTCCCTGTCAATGCGTAATTCAAA
TTACAAATAAGTAACACAAGAAATAACACAAATTGTCTACATTATGTATTCAGAGATAGA
TTATTATTTTAACATGTATATTTAGAATATTATCATTACTAAACTGGAATTATTAAAAAC
ATACTGGGAGTCAATTTAAACATATATTACTTTTTTCCGAGTCCGTCTCATATGTCGTAG
TGTAGCTGGGAGGGGTCTAGTGTCGCGTAGTCAGTGGGTGTCCCCCACTTATTGCATAAT
AGTTTAGATCGTAAATGGATAATTGTTTGTTTTTTTTAATGATTTGGTGCGAATATTTGA
TGTCGACTGTTGTTCTGTGGCGCGACGCGGAAATCTTTCGTTAAACATTTCATTCTATAT
ATTGGATCGTGTGTTGTAAAATATTCAGGAACATTAGAGAGAGCATGGGTCCGCGAGGCG
CTGACGACAGTCGACATGCAAATGATTAAGAGAAATTGTTATTTAGTTTTATTGATGAAT
AATGTAGCGAATAACATCTGGTACTAGAGGCTAGTCAGTGTTACTTCGAACTATATATAT
AATATATTACTTTGTATTTATTGTACGAAGCGTCACGGAGCATTTTGTTTTTTGAGCGCA
TTTTCTCCGCATTTAGGTCTGACGAATCGATTCCTGTTCTGTCAAACTTTCTAGATTGTT
CTAATAAGAAATCTTGAATTTGATATGAAAACTTTAGGTTTATTAAAAAAATTCTCATAA
ATATTTTTGGTAAATAGATAATGAATTGGCGATGTTAATAAGGTGT
(4066 bp)

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