KEGG   Melampsora larici-populina: MELLADRAFT_37880
Entry
MELLADRAFT_37880  CDS       T03138                                 
Name
(RefSeq) hypothetical protein
  KO
K18040  tyrosine-protein phosphatase non-receptor type 23 [EC:3.1.3.48]
Organism
mlr  Melampsora larici-populina
Brite
KEGG Orthology (KO) [BR:mlr00001]
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01009 Protein phosphatases and associated proteins [BR:mlr01009]
    MELLADRAFT_37880
  09183 Protein families: signaling and cellular processes
   03037 Cilium and associated proteins [BR:mlr03037]
    MELLADRAFT_37880
Enzymes [BR:mlr01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.3  Phosphoric-monoester hydrolases
    3.1.3.48  protein-tyrosine-phosphatase
     MELLADRAFT_37880
Protein phosphatases and associated proteins [BR:mlr01009]
 Protein tyrosine phosphatases (PTPs)
  Class I PTPs (Classical)
   Non-receptor PTPs
    MELLADRAFT_37880
Cilium and associated proteins [BR:mlr03037]
 Primary cilia and associated proteins
  Other primary cilia associated proteins
   MELLADRAFT_37880
SSDB
Motif
Pfam: BRO1 ALIX_LYPXL_bnd DUF2637
Other DBs
NCBI-GeneID: 18927676
NCBI-ProteinID: XP_007413151
JGI: Mellp1_37880
UniProt: F4RV99
LinkDB
Position
Unknown
AA seq 1018 aa
SIRQTITQTYQESPDTYKEEILSLDRCRQDALRGSAGSDVTVGRDLLYKYFGQLELLELR
FPEVRVPFPWKDAFTGKEISQLSLAYEKASVIFNIAATLSSLAAQQNRTSTEGIRRAFHN
FRCAAGMFTYINDNFLHAPSTDLSREVVKVLVQLMIAQATEVFVERMTEEKEKKPFGLRA
RVSTQAAFLYGSILEDVKDLVTKGIFERSWMWLCKHKYFSSLAQYQRSLADSAASKHGEA
LTRLQIAETAAKEANRFANSFSAAFTNSGSVTLPSDAAVSLLEITKTHLTLCTEARTSEQ
RDNDLIYHEAQPSEAALTLIEKSSVGEPIPIQEVYGAPEVQKVVGQDIFIRLVPLSVHQS
SSLYSEEKAKLVRTDGEKCDLADTELTTTLEFLGLPASLDKFNDLVQNNGDSARLKELSE
PPEQVLAWADSIQQANSGKTIDQMCSDMIALRNKTHRDLEDIERTLDTEARDCEQMRVRY
DHLWDQPPALNFTKTWRQDIKSHRQTLEMAKQSDGQVEGLWAMSKADIQMLADRSGESIR
ALFAQGSSQHDSTKAPSLLDLVDTPDDEAELIQVKNLVTSIQDNLNRLQAIKKERQGVLN
DLKERIQADDISQLLILNRKVQNVEPALFSAELEKFRAHSGRISATLHIQTSTIQEVVAQ
YKALVEGKRGKAIQDNWTNASKHRTQLLARLQRAYENHEEIRSGLSKGSQFYREISEAVS
EMQRQVSTYTNNRNAERLQMAAKAEAAKERYSKPSTPSTSTDLHGLEQRVSGMHLNNSKA
YPPPLPPPPPGWQTSQNTGPVPSGYPQQARQASTPLPVPQYPPPPPSDPYAGLGSLGQTH
PTPSSEPQYPYNNPASYRQPMSNYPAPSAPNQALPPPPPPISYQSTGNLTNAYPPHLPPS
HRLNDQPQYYPSPPPPQPYQPPPPQHSQSYPWPPNQSPIHPQHTSQRPSPAPPSSQHPAY
PSTSPSHYPPPHGAPYAPQPGWQGVPPPPPPQGGRPHEHYLPPMNQAPYPNQPPRNPY
NT seq 3057 nt   +upstreamnt  +downstreamnt
tccattcgacaaactatcactcaaacttatcaagaatctcctgatacttataaagaagaa
atcttatcattggatcgatgtcgacaagatgctttgaggggtagtgctggaagtgacgtc
acagtagggagggatttactttacaaatactttggtcaactagagttactcgaattacga
tttccggaagtgagagtgccttttccttggaaagatgcattcacgggtaaagaaatctca
caactatctttggcatatgaaaaggcatctgtgatcttcaacatcgctgctacactatct
tcactcgctgcacaacagaaccgtacttctactgagggtatccgacgtgcatttcacaac
ttcagatgtgcagctggaatgtttacatacatcaatgacaacttcctccatgccccttcc
acggatctcagtcgtgaggttgtcaaagtgctggttcaattaatgattgctcaagccacg
gaagtttttgtagagcgtatgacggaagaaaaggagaaaaagccattcggactgagggca
agggttagcactcaggcggcatttctctatggtagtattctcgaagatgtaaaggatttg
gtcaccaaaggcatctttgagcgaagctggatgtggttgtgcaagcacaagtatttttca
tcactggcacaatatcaacgatctttggccgactctgcagcatccaaacatggcgaggct
ctcacccgattacaaatcgccgagacggctgctaaagaagccaatcgtttcgcaaactca
ttctcagccgccttcacaaactctggatcagtcaccttaccatccgatgctgccgtctct
ctattggagatcaccaaaactcacttgacgctttgcacagaagccagaacttctgagcaa
cgagacaatgacctgatctatcacgaagcgcaaccctctgaagctgctcttactctgatc
gaaaaaagtagtgttggtgaacccataccgattcaagaggtttatggcgcaccagaggtc
caaaaggtggttggacaagatatctttattcgactcgtccctctcagtgtacatcaaagc
tcgagtttatatagtgaagagaaagcaaaactagtccgtacggatggtgaaaagtgtgac
ctggcagataccgaactcaccaccacactcgagtttttgggacttccggcaagtttagat
aaatttaacgacctggttcaaaataacggtgattcggctcgattgaaagaactttcggag
ccgccagagcaagtccttgcatgggctgatagtatacagcaagctaactcgggtaaaacg
attgatcagatgtgtagcgacatgatcgccctacggaataaaacccatcgagaccttgag
gacattgagcgcactctagatacagaagcgcgagattgtgaacagatgcgagtacggtac
gatcatctttgggatcaaccacccgctctgaatttcacgaagacttggagacaagatatc
aaatctcaccgacaaacgcttgagatggccaagcaatctgatggccaagttgaaggcttg
tgggcgatgtccaaagccgacattcagatgctcgctgatcgatcgggggagtccatccgc
gctttatttgcccaaggttcttctcaacatgactcgactaaggctcccagtctactcgac
ttggtcgatactccagatgatgaagctgagctgattcaagtcaagaatcttgtgacctct
atccaagacaatctcaatcgtctccaagcaatcaagaaggaacgacaaggagtattaaac
gatttaaaggaacgcatccaagccgacgacatttcacaactcttgatcctcaaccgaaaa
gttcaaaacgtcgaaccagcattattttctgccgaacttgaaaagttccgagctcattct
ggtcggatcagtgctactttacatattcaaactagcacgattcaagaagttgtagcacaa
tataaagcacttgttgaagggaaacgtggcaaagcaattcaagataattggactaatgca
tcaaaacatcgtactcaacttcttgctcgacttcaaagagcttatgaaaatcatgaagag
attcgaagtggtctttcgaaaggtagtcaattttatcgtgaaatctcagaggcggtctcc
gagatgcaaagacaagtttctacatacacgaacaaccgtaacgcagaacgacttcagatg
gcagctaaagctgaagctgcgaaagaacggtactcaaagccttcaactcctagcacttcg
acagacttacatggattggaacaacgggtgtctgggatgcatctaaacaattctaaagcc
tacccaccgcctcttccacctccacccccaggatggcagacttctcaaaacaccggaccg
gtaccatcgggttatcctcaacaggctaggcaagctagcaccccacttcctgtcccacaa
tatcctcctcctccaccctccgatccctacgcaggactaggttccctcggccagactcat
ccaaccccatcttccgaaccacaatacccatacaacaaccccgcgtcttatcgccaacct
atgagcaattaccctgccccttctgctcccaatcaagcactaccacctccgcccccaccc
atctcctatcaatctactggcaaccttacgaatgcctatccaccacatctgccaccctca
catcgcctcaatgatcaacctcaatactatccttcacccccaccgccgcaaccttatcaa
cctccaccacctcaacattcccaatcctacccttggccgcccaatcaaagccccattcat
ccacaacacacgtcacagcgtccatcaccagccccaccatcatctcaacatccagcttac
ccttctacgagtccttcacattatccaccgcctcatggagctccatacgctcctcaacca
ggatggcaaggagtaccaccaccaccaccgccacagggtggacgaccacatgaacactat
ctacctcctatgaatcaagctccctatccaaaccaacctcctaggaatccttattaa

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