Seriola lalandi dorsalis (Yellowtail amberjack): 111663957
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Entry
111663957 CDS
T06058
Symbol
eral1
Name
(RefSeq) GTPase Era, mitochondrial
KO
K03595
GTPase
Organism
slal
Seriola lalandi dorsalis (Yellowtail amberjack)
Brite
KEGG Orthology (KO) [BR:
slal00001
]
09180 Brite Hierarchies
09182 Protein families: genetic information processing
03009 Ribosome biogenesis [BR:
slal03009
]
111663957 (eral1)
03029 Mitochondrial biogenesis [BR:
slal03029
]
111663957 (eral1)
Ribosome biogenesis [BR:
slal03009
]
Eukaryotic type
Other ribosome biogenesis factors
111663957 (eral1)
Prokaryotic type
GTPases
111663957 (eral1)
Mitochondrial biogenesis [BR:
slal03029
]
Mitochondrial DNA transcription, translation, and replication factors
Mitochondrial transcription and translation factors
Other mitochondrial DNA transcription and translation factors
111663957 (eral1)
BRITE hierarchy
SSDB
Ortholog
Paralog
GFIT
Motif
Pfam:
MMR_HSR1
FeoB_N
RsgA_GTPase
Dynamin_N
AIG1
GTP_EFTU
KH_2
cobW
Arf
ATP_bind_1
AAA_22
Roc
AAA_28
AAA_18
nSTAND3
AAA_24
SRPRB
GBP
Motif
Other DBs
NCBI-GeneID:
111663957
NCBI-ProteinID:
XP_023274140
Ensembl:
ENSSLDG00000019349
UniProt:
A0A3B4Y9Q0
LinkDB
All DBs
Position
Unknown
AA seq
450 aa
AA seq
DB search
MALRLWARLLRGSAVLSSRGVGSARQESASWLLTAGNVACCRGGRNGFIFTPACFITSEA
FLNRLMKGNAAEADSSFYRLPASVPPDSGEQLSLLLRHPDQPDNSKVLKVAIIGPPNAGK
STLSNQLLGRKVFAVSKKVHTTRSRALGVVTEDDTQIILLDTPGLTTPSKVKRHQLEKSL
LVDPLNTVKEADLVVVVVDVADRWMSSRLDFEVLKCLAQHPDIPAVLVLNKVDLVKAKDK
LLDITAGLTCGMVNGRRIRVRPVIKPPWAKKRSEGDSELSPDEHIAEPEGSAETNSVLNK
EQLKTLKSQEGWPHFKDVFMLSSVDSQDVETLKSYFMAAAKPAPWQYHSEVLTDQSPEEV
CTNIIREKLLEYLPQEVPYSMTQSVELWQDGENGELDISVKLHATKETHMKMVIGAAGQM
VARIAREAGEDLSHIYLRDVKLKLSVKLRK
NT seq
1353 nt
NT seq
+upstream
nt +downstream
nt
atggctctcagactgtgggctcggctcctcaggggctcggccgtcctctcctcgcggggc
gtcggctctgctcgacaggaaagtgcgtcatggctcctgacagcgggaaatgttgcctgc
tgcagaggagggagaaatggatttatcttcactcctgcttgttttattacatcagaggcg
tttctcaacagactgatgaaaggcaatgcagcagaggcagacagcagcttttatcgcctc
ccagcctcagttccgccggacagcggggaacaactgtctttgttactgagacatccagat
cagcctgacaactcaaaagtattgaaagtggctataataggccctccaaatgctgggaag
tccacattatccaaccagctcctcggcagaaaggtgtttgccgtgtctaagaaagtgcac
actacacggtcccgtgcgctgggcgtcgtcacagaggatgacacacagataattttactg
gacactcctggtctcaccactccgtcaaaggttaaaagacaccagctggagaagtctttg
cttgtggatcccttgaacacagtcaaagaagctgacctagtggtggtggtggtggatgtg
gcagacagatggatgagcagcaggcttgactttgaggtgctcaagtgcctcgcccagcac
ccagacatcccagctgtcctggtcctcaataaggtggacctggtgaaggcgaaggacaag
ctgctggatatcactgcagggctgacatgtggaatggtgaatggacgcaggataagggtc
aggccagtgatcaagcctccgtgggccaaaaagaggtcagagggggattcggagctctca
cctgacgagcacatcgcagagcctgagggcagcgctgagacgaactctgtgctgaacaaa
gagcagctgaagacactgaagagccaggagggctggcctcacttcaaagatgtcttcatg
ctgtcctctgtggacagtcaggacgtggagacgctgaagagctacttcatggctgccgct
aagcccgcaccgtggcagtaccacagtgaggtcctgaccgatcagagtccagaggaagtc
tgcaccaatatcatcagagagaagcttctggagtatctgccccaggaagtgccttactca
atgacacagtctgttgaactgtggcaggatggagaaaacggtgagctcgatatttcagtg
aaacttcacgccacgaaagaaactcacatgaagatggtgatcggcgcggccggccagatg
gtagcacggatcgcccgagaggccggcgaggacctgagtcacatctacctgagggatgtg
aagctgaagctctcagtcaagctgaggaagtga
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