Anastrepha ludens (Mexican fruit fly): 128866776
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Entry
128866776 CDS
T10909
Name
(RefSeq) nucleolar GTP-binding protein 2
KO
K14537
nuclear GTP-binding protein
Organism
alud Anastrepha ludens (Mexican fruit fly)
Pathway
alud03008
Ribosome biogenesis in eukaryotes
Brite
KEGG Orthology (KO) [BR:
alud00001
]
09120 Genetic Information Processing
09122 Translation
03008 Ribosome biogenesis in eukaryotes
128866776
09180 Brite Hierarchies
09182 Protein families: genetic information processing
03009 Ribosome biogenesis [BR:
alud03009
]
128866776
Ribosome biogenesis [BR:
alud03009
]
Eukaryotic type
Pre-60S particles
GTPases
128866776
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
NGP1NT
MMR_HSR1
FeoB_N
RsgA_GTPase
Arf
Dynamin_N
Motif
Other DBs
NCBI-GeneID:
128866776
NCBI-ProteinID:
XP_053963732
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All DBs
Position
6:85593281..85595663
Genome browser
AA seq
675 aa
AA seq
DB search
MPKVRSASGPPRKQGFNHSNHSMNPERPKSGLKGVANPRTQGTIKRLQMYRNFKAKRDRR
GKIITPAPFQGRLPSGTMARVEPSPKWFSNSRVISQSALQKFQDEIGKAVKDPYQVIMKP
SQLPITLLNEASKYKRVHLLDTESFDSTFGPKKQRKRVNLRVRDLEDLSRSAEVQAESYD
ETKDVDLVREDTGEKDAQRDWIFAAGQSRRIWNELHKVVDSSDVLLQVLDARDPMGTRSK
YIEQFLRKEKPHKHLFFILNKVDLVPVWVTQRWVAILSAEYPTIAFHASMQHPFGKGALI
NLFRQLGKLHMDKKQISVGFIGYPNVGKSSVINALRSKKVCNVAPIAGETKVWQYITLMK
RIFLIDCPGVVYPSAETDTEKVLKGVVRVELVTNPEDYVETVLQRVRKEYIQKTYKVESW
TSSMDFLEQLAKKSGKLLKGGEPDITVTSRMVLNDWQRGKLPFYVTPEGFETPKSQADKS
QNSNEGETSKQIDQEDDDGKSEAPTFVSESVKKAREFKQLQDFRKIKVGIEFEANDVREL
DKIDLEMLEKQKAERLERKKQRQQNPDDEEDSSDGASEFYSEDEYDEDLERVVHKKAIVK
RKESVAITASGKFKVEPDVGDESDDEGNHQPKAKKRLTAKEKRAVERSQKRKKIGSNFYE
VTNVKNRNRNKKKDA
NT seq
2028 nt
NT seq
+upstream
nt +downstream
nt
atgccgaaggttcgaagtgcatccggtcctccccgtaagcagggcttcaaccactccaat
cactccatgaatccggagcgccccaaatctgggctgaaaggtgtagcaaatccacgaacg
caaggcactatcaagcgattgcaaatgtatcgcaacttcaaagcaaagcgtgatcgtcga
ggaaaaatcattacaccagcgccatttcagggacgtctcccatctggtacgatggcacga
gtagagccttccccaaaatggtttagtaactcgcgggttatatcgcaaagtgcacttcaa
aaattccaagatgaaattggaaaagcagtcaaagatccatatcaagtgataatgaagcca
tcacagttgccgattactctgctcaatgaagcaagcaaatataaacgtgtacatttacta
gacacggaaagtttcgacagcacattcggcccgaagaagcaacgcaaacgtgttaatttg
agagttcgggatctagaagatttaagtcgaagcgcagaagtgcaggcggaaagttatgat
gaaacgaaagatgtagacttggtgcgtgaagatacgggcgaaaaagatgcacaacgcgat
tggatatttgccgctggacagagtcgtcgtatatggaacgaattgcacaaagtagttgat
tcttcggatgttttactgcaggtgcttgatgcacgtgatccaatgggaacccgttccaaa
tacatagaacaatttttgcgtaaagaaaaaccgcataaacatttgttcttcattttgaat
aaagttgatttggtgccagtttgggtaacgcagcgctgggtagccatactgagtgctgag
tacccaacgattgctttccatgcgtccatgcagcatcctttcggaaaaggtgcacttatt
aaccttttccgtcagttgggcaaattgcacatggataagaagcagatcagcgtgggattt
ataggttacccaaatgtaggcaaatcttccgttattaatgcactgcgttccaagaaagtt
tgcaacgttgcgcccattgccggtgaaacaaaagtgtggcagtatattactttaatgaaa
cgtatattcctaatcgattgtcctggtgtagtctatccatcagctgaaacagacaccgaa
aaggtcctgaaaggggttgtacgcgttgaactggttacaaatcctgaagactatgtagag
acagttttgcagcgtgtacgcaaagaatatattcagaaaacttataaagttgaaagctgg
acatcctcaatggactttttggagcaattggcaaagaaatctggcaaattactgaaaggt
ggagagcctgatataactgtcacatctcgtatggtattgaacgactggcagcgcggtaag
ctgccattttacgttacacctgagggatttgagactccaaaatcacaagccgataagtca
caaaacagcaacgaaggcgaaacctctaagcaaatcgatcaagaagacgatgacggcaaa
tcggaggcaccaacgttcgtaagcgagtcggttaagaaagccagagaattcaaacagttg
caagatttccgaaaaatcaaagtcggtattgagtttgaagcgaatgatgtgcgggagttg
gacaaaattgatttggaaatgctggaaaagcaaaaagccgaacgactggaacgtaaaaaa
caacgacagcaaaacccagatgatgaagaagattctagtgacggtgctagtgagttctat
tctgaagatgagtacgatgaggatctagaacgagttgtgcacaaaaaagccattgtaaaa
cgcaaagagagtgtcgctataacggcctctggcaaatttaaagtggaaccggatgttggt
gacgagagtgatgatgaaggaaaccaccaaccaaaagctaaaaaacgactaacagctaaa
gagaaacgtgcagtagaacgcagtcaaaagcgcaaaaaaattggcagtaatttctatgaa
gtaaccaatgtaaaaaatcgtaatcgaaataagaaaaaagacgcataa
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