Mercurialis annua (annual mercury): 126674922
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Entry
126674922 CDS
T10153
Name
(RefSeq) probable serine/threonine-protein kinase WNK3
KO
K08867
WNK lysine deficient protein kinase [EC:
2.7.11.1
]
Organism
mean Mercurialis annua (annual mercury)
Brite
KEGG Orthology (KO) [BR:
mean00001
]
09180 Brite Hierarchies
09181 Protein families: metabolism
01001 Protein kinases [BR:
mean01001
]
126674922
01009 Protein phosphatases and associated proteins [BR:
mean01009
]
126674922
Enzymes [BR:
mean01000
]
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
126674922
Protein kinases [BR:
mean01001
]
Serine/threonine kinases: Other
Wnk family
126674922
Protein phosphatases and associated proteins [BR:
mean01009
]
Protein serine/threonine phosphatases
Phosphoprotein phosphatases (PPPs)
Protein phosphatase-1
PP1-interacting proteins (PIPs)
126674922
BRITE hierarchy
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Pkinase
PK_Tyr_Ser-Thr
OSR1_C
Pkinase_fungal
APH
Motif
Other DBs
NCBI-GeneID:
126674922
NCBI-ProteinID:
XP_050225425
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Position
LG3:complement(68841855..68845997)
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AA seq
588 aa
AA seq
DB search
MPQESQSEQDPDDSDAEFVEIDPTGRYGRYKEVLGKGAFKKVYRAFDELEGIEVAWNQVK
VAELVRSSDDLERLYSEVHLLKTLKHKNIIKFYNSWVDTKNENINFITEIFTSGTLRQYR
RKHKHVDLRALKKWSRQILEGLSYLHSHDPPVIHRDLKCDNIFVNGNQGEVKIGDLGLAA
ILQQARSAHSVIGTPEFMAPELYEEEYNELVDIYAFGMCLLELVTFDYPYAECINAAQIY
KKVSSGIKPASLAKVTDPSVKAFIEKCIAKVSDRLPAKELMMDPFLRPDDENESVGRSLR
QKSHISGSSSDEMDAKEHEPAEKSRDFTVQGQMKDIKTIFLKLRIADSTGHIRNIHFPFN
TEVDTSIAVASEMVEELDLTDQDVSTLAEIIDSEIRSHMPDWAPTKHSLDNQCPEITESE
TAFEIKDGSPLTNVSTHSSGSLQLERLPSGRKYWSDSPKGSSPSKLGQSNQLSHQSSLGS
HQDGDSTNIACSRDQLGTECVCQECKEENEAGGSVDSQSSNTFTDVESDVTILVQRLENL
LVEQQKELDDLKRRNEEAISDLLNEASPEIARQVLSLCKLNVPDYKML
NT seq
1767 nt
NT seq
+upstream
nt +downstream
nt
atgcctcaagaatcacaatcggagcaagaccctgatgattctgatgccgagttcgtcgaa
attgatcccactggtcgctatggtcggtataaagaggttctaggcaaaggtgctttcaaa
aaagtatacagagcttttgatgaattggaaggaattgaagttgcgtggaatcaggttaag
gtggccgaattagtccgtagctctgatgatctcgaacgtctctattccgaagttcatttg
cttaagactcttaagcataaaaacattatcaagttttataattcatgggttgataccaag
aatgagaacatcaatttcattactgaaatcttcacttctgggacgttacggcagtatcgg
aggaagcataagcatgttgacttgagagcattgaaaaaatggtctaggcagattttagaa
ggcctttcttatcttcatagtcatgacccacccgttatccacagagacttgaaatgtgac
aacatatttgttaatgggaatcaaggtgaggtgaaaattggtgacttgggtctggctgcc
attcttcagcaggctaggtcggctcatagtgtcattggtacaccagagtttatggcaccg
gagctttatgaggaggaatacaatgagcttgttgacatttatgcatttggcatgtgcttg
ctggagttggtgacgtttgattacccatatgctgaatgtattaatgctgctcaaatatac
aagaaagtgtcatcaggaataaagcctgcatcattggcaaaagttacagatccttctgtt
aaagcatttatagaaaaatgtattgcaaaagtttctgatcgattgcctgcaaaggaactt
atgatggatccttttctccgacctgatgacgaaaatgaaagtgtgggacgttctttacga
cagaaatcacatatttcaggtagtagttctgatgagatggatgctaaagaacatgaacca
gctgagaaaagtagggactttactgtgcaaggacagatgaaagatattaaaacaatattt
ctgaaactaaggatagctgactcaacaggtcatattcgcaatatccacttcccctttaat
actgaggtggatacatcgatagcagttgctagtgaaatggtggaggagttggacctaact
gatcaagatgtttcaacacttgctgaaatcattgactcagaaattcggtcacacatgccc
gactgggcacccacaaagcattctttggataatcagtgcccagagattacggaatctgaa
actgccttcgaaattaaagacggttcacccttgacaaatgtatcaactcattcttcaggc
agtcttcaactggaaagattgccttcaggtcggaagtactggtctgactcgcccaaggga
agctctccaagcaagcttggacaatcaaaccagttgtctcatcagtcttctctcggtagt
catcaagatggtgatagtacaaacattgcttgttcacgtgatcagttgggaactgagtgt
gtatgtcaagaatgcaaggaagagaatgaagctggcggatctgttgattcacaatctagt
aatactttcacggatgttgagtcggatgtaacaatacttgttcaaagacttgaaaatctt
ttagtagagcagcaaaaggaactagatgacctaaaaagaaggaatgaagaagccatatca
gaccttctgaatgaggcttctccagaaattgcacggcaagttttgagtttatgtaagctg
aacgtacctgattataaaatgctatga
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