Entry |
|
Symbol |
TBLA0B05310
|
Name |
(RefSeq) hypothetical protein
|
KO |
|
Organism |
tbl Henningerozyma blattae
|
Pathway |
tbl03008 | Ribosome biogenesis in eukaryotes |
|
Brite |
KEGG Orthology (KO) [BR:tbl00001]
09120 Genetic Information Processing
09122 Translation
03008 Ribosome biogenesis in eukaryotes
TBLA_0B05310 (TBLA0B05310)
09180 Brite Hierarchies
09181 Protein families: metabolism
01001 Protein kinases [BR:tbl01001]
TBLA_0B05310 (TBLA0B05310)
09182 Protein families: genetic information processing
03009 Ribosome biogenesis [BR:tbl03009]
TBLA_0B05310 (TBLA0B05310)
03016 Transfer RNA biogenesis [BR:tbl03016]
TBLA_0B05310 (TBLA0B05310)
Enzymes [BR:tbl01000]
2. Transferases
2.7 Transferring phosphorus-containing groups
2.7.11 Protein-serine/threonine kinases
2.7.11.1 non-specific serine/threonine protein kinase
TBLA_0B05310 (TBLA0B05310)
Protein kinases [BR:tbl01001]
Serine/threonine kinases: CK1 group
CK1 family [OT]
TBLA_0B05310 (TBLA0B05310)
Ribosome biogenesis [BR:tbl03009]
Eukaryotic type
Pre-40S particles
Kinases
TBLA_0B05310 (TBLA0B05310)
Pre-60S particles
TBLA_0B05310 (TBLA0B05310)
Transfer RNA biogenesis [BR:tbl03016]
Eukaryotic type
tRNA modification factors
Elongator related proteins
TBLA_0B05310 (TBLA0B05310)
|
SSDB |
|
Motif |
|
Other DBs |
|
LinkDB |
|
Position |
2:complement(1251914..1253494)
|
AA seq |
526 aa
MDLRVGRKFRIGRKIGSGSFGDIYHGTNLVSGEEVAIKLESIRSRHPQLDYESRVYKYLT
GGVGIPFIRWFGREGEYNAMVMDLLGPSLEDLFNYCHRQFSFKTVIMLALQMICRVQYIH
GRSFIHRDIKPDNFLMGVGRRGSTVHVIDLGLSKKYRDFNTHRHIPYRENKSLTGTARYA
SVNTHLGIEQSRRDDLESLGYVLIYFCKGSLPWQGLKATTKKQKYDRILEKKLCISVEVL
CAGLPEEFSQYMNYCKNLKFDERPDYLFLARLFKDLSIKLEYHNDHLFDWTMLRYTKAMV
EKSVPQLTQTNSNNANSNNIKDNNATNLNDNSNNNNNNDNINNNNNNNNNNNTATATATN
NNNGSDNKQEEKEQFKNIKLLAMKKFATHFHYCKIDAVNAGDKHYPIPEEIKQQTQENLT
AADFLPPELLILIEKNMDNLKQNAQQNNNNDNNNNNNNNNPTRILQQASPQHPQHVQQGG
VTQYPPQNTASPAPAATNTNNNGTTQYAPQLTDRRDTRPSGQDIWL |
NT seq |
1581 nt +upstreamnt +downstreamnt
atggatttaagagtaggtagaaagtttcgtatcggtagaaagattggttcaggttcattt
ggtgatatctatcatggtacaaatttagtttctggtgaagaagtagcaatcaaattagag
tctataagatcaagacatcctcaattggattatgaatcacgagtgtataaatatttgacc
ggtggtgtggggattccttttattaggtggtttggccgtgaaggtgaatataacgccatg
gttatggatttattaggtccttctttggaagatcttttcaactattgtcatcgtcaattt
agtttcaaaacagttatcatgctggctttacaaatgatttgccgtgttcaatacatccac
ggtagatcttttatccatagagatattaaaccagacaatttcttaatgggtgttggcaga
cgtggtagcacagttcatgtgatcgatctaggtctatccaagaaatatagagatttcaat
actcatagacacattccttatcgtgaaaataaatccttgactgggactgctcgttatgct
tcagtcaacactcatttaggaattgaacaatctcgtagagatgatttggaatctctaggg
tacgttttgatttatttctgtaaagggtctttaccatggcaaggtttgaaagccaccacg
aaaaagcaaaaatatgatcgtattttggaaaaaaaattatgtattagcgtcgaagtctta
tgtgctggtttgccagaagaattctcacaatatatgaattattgtaaaaatttaaaattc
gatgaaagaccagattatttgtttttggcaagattatttaaagatttgtcaattaaattg
gaataccacaatgatcatttgtttgattggactatgctaagatatactaaggccatggtt
gaaaaatcagttccacaattgacacaaacaaacagcaataatgcaaatagtaataatatt
aaggataataatgcaacgaatctaaatgataattcaaataataataacaataatgataac
attaataataataataataataataataataataatactgccaccgccactgccactaat
aataataatggaagtgataataaacaagaagaaaaagaacagtttaaaaatattaaatta
ttagccatgaaaaagtttgccactcatttccattattgtaagattgatgccgttaatgct
ggtgacaaacattatccaatccctgaagaaattaaacaacaaactcaagaaaatttaact
gctgcagatttcttaccacctgaattattgatactaatagagaaaaatatggataattta
aaacaaaacgctcaacaaaataacaacaatgataacaataacaacaacaataataataac
ccaacaagaatacttcagcaagcatcacctcaacatccgcaacatgtacaacaagggggt
gttactcaatatcctccacaaaatactgcttctcctgcaccggctgctactaatactaat
aacaatggtaccactcaatatgctccacaactgactgatcgtcgtgatacaagaccatcc
ggtcaagatatttggctataa |