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Last updated: 2022/11/18
NameA_BomoFB_comp100437_c0_seq1
Scaffold_idBomo_Chr10
NCBI non-redundant
(nr)
PREDICTED:_LOW_QUALITY_PROTEIN:_mitochondrial_Rho_GTPase-like_[Bombyx_mori]
Ontology
GO:0000166 F nucleotide binding
GO:0000226 P microtubule cytoskeleton organization
GO:0000287 F magnesium ion binding
GO:0003924 F GTPase activity
GO:0005509 F calcium ion binding
GO:0005515 F protein binding
GO:0005525 F GTP binding
GO:0005622 C intracellular anatomical structure
GO:0005739 C mitochondrion
GO:0005741 C mitochondrial outer membrane
GO:0005829 C cytosol
GO:0007005 P mitochondrion organization
GO:0007165 P signal transduction
GO:0007264 P small GTPase mediated signal transduction
GO:0007268 P chemical synaptic transmission
GO:0008152 P metabolic process
GO:0015031 P protein transport
GO:0016020 C membrane
GO:0016021 C integral component of membrane
GO:0016787 F hydrolase activity
GO:0019725 P cellular homeostasis
GO:0031122 P cytoplasmic microtubule organization
GO:0031307 C integral component of mitochondrial outer membrane
GO:0034643 P establishment of mitochondrion localization, microtubule-mediated
GO:0046872 F metal ion binding
GO:0047497 P mitochondrion transport along microtubule
GO:0048489 P synaptic vesicle transport
GO:0051646 P mitochondrion localization
GO:0097345 P mitochondrial outer membrane permeabilization
Transcript
Level
FPKM:2.48 TPM:2.72
ORF EntryO_BomoFB19449_3prime_partial:A_BomoFB_comp100437_c0_seq1
Sequence
(Nucleotide)
GTCACTTCATAATCATCAAGTAAGCCATCACCATCCAAATCACATATTTTAAATATCCTA
GATAATGCTTTTTTGCACTTTTCCGTTAATTCTTGTTCTTCTATGGAATAAATAGGATTG
ATGGGATGCAGAACTGCCTTTTGTGCATTGTAAAACATTTCGGATACATTTATTAGAGAT
TTCGCAGAACATTCTATACATCTGTCCACCTCTGGATATTCTTCTGCTATATCCCATATA
TTATCAATCACTGAGTAATCAATCAAATCAATCTTATTTCCGACGAGAATAACAGGCTTT
CTATAATCTTCTGGGCAATTATCTCTTACAAATGGTAACCAGTAGGTGGCTATTTTATTT
AAAGTCTCTTGTCTATCCACTGAAAATACTATGCATATTACATGTGCCCTTTCTATCTCT
TCAGCAACTTGTTCCAAAGATTGTTCAGGAATACAAATATCAATAATATTGGTTGGAACT
TGTTCTGGCGTTACATCAGCAGGTATAGTTATTTCTTCAGCTTTTGGAGGCACATGTTCT
GTAAATTCTTCAGTCACTAACGATAAAATAAGTGATGTTTTACCAACTCCTGGCTCGCCT
AGAAGAAGTATACGTACGGTTCGAGGTACAGTTTCATAAACCATTTTGTAGTTTTATACT
TGAGACATCTTATGTCTATTATTTATTTAGTTAAGCTGTTGTGAAGACAATCATTTTAGC
AAGAAAACGTATTTAAATTATTAAAATCCAGATTAGGTGTTATGAAAAAATAAAAAACGT
TGAAAACTATGTACACAACCCTATCACTCCGATTTAG
(817 bp)

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