Saccharomycodes ludwigii: SCDLUD_003971
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Entry
SCDLUD_003971 CDS
T08289
Name
(RefSeq) hypothetical protein
KO
K28035
NPR/Hal family protein kinase [EC:
2.7.11.1
]
Organism
slud
Saccharomycodes ludwigii
Brite
KEGG Orthology (KO) [BR:
slud00001
]
09180 Brite Hierarchies
09181 Protein families: metabolism
01001 Protein kinases [BR:
slud01001
]
SCDLUD_003971
Enzymes [BR:
slud01000
]
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
SCDLUD_003971
Protein kinases [BR:
slud01001
]
Serine/threonine kinases: CAMK group
CAMKL family
SCDLUD_003971
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Pkinase
PK_Tyr_Ser-Thr
ABC1
Motif
Other DBs
NCBI-GeneID:
70109288
NCBI-ProteinID:
XP_045933620
LinkDB
All DBs
Position
V:complement(413813..417130)
Genome browser
AA seq
1105 aa
AA seq
DB search
MGNGNDSNGNSTNINNVPVRRSRSLSKSIKGLFKHSTSNNDNLPLASSHKNTGANYNRST
RSNSPQSAGNVAVSLDSNNEVNLKKMVSAKELESKGKRKGSLHGGPATNSNRNNFGSVSP
VSLTPVSSRTSSNPIPFPGSSNAGGSSISINSSNNNGGNSINNKAKNTHSQSFTVGSNNT
DDSNNNNNNNNNNNNNNNVNIYNTSNKKESRQQPDILRNTGTVIKELPDFSIDSQLEDDL
LKRKLDLERRTEVKEDLEEEEKEQETEQEKRRTNALNKLENCIIPEEAEEEEEQHHNNHT
TTSNNNNNNTSTTNSNNNNNNNNNVRKNIKNNLNKQGSGSLRNSIKRNNSKRSNSISNSN
ISVNSSVNDFTSSDNEEEFDAKSHDYVDAPDYKDHMASTNYNSNDETAVASDGSEDTHEV
SDTILSSNTASNPENSAFFNKKKRSQTFSRKHLPKGLLFNSKPVTTTSNSTIVNTVSTPS
STTSLSSSTSQQPSKSGKSAHSGNTLTNNNTNNSTTRLSRNRASSVSANSLSEFVEMEQK
IVFQSDTFVLYKNFQHEHHLKVVSLLHKQADYINDNIKSDDDKEDYNQQQKRALKKSGSS
AVASTIINGDGVDELYAPPSNGTNDSNESLAGSSNANNMHRVKSSSFSLSGIFKLSHNKD
HNSGGGYNNSSNVNEALRSAAKNMNDDKVFSHAKSLLPKNKNKIIRNGQDGGTDDDNDYN
DNDDSPAIVNPNAAIGQDELKLINNLTSKMKKDALNSKGKNITFDLLDMGSGDNTHGASA
ECTSECGVFKKKYGSSIGILGHGAYGVVKVSCKLLNSAAEETEYSKITFKIRNKAFFAVK
ELQPKNNNDAFEKFSTRLTSEFVIGHSLNHVGRHPNIIKILDLFQTGSKSFVQVMEFCPS
GDLFSLLKLKSNKLLHPLEADCFMKQLLHGVSYMHEHGVAHCDLKPENLLFRPNGVLKIS
DFGTSCVFQTAWEKRAHMQTGCIGSEPYMAPEEFIPKNSYDPRLVDMWSIGIIYCTMVLG
QFIWTTPQEKDLVYSSFIDELNADNEYHVFEELRHVNQELNKCRKMCLYGIFKPNPVKRI
TIDRALQSSWMRHTKCCVVYKLKKK
NT seq
3318 nt
NT seq
+upstream
nt +downstream
nt
atgggtaatggcaatgatagtaacggtaatagcaccaacattaacaatgtaccagttagg
agatcaaggtctctatctaaatcaataaaggggttatttaaacatagcactagcaataat
gataatttacctttggcatcgtcccataaaaatacgggagctaattacaatcgttctaca
agatcaaattctcctcaatcagctggcaatgtcgcagtgtctttggattcgaacaacgag
gtaaacttaaagaaaatggtcagcgccaaggaacttgaatcaaaagggaaaagaaaggga
tctttacatggtggtccagctacaaattcgaatagaaataattttggatcggtctcccct
gtgtctttaacccccgtttcatctaggacttcatctaatcctatcccattccctggtagt
agtaatgctggtggtagttcaattagtattaatagtagtaacaacaacggtggtaatagt
attaataacaaagcaaagaatacacatagtcaaagttttacagttggcagtaataacact
gatgatagtaacaataataataataataataataataataataataataataacgtcaat
atttataacactagtaacaaaaaagagtcacgacaacaacctgatattctacgaaatact
ggtactgtcattaaggaattacccgatttcagcatagatagtcaattagaggatgattta
ttaaaaagaaaactggacttagaaaggcgtaccgaagttaaagaagatttagaagaagaa
gaaaaagaacaagaaacagagcaagaaaagcggagaacgaatgcattaaataaacttgaa
aattgcataataccagaagaggcagaggaagaggaagaacagcatcataataatcatacg
actactagtaataataataataataatacttcgactactaacagcaataataataataat
aataacaataacgttagaaaaaatattaaaaataatttaaacaaacagggaagtggtagt
ctcagaaatagcatcaagcgtaataatagcaaaagaagtaacagcattagtaacagtaac
attagtgtcaatagtagtgtaaacgattttactagtagtgataacgaggaagagtttgat
gcaaaatcccatgattatgttgatgccccagattataaggaccacatggcaagtactaat
tacaatagtaatgatgagactgctgtggcatctgatgggagcgaagatactcatgaagtc
agtgatactatattatcttccaataccgcatcgaatcctgaaaactcagcctttttcaac
aaaaaaaagagatctcaaacattttctagaaagcatttaccaaagggtcttttgttcaat
tctaaacctgtaacaacaactagcaattctactattgtcaatacagtctcgacaccctct
tctactacttcactgtcatcctcgacatcgcaacagccttcaaaatcaggaaaatcggca
cattcaggcaatacacttaccaataacaacacaaataacagtacaacaaggcttagtaga
aaccgtgctagtagtgtgagtgctaacagtttgtctgagtttgttgaaatggaacaaaaa
attgtctttcaaagtgatacgtttgtattatataaaaactttcaacatgaacatcattta
aaagtagtttcattactacacaaacaagcagattatattaacgataacattaaatcagat
gacgacaaagaagattataatcagcaacaaaaaagggccctgaagaaaagtggaagtagt
gctgttgctagtacaatcataaacggtgatggtgtggatgaattatatgcacccccttca
aatggtactaatgatagcaatgaaagtttagctggtagtagtaatgctaacaacatgcac
agagttaaatcttcttccttttcattatccggtatttttaaattatcacacaataaggat
cacaatagtggtggtggatacaataacagcagcaatgtgaacgaagctctaagatcagct
gccaagaatatgaacgatgataaagtcttttcgcatgctaaatctttattgccgaaaaat
aaaaataaaattattaggaacggccaggacggtggcactgatgatgataatgattataat
gataatgatgattcccctgcaattgtgaaccccaacgcggctattggccaggacgagtta
aaattaatcaataatttaacatccaaaatgaaaaaagatgcgttgaattccaagggtaaa
aatataacatttgatcttttagacatggggagcggtgacaatacacatggagcatctgca
gaatgtacctctgaatgtggtgtatttaagaaaaaatatggttcttcaattgggatattg
ggtcatggtgcttatggtgttgttaaggttagctgcaaacttttaaatagtgctgcagaa
gaaacagaatattcgaaaataacatttaagattagaaacaaggcgttttttgccgtaaag
gaactgcagcccaaaaataacaatgatgcattcgaaaagttctccacccgcctaacttct
gagtttgttattggacattcgttaaaccatgttggtaggcatccaaatataatcaaaatt
ttagatttatttcagacgggttctaaaagttttgttcaggttatggaattttgccccagt
ggggatttgtttagcttgttgaagttgaaaagcaacaaactattacatccgttggaagcg
gactgttttatgaaacagctattgcatggtgtttcttatatgcatgaacatggtgttgcc
cattgtgacttaaaacctgaaaatttattattcaggcccaatggtgttttgaaaattagt
gactttggtacaagttgtgttttccaaactgcttgggagaaaagagcgcatatgcaaacc
ggatgtattggttcagaaccgtacatggcacctgaagaatttattcctaaaaatagttat
gatcctagactggttgatatgtggtctataggtattatttattgcactatggttttgggc
caatttatatggaccaccccacaagagaaagatttggtctattccagttttattgatgaa
ttaaatgcggataacgaataccatgtctttgaagagttaagacacgttaatcaagaatta
aataaatgcagaaaaatgtgcttatatggaatttttaagcctaaccccgtcaagaggatt
actattgatagagctttacaaagtagttggatgagacataccaaatgttgtgttgtttac
aaattaaagaaaaaataa
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