KEGG   Cavenderia fasciculata (cellular slime mold): DFA_02539
Entry
DFA_02539         CDS       T02668                                 
Symbol
cdcD
Name
(RefSeq) cell division cycle protein 48
  KO
K13525  transitional endoplasmic reticulum ATPase
Organism
dfa  Cavenderia fasciculata (cellular slime mold)
Pathway
dfa04141  Protein processing in endoplasmic reticulum
Brite
KEGG Orthology (KO) [BR:dfa00001]
 09120 Genetic Information Processing
  09123 Folding, sorting and degradation
   04141 Protein processing in endoplasmic reticulum
    DFA_02539 (cdcD)
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   03019 Messenger RNA biogenesis [BR:dfa03019]
    DFA_02539 (cdcD)
   03009 Ribosome biogenesis [BR:dfa03009]
    DFA_02539 (cdcD)
   04131 Membrane trafficking [BR:dfa04131]
    DFA_02539 (cdcD)
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:dfa04147]
    DFA_02539 (cdcD)
Messenger RNA biogenesis [BR:dfa03019]
 Eukaryotic type
  mRNA surveillance and transport factors
   Transport factors
    Ran-mediated transport factors
     DFA_02539 (cdcD)
Ribosome biogenesis [BR:dfa03009]
 Eukaryotic type
  Pre-60S particles
   Ribosome quality control proteins
    DFA_02539 (cdcD)
Membrane trafficking [BR:dfa04131]
 SNARE
  SNARE associated proteins
   Others
    DFA_02539 (cdcD)
 Autophagy
  Aggrephagy
   Other aggrephagy associated proteins
    DFA_02539 (cdcD)
Exosome [BR:dfa04147]
 Exosomal proteins
  Exosomal proteins of haemopoietic cells  (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
   DFA_02539 (cdcD)
SSDB
Motif
Pfam: AAA AAA_lid_3 CDC48_N RuvB_N AAA_5 AAA_16 AAA_2 CDC48_2 AAA_33 AAA_14 AAA_22 NPHP3_N TIP49 RNA_helicase ATPase_2 Mg_chelatase nSTAND3 AAA_28 AAA_17 Parvo_NS1 ABC_tran IstB_IS21 AAA_18 AAA_7 Viral_helicase1 Vps4_C NACHT NB-ARC Rad17 TsaE AAA_24 Sigma54_activ_2 Sigma54_activat DUF815 ResIII Zeta_toxin KAP_NTPase
Other DBs
NCBI-GeneID: 14870849
NCBI-ProteinID: XP_004357262
UniProt: F4PZN6
LinkDB
Position
Unknown
AA seq 798 aa
MADIEAKKAENVPILERKRAPNRFFVEEAINDDNSVVTLHPDAMTALELFRGDTLLIKGK
KRRDTVCIVLMDNSVDPSKIRMNKVIRNNLRVRLGDMISVHQCSDVKYGKRIHVLPIDDT
IEGLSGNLFDLYLKPYFLEAYRPVRKGDLFLVRGGMRAVEFKVVECDPGEYCIVAPETMI
HCEGEPVKREDEDRLDEVGYDDIGGVRKQLGQIRELVELPLRHPQLFKNIGVKPPKGILL
YGPPGCGKTMIARAVANETGAFFFLINGPEIMSKLAGESESNLRKAFEEAEKNSPAIIFI
DEIDSIAPKREKTQGEVERRIVSQLLTLMDGLKSRAHVIVIGATNRPNSIDPALRRFGRF
DREIDITIPDATGRLEIMRIHTKNMKLDEDVDLESISNETHGYVGADLAALCTESALQCI
REKMDIIDLEDETISAEILESMSVTQAHFRTALGISNPSALRETVVEVPTTTWEDIGGLE
GVKRELRETVQYPVEHPEKFRKFGMQPSKGVLFYGPPGCGKTLLAKAIASECQANFISIK
GPELLTMWFGESESNVRELFDKARQAAPCVLFFDELDSIAKSRGGSAGDAGGAGDRVINQ
ILTEMDGMGVKKNVFIIGATNRPDIIDPAILRPGRLDQLIYIPLPDLPSRVAILKANLNK
SPVAKDVDLEFLAQKTHGYSGADLTGICQRAVKLAIRQSIEADIEATRRRQESGGDVKME
DEDIEDPVPEITREHFEESMRFSRRSVTDNDIRKYEMFAQTLVQSRGLGGNFKFPTDNDV
ENNNQFNQDEGGDDLFRS
NT seq 2397 nt   +upstreamnt  +downstreamnt
atggctgatattgaagcgaaaaaagcagaaaatgtaccaattttagaacgtaaaagagca
ccaaatagatttttcgttgaagaagcaatcaatgatgacaattcagtagtgacattacat
ccagatgccatgactgcacttgaattatttagaggtgatacgctattgataaagggcaag
aagcgtagagacactgtgtgcattgtattgatggacaatagtgtcgatccatccaagatc
cgtatgaacaaggttattcgtaacaaccttcgtgttcgtcttggtgacatgatttccgtt
caccaatgctctgacgttaaatatggcaagcgtattcacgtgttgccaatcgacgacacg
atcgaaggtctctcgggcaacttgtttgacctctacctcaagccctatttcctcgaggcc
taccgtccagtccgcaagggtgacttgttcctcgtgcgtggtggtatgcgtgccgtcgag
ttcaaggtggtcgaatgtgaccccggagaatactgtatcgtcgctccagagactatgatt
cactgcgagggtgagccagtcaagcgtgaagacgaggaccgtcttgacgaggttggctac
gacgacattggtggtgtccgcaagcaattgggccaaatcagagagcttgtcgagttgcca
ctccgtcacccacagcttttcaaaaacattggtgtcaagccacccaagggtatcttgctc
tacggtccaccaggttgtggtaagaccatgattgccagagccgtggccaacgagactggt
gcctttttcttcctcatcaacggtccagagattatgagcaagttggccggtgagtctgag
agcaacctcagaaaggcctttgaagaggctgaaaagaattcccccgccatcatctttatc
gatgaaatcgattcgatcgcccccaagcgtgagaaaacacagggtgaagtcgagcgtcgt
atcgtctcgcaactcttgaccttgatggacggtctcaagagtcgtgcccacgtcattgtc
attggtgccaccaatcgtcccaactctatcgacccagccctccgtcgtttcggtcgtttc
gatcgtgaaattgatatcactatcccagacgccaccggtcgtctcgagattatgcgtatc
cacaccaaaaacatgaagctcgacgaggacgtcgacctcgaatccatctccaacgaaact
cacggttacgttggtgccgatcttgcagccctctgtacagagtctgccctccaatgtatt
cgtgaaaagatggacattatcgatctcgaagacgaaaccatctcggctgagattctcgaa
tcaatgtcggtcactcaggcccactttagaactgccctcggcatttctaatccatcagct
cttcgtgagactgttgtagaggtaccaactaccacctgggaggatatcggtggtttggaa
ggtgttaagcgtgagcttagagagactgttcaatacccagtcgagcacccagagaaattt
agaaagtttggtatgcaaccatcaaagggtgtgttgttctatggcccaccaggctgtggt
aaaacattactagccaaagctatcgcttcagagtgccaagctaatttcatttcaatcaag
ggtccagaattacttaccatgtggtttggagagtcagaatcaaatgttcgtgaacttttt
gacaaggctcgtcaagctgctccatgcgtcctctttttcgatgaattggattcaattgcc
aaatctcgtggtggcagtgcaggtgatgctggaggtgctggtgatcgtgtcattaatcaa
attttgactgaaatggatggtatgggtgtcaagaaaaacgtctttatcattggtgccacc
aatcgtccagatatcattgatccagccattctccgtccaggtcgtctcgatcaactcatc
tacattccactcccagatctcccatcccgtgttgccattctcaaggccaatctcaacaag
agtccagtcgccaaggacgtcgatctcgaattcctcgcccaaaagacccacggttactct
ggtgccgatctcaccggtatctgtcaacgtgccgtcaagttggccattcgtcaatccatc
gaagccgacattgaagccacccgtcgtcgtcaagaaagtggaggtgatgtcaagatggaa
gatgaagacattgaagatccagtcccagaaattacccgtgaacactttgaggaatccatg
agattctctcgtcgttcagtcactgacaatgatatccgtaaatacgaaatgtttgctcaa
accctcgtccaaagtcgtggtctcggtggcaacttcaagttcccaactgacaacgacgtc
gaaaacaataaccaattcaatcaagatgaaggtggtgatgatttgttcagatcttaa

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