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Last updated: 2022/11/18
NameA_ErmoMG_comp35956_c0_seq1
Scaffold_id
NCBI non-redundant
(nr)
endoplasmin-like_precursor_[Bombyx_mori]
Ontology
GO:0000166 F nucleotide binding
GO:0001666 P response to hypoxia
GO:0003723 F RNA binding
GO:0005524 F ATP binding
GO:0005634 C nucleus
GO:0005783 C endoplasmic reticulum
GO:0005788 C endoplasmic reticulum lumen
GO:0005789 C endoplasmic reticulum membrane
GO:0005829 C cytosol
GO:0005886 C plasma membrane
GO:0005925 C focal adhesion
GO:0006457 P protein folding
GO:0006950 P response to stress
GO:0016020 C membrane
GO:0019903 F protein phosphatase binding
GO:0030433 P ubiquitin-dependent ERAD pathway
GO:0030496 C midbody
GO:0030970 P retrograde protein transport, ER to cytosol
GO:0031012 C extracellular matrix
GO:0031247 P actin rod assembly
GO:0034663 C endoplasmic reticulum chaperone complex
GO:0042470 C melanosome
GO:0043066 P negative regulation of apoptotic process
GO:0043666 P regulation of phosphoprotein phosphatase activity
GO:0046790 F virion binding
GO:0048471 C perinuclear region of cytoplasm
GO:0050750 F low-density lipoprotein particle receptor binding
GO:0051082 F unfolded protein binding
GO:0070062 C extracellular exosome
GO:0071318 P cellular response to ATP
Transcript
Level
FPKM:370.55 TPM:272.65
ORF EntryO_ErmoMG11577_complete:A_ErmoMG_comp35956_c0_seq1
Sequence
(Nucleotide)
TTTTTTTTTTTTACTTAATTAATTTTATTACAATATAAATATAAATTATTTACAGTACGA
GTAAGTGGTTTGTTTGTTGCAAGTCAACACAACCATTCAACACACAATCAGTCGTCCCAC
ACACACACACACACGCGCGCGCGCGCTCTGTTCTCCTACAGCTCGTCGTGTTCCTCGGGT
GCGGGTTCAGTCTCGGCGGTGTCGGCGGGCTCAGCGGCCTCGACGGACTCGTCGGTCTCG
GCGGCCTCGTCGTCCGCGTCGGGTTCGTCTTCGGGCACGGCGTCGGCGGGCAGGCCGAGG
GAGCGCTGCAGCATGCTCTCGATGGAGTCTGCGAACTGGACGGCCTGTCCCTCCTGCAGG
ATGTAGCCGGAGCGCAGCGCGGCGGTGCGGTAGAGCGTGTTGGCGGCGTCGAGCGCGGCG
CTGCTGTCGGGGTCGTCCTGGACGCGGCGCAGCAGCTCGGCGACGATGGGATGTCGCGGG
TTGATCTCCAGCATCTTCTTCTGCGTGAGATGGTGTCGCCGCTGCGGGTCGTCCGCCTTC
TGGTGCGCGTTGGAGAGGGCGAGGCGCTCCATGTTGCCGGTCCAGCCGAAGGCGGTGGCG
GCGAGCGCGGCGGGGGAGCGCGCGAGGCGGCGGGAGACGGTGGCGCGGGTGATCCAGGTC
CCGAGCTTGTCGCTCAGCCAGCGCGTCAGGGGCTCGTACTGCTTCTTGTAAGCTTCCAGT
CTCTCTTTAGCTTGATCGCCTTCTTCGAGATCGAATATTTCCTTGGCGATGTTCTGGAAT
TTATGTCCGTCGTATTCGGGAAGCGAAGACAAGCAGTACTCGTCCACGGCCTCCGTCAGG
TACAGGACCTCGTAGCCACGGCTCACCAACCTCTCTGCGAACGGAGACTTCTCCACCTCA
GCTCGGCTAGAGCCTGCGATGTAGTAGATGTGGTGTTGTTTGGGCTTCATACGTTTGACG
TAGTCCGAAAGGAAAGTCTTTTCTTCAGTGTGAGAAGAATGGAACCTCAATAACTTCGCT
AGACGAGAGCGGTTGCTGGGATCTTCCATGATACCAAGTTTGATGTTAGTGGAATATTCT
TTCCAGAATAGTTCATATTCATCATCAGGGATCTTCTTGAGCATATCGAGCACCTTGCGA
ACGAGCTTCTTCTTGATGATCTTGATGAGTTTGTGTTGCTGCAAGGTCTCCCGGGACACG
TTGAGCGGCAGGTCGTCGGAGTCGACGATGCCCTGCACGAAGGCGAGGTAGTTGGGCATG
AGGTCGCTGAACTCGTCGGTGATGAAGACGCGGCGCACGTAGAGCTTGATGTGGTCGGTC
TTGGTGCCGTACTTGTTGAAGCTGTCGGCGGGCTGCACGCGCGGCACGAACAGCAGCGCG
CGGAACGTCACCTCGCCCTCCGCCACGAAGTGCGCGCGCGCCAGCTGCGGCGACGTGTCC
TTGGTGAGGCTCTTGTAGAACTGCGTGTACTCCTCCTCCGTCACGTCGGCCGGCTTGCGC
GTCCAGATGGGCTTGTTGTCGTTCATGAGCTCCCAGTCCCACACCGTCTTCTCAGTCTTC
TTGGTCTTGGGCTCGGCCTCGTCCTTGGCGTCCTCGACCTGCGCGTCGTCGTCGTCGGCC
GCGATGTCCGCCTCCGGCTCGTCCAGCGGCTCCTCCACGGTCTCGGTGCGCGAGGCCCAC
AGGTAGATGGGGAAGTTGATGAACTGCGAGTACTTCTTGACGAGAGCACGGATGGTGTCC
GCCTGCAGGTAGTCGGCGGCTTCCTCCTTCATGTGCAGCGTGAGGTGCGTGCCGCGCTTG
AGAGTGTCGCCGCGCGGGTCCTCGGCGACGCTGAAGGAGGCGGCGTCGGACTGCCAGACG
TGCTGCTTGTCGTCGTTGTGCTTGGAGGTGACGGTGACGCTGTCGGCGACGAGGAAGGCG
GAGTAGAACCCGACGCCGAACTGTCCGATCATGTCGTTCATTTCGGGAGGAGCATCCTTC
TCAGGGTCCTGCATCTTGGAGAGGAAGTCGGCAGTGCCCGACTTGGCGATGGTGCCGAGG
TTGTTGATGAGGTCGGCGCGGGTCATGCCGACGCCGGAGTCGATGATGTGCAGGAGACGC
TTCTCGGGCTCCGCCTTGATGCGGACGCTGAGGTCGGGCTGCGCGCCGAGCACGCCGTGG
TCCGTCAGTGACATCAGTCTGATCTTGTCCAGTGCGTCTGAACCGTTAGATATCAACTCA
CGAAGGAAAATCTCTTTGTTTCTGTAAAGTGAATTGATGATGAGTTTCATCATGCGGTTG
ACTTCAGTCTGGAAGGTGTAGTTCTGTGCTCGGTCGCGGAGTTCCTTCATCTGCGCGACG
CTCAGCGAGTCCGGGGAGATGGCCTCCTCCTCGCGCAGCACGGCCTCCGCGTCAGTCCGA
GATCCTTCTCTTGAGGAGCCCAGATCTGCATCTACTGTGACTTCTTCCACAGTACCAATA
CCTTCCTCTTGGGCATGGCTCCATCCTGAAAGCAACAGGACGCCGAGCCCTAACAGCCAA
ATGTACTTCATCGCTGGAGTCAGGATCAACCAACGTGAATCAGAAGTTGAAATTACTTTA
ATAAGACAACGTACTTTAAGTATTTTACGGCGCCTTCTGAATCAAACACGCCTCTCCGGC
AATTCTAGAATTTCAATGAACTTGATCATGTACTTTTGACATTTACAATATATTTTAAAT
AACGTCAATCCAGGTTTTTATTGGTTAACAATATTACACTACTGTGTTGTACCAATGAAA
(2760 bp)

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