KEGG   Neodiprion fabricii: 124186313
Entry
124186313         CDS       T08986                                 
Name
(RefSeq) heat shock protein 83
  KO
K04079  molecular chaperone HtpG
Organism
nfb  Neodiprion fabricii
Pathway
nfb04141  Protein processing in endoplasmic reticulum
Brite
KEGG Orthology (KO) [BR:nfb00001]
 09120 Genetic Information Processing
  09123 Folding, sorting and degradation
   04141 Protein processing in endoplasmic reticulum
    124186313
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01009 Protein phosphatases and associated proteins [BR:nfb01009]
    124186313
  09182 Protein families: genetic information processing
   03110 Chaperones and folding catalysts [BR:nfb03110]
    124186313
   04131 Membrane trafficking [BR:nfb04131]
    124186313
   03051 Proteasome [BR:nfb03051]
    124186313
   03029 Mitochondrial biogenesis [BR:nfb03029]
    124186313
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:nfb04147]
    124186313
Protein phosphatases and associated proteins [BR:nfb01009]
 Protein serine/threonine phosphatases
  Phosphoprotein phosphatases (PPPs)
   Protein phosphatase-5
    PP5-interacting proteins
     124186313
Chaperones and folding catalysts [BR:nfb03110]
 Heat shock proteins
  HSP90
   124186313
Membrane trafficking [BR:nfb04131]
 Autophagy
  Chaperone mediated autophagy (CMA)
   Chaperones
    124186313
Proteasome [BR:nfb03051]
 Eukaryotic proteasome
  Assembling factors
   Other assembling factors
    124186313
Mitochondrial biogenesis [BR:nfb03029]
 Mitochondrial quality control factors
  Mitophagy factors
   Parkin-independent mechanism factors
    124186313
Exosome [BR:nfb04147]
 Exosomal proteins
  Proteins found in most exosomes
   124186313
SSDB
Motif
Pfam: HSP90 HATPase_c_3 HATPase_c LOH1CR12
Other DBs
NCBI-GeneID: 124186313
NCBI-ProteinID: XP_046433857
LinkDB
Position
7:complement(15197803..15203763)
AA seq 719 aa
MPEQMETAPEVETFAFQAEIAQLMSLIINTFYSNKEIFLRELISNSSDALDKIRYESLTD
PSRLDSGKDLHIKIIPNKNDGTLTLIDTGIGMTKADLVNNLGTIAKSGTKAFMEALQAGA
DISMIGQFGVGFYSAYLVADRVTVVSKHNDDEQYLWESSAGGSFTVRPDPGEPLGRGTKI
VLQIKEDQTEFLEETKIKEIVKKHSQFIGYPIKLLVEKEREKELSDDEAEAESEEKKEEE
DGKPKIEDVGEDGDEDKKEKPAKKTKTIVEKYTEDEELNKTKPIWTRNADDISQEEYGEF
YKSLTNDWEDHLAVKHFSVEGQLEFRALLFVPRRMPFDLFENKKRKNNIKLYVRRVFIMD
NCEELIPEYLNFMKGVVDSEDLPLNISREMLQQNKILKVIRKNLVKKCLELFEELTEDKE
SFKKFYEQFSKNIKLGIHEDSTNRSKLADLLRYHTSASGDEVCSLKDYVGRMKANQKHIY
YITGESKEQVSNSSFVERVKKRGFEVVYMTEPIDEYVVQQMKEFDGKQLVSVTKEGLELP
EDESEKKKREDDKAKFENLCKIMKNILDTKVEKVVVSNRLVDSPCCIVTSQYGWTANMER
IMKAQALRDTSTMGYMAAKKHLEINPDHSVIETLRQKAEADKNDKAVKDLVVLLFETSLL
SSGFSLDEPQVHAARIYRMIKLGLGIDEEEPTQEEEAAPAEVTPVEGDNEDASRMEEVD
NT seq 2160 nt   +upstreamnt  +downstreamnt
atgcctgagcaaatggagacagctcccgaagtggaaacattcgccttccaggcagagata
gcccagttgatgtcattgatcatcaacacattctactcaaacaaagaaattttcctgcga
gaattgatttcgaactcgagtgatgctttggacaagatcaggtacgaatcgttgaccgat
ccgtcgcgtttggattccggaaaggacctgcacatcaaaataatccctaacaagaatgat
ggaaccctgaccctgattgacactggtattggtatgactaaggcagatctggtaaacaat
cttggtacaatcgccaagtccggaactaaggcctttatggaagctcttcaagctggagcg
gacatctctatgattggacaatttggtgttggattctactccgcctatctagttgcagac
agagtgactgtagtttcaaaacacaatgatgacgagcagtatctttgggagtctagcgct
ggaggatcgttcacagttagacccgacccaggtgaacctttgggacgaggtacaaaaatt
gttcttcaaatcaaagaagatcagactgaattcttagaggagactaaaattaaggaaatt
gtcaagaagcactctcagttcatcggttatcccataaaactattagtagaaaaagagagg
gagaaggagctcagtgatgatgaagctgaggctgagagcgaagagaagaaagaagaagag
gatggaaagcctaagattgaagatgtaggggaagacggagatgaggataaaaaggagaaa
ccagcgaagaagaccaaaactattgttgagaaatatacagaggacgaagagctaaacaag
acgaagccgatctggacacgcaatgcagatgatattagccaggaggagtacggcgaattt
tacaaatcattgacaaatgactgggaggatcatctcgctgtgaaacatttctctgttgaa
ggtcagcttgagttcagagctcttctgttcgtacccaggcgcatgcccttcgatcttttt
gaaaacaagaaacgaaagaataacatcaagctctatgttcgacgagtattcataatggac
aactgtgaggagctgataccagagtacctcaatttcatgaaaggtgttgtggacagtgaa
gatctgccactaaacatttcacgtgaaatgttgcagcaaaacaaaatactgaaagttatc
cgaaaaaatttggtgaagaaatgtctggagctctttgaggaattgactgaggacaaggag
tcatttaagaagttctacgagcaattcagcaaaaatattaagcttggaattcacgaagac
agcacaaaccgcagcaagctagccgaccttcttcgctatcacacttccgcatctggtgac
gaagtctgttctctcaaggactacgtcggacgtatgaaagcgaaccagaagcacatatac
tacatcactggagagagcaaggaacaagtttccaatagctcatttgttgagcgtgtaaag
aagcgtggttttgaagttgtgtacatgactgagccaattgatgagtacgttgttcagcaa
atgaaggaatttgatggcaagcagcttgtttccgtaaccaaggaaggccttgagcttccc
gaagacgagtccgagaagaagaaacgggaggatgacaaagccaaatttgaaaatctttgc
aagatcatgaaaaatattttggataccaaagtggaaaaggtcgttgtatcgaacagactc
gtagattcaccttgctgtatcgttacatcacagtacggatggacagccaacatggagaga
ataatgaaggcgcaagctctccgcgatacttcgacgatgggatatatggcggcaaagaag
caccttgagatcaatcctgaccattcagtgattgaaaccctacgtcagaaggcagaagcg
gataaaaatgacaaagcagttaaagatttggttgttttgttatttgaaacttccctgtta
tcttctggtttcagtttagatgaacctcaagtccatgctgcgcgtatttaccgcatgatt
aaacttgggcttggaattgacgaggaagaaccaacacaagaagaggaagcggctccagcg
gaagtgacaccagttgagggtgacaacgaggatgcgtcgcgcatggaggaagttgattaa

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