Sporisorium graminicola: EX895_006240
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Entry
EX895_006240 CDS
T09331
Name
(RefSeq) hypothetical protein
KO
K14537
nuclear GTP-binding protein
Organism
sgra
Sporisorium graminicola
Pathway
sgra03008
Ribosome biogenesis in eukaryotes
Brite
KEGG Orthology (KO) [BR:
sgra00001
]
09120 Genetic Information Processing
09122 Translation
03008 Ribosome biogenesis in eukaryotes
EX895_006240
09180 Brite Hierarchies
09182 Protein families: genetic information processing
03009 Ribosome biogenesis [BR:
sgra03009
]
EX895_006240
Ribosome biogenesis [BR:
sgra03009
]
Eukaryotic type
Pre-60S particles
GTPases
EX895_006240
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
NGP1NT
MMR_HSR1
FeoB_N
Arf
BUD22
RsgA_GTPase
GTP_EFTU
Motif
Other DBs
NCBI-GeneID:
40729135
NCBI-ProteinID:
XP_029737145
UniProt:
A0A4U7KLR1
LinkDB
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Position
SGRAM_8:join(1411261..1412142,1412629..1413921)
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AA seq
724 aa
AA seq
DB search
MVVVKGGPSKNNTKSTGIKRVKGENFYRDAKKAKVVKLLSKEGIASKAIRDKSGKIIQAA
EFQSSEAKPGRVQPDKRWFGNTRVISQDALDHFRTSLGSRVNDPYSVLLRRNKLPMSLIQ
DPGKGKAPSLTTLEPYSDTFGPGAQRKRPRLDGGMSSFEELATSSEQAGIAAEEKQAALE
AKAAGVGLVPSDYEVGSSAERSANGFTADADELYEIPVTRGRSEPIYSKGQSRRIWGELY
KVIDSSDVIIHVLDARDPLGTRCRSVEKHIRDDKPHKHLVFLLNKVDLVPTWVTARWVKI
LSKEYPTIAFHASINNSFGKGSLIQLLRQFSVLHSDKKQISVGFVGYPNTGKSSIINTLK
KKKVCNVAPIPGETKVWQYISLMRRIYLIDCPGIVPVSAHDSETGTVLKGVVRVENLETP
AEHIPALLSRVKPEYIRRTYNLEKWSNSEEFLGQIAKRMGKLLKGGEPDLETVAKMVLND
WIRGKIPFFVAPASPDEGKNGKGKAKATAEEVEAAETSEVAAADAELDAATDRLLKRKKV
KGVEQPLKQIAVATKFTREDIEAGRPEDYVMERDEDEPVPEVAVDEDATFASDDDVAEDD
EDDEEEDGDALEDLNWDDVFQGGSDAEEEDVDEVDADSTAKSSPGKHAAPAADDEDEEDD
PRRKQKKGARMTTSKRKAENYYTNANVKNKSRRGKPDAAEPKSKERGPKVGANGKGAPQQ
RRRK
NT seq
2175 nt
NT seq
+upstream
nt +downstream
nt
atggtcgtcgtcaagggaggtccctccaaaaacaacacaaagtccaccggcattaagcgt
gtcaagggcgagaacttctaccgcgacgccaagaaggccaaggtcgtcaagctcctctcc
aaggaaggcatcgcttccaaagcgatccgcgacaagagcggaaagatcatccaggctgcc
gagttccagagcagcgaagcaaagcccggtcgtgtccagcccgacaagcgatggtttggt
aacacccgcgtcatctcgcaagatgcgctcgaccacttccgcacctcgctcggctcgcgc
gtcaacgatccgtactcggttctattgagaaggaacaagcttcccatgtcgctgatccag
gatcccggcaagggcaaggctccctcgctcaccactctcgaaccctactcggacacattt
ggtccaggcgcgcagcgaaagcgtccccgcctcgatggtggcatgagctccttcgaggaa
cttgctacgagcagtgagcaggctggcatcgccgccgaagagaagcaagcagctctggag
gccaaagccgccggtgtcggtctcgtcccctccgactacgaagtcggctccagcgctgag
cgctccgccaatggcttcacggctgacgcagacgagctctacgagatccccgtcactcgt
ggccggtccgagcccatctacagcaagggtcagtctcgacgtatctggggtgagctctac
aaggtcatcgactcttccgacgtcatcatccacgttctcgatgctcgcgaccctctcgga
acccgatgccgcagcgtcgagaagcacattcgcgacgataagccgcacaagcacctcgtc
ttcctcctcaacaaggtcgatcttgtcccgacctgggtaactgctcgttgggtcaagatc
ctttccaaagagtacccgaccatcgcattccacgcctcgatcaacaactcgttcggaaaa
ggttcgctgatccagctgctgcgccagttcagcgtgctgcactcggataagaagcagatc
agcgtcggtttcgtcggataccccaacacgggcaagagttcgatcatcaacacgctcaag
aagaagaaggtgtgcaacgtcgcgcctatcccaggcgagactaaggtgtggcagtacatc
tcgctcatgcgtcgcatctatctcatcgactgccccggtatcgtgcccgtttcggcgcac
gactcggagacgggcacggtgctcaaaggtgttgtgcgtgtcgagaacctcgagacgcct
gccgagcacattccggcgttgctgtcacgtgtcaagccggagtacatccgtcgcacgtac
aacttggagaagtggtccaattcggaagaattcctcggccagatcgctaagaggatgggc
aagctgctcaagggcggggagccggatctggagacagtggccaagatggtgctgaacgat
tggattcgcggtaagattccgttctttgttgcgcctgcttcgccggatgagggcaagaat
ggaaagggcaaggctaaagcaacggctgaagaggtcgaggctgccgagacgagcgaggta
gcagcagcagatgccgaactcgacgctgccaccgacaggctgctcaagaggaagaaggtc
aagggtgtcgagcagccgctcaagcagattgccgtggccaccaagtttacgcgcgaggac
attgaggcgggtcgacccgaagactatgtcatggagcgcgacgaggacgagccggtgccc
gaggtggccgtggacgaagacgccactttcgccagcgacgatgatgttgccgaggacgac
gaggatgatgaagaggaggatggagacgcgctcgaagacttgaactgggacgacgtgttc
cagggcggttcggacgcagaagaggaggacgtcgacgaggtcgacgccgactccaccgcc
aagtcttcgcctggcaaacacgctgctcctgccgccgacgatgaggacgaagaagatgac
ccgcgtcgcaagcagaagaagggtgcgcgcatgaccacctctaaacgcaaggccgagaac
tactatacaaatgccaacgtcaagaacaagagccgtcgtggcaagcccgacgccgccgaa
cccaagtcgaaagaacgtgggcccaaggttggcgccaacggaaagggtgcgcctcagcag
cgtcgtcgcaagtag
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