Malassezia restricta: MRET_1117
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Entry
MRET_1117 CDS
T06113
Name
(RefSeq) transitional endoplasmic reticulum ATPase
KO
K13525
transitional endoplasmic reticulum ATPase
Organism
mrt
Malassezia restricta
Pathway
mrt04141
Protein processing in endoplasmic reticulum
Brite
KEGG Orthology (KO) [BR:
mrt00001
]
09120 Genetic Information Processing
09123 Folding, sorting and degradation
04141 Protein processing in endoplasmic reticulum
MRET_1117
09180 Brite Hierarchies
09182 Protein families: genetic information processing
03019 Messenger RNA biogenesis [BR:
mrt03019
]
MRET_1117
03009 Ribosome biogenesis [BR:
mrt03009
]
MRET_1117
04131 Membrane trafficking [BR:
mrt04131
]
MRET_1117
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:
mrt04147
]
MRET_1117
Messenger RNA biogenesis [BR:
mrt03019
]
Eukaryotic type
mRNA surveillance and transport factors
Transport factors
Ran-mediated transport factors
MRET_1117
Ribosome biogenesis [BR:
mrt03009
]
Eukaryotic type
Pre-60S particles
Ribosome quality control proteins
MRET_1117
Membrane trafficking [BR:
mrt04131
]
SNARE
SNARE associated proteins
Others
MRET_1117
Autophagy
Aggrephagy
Other aggrephagy associated proteins
MRET_1117
Exosome [BR:
mrt04147
]
Exosomal proteins
Exosomal proteins of haemopoietic cells (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
MRET_1117
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
AAA
AAA_lid_3
CDC48_N
RuvB_N
CDC48_2
AAA_5
AAA_33
AAA_16
AAA_2
TIP49
AAA_22
AAA_14
Mg_chelatase
Parvo_NS1
RNA_helicase
AAA_28
nSTAND3
ATPase
AAA_7
IstB_IS21
NPHP3_N
AAA_17
AAA_18
Vps4_C
ABC_tran
AAA_25
ResIII
DUF815
AAA_24
PhoH
TsaE
SLFN-g3_helicase
NB-ARC
KAP_NTPase
Motif
Other DBs
NCBI-GeneID:
38737883
NCBI-ProteinID:
XP_027483310
LinkDB
All DBs
Position
II:join(447768..447843,447887..450303)
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AA seq
830 aa
AA seq
DB search
MVEGNKLVPQDDTKDTSLAILRNKKSPNRLFVEDATTDDNSVACLSPAKMEELGLFRGDT
ILIRGKKRRDTVLIVLTDEETEDSKIRLNRVARNNLRVKLGDLVNVHACHDIKYGKRIHV
LPFDDSVEGLQGNLFDVYLKPYFLEAYRPVRKGDTFIVRGSMRAVEFKVIETDPAEFCIV
AQDTVIHTEGEPVRREDEEANLADVGYDDIGGCRKQMAQIREMVELPLRHPQLFKSIGIK
PPRGVLMFGPPGTGKTLMARAVANETGAFFFLINGPEIMSKMAGESESNLRKAFEEAEKN
SPAIIFIDEIDSIAPKREKTNGEVERRVVSQLLTLMDGLKARSNIVVMAATNRPNSIDPA
LRRFGRFDREVDIGIPDPTGRLEVLRIHTKNMKLAEDVDLEQIASETHGYVGSDIASLCS
EAAMQQIREKMDLIDLDEDSIDAEVLDSLGVTMENFRFALGVSNPSALRETVVEVPTTTW
ADIGGLDKVKQELQETVSYPVEHPEKFLKYGMSPSKGVLFYGPPGTGKTLLAKAIAHECQ
ANFISIKGPELLTMWFGESEANVRDVFDKARAAAPCVMFFDELDSIAKSRGGSSGDAGGA
GDRVINQILTEMDGMNAKKNVFVIGATNRPEQIDPAILRPGRLDQLIYIPLPNEASRLDI
LKATLKNSPVSPKVDLGFLAKHTHGFSGADLAEVCQRAAKIAIRESIEADRRREQERKER
GDDVKMEEEGAAQELEDDPVPEITLAHFEDSMRFARRSVSDADIRRYEMFASTMQQSRGT
MGASFRFPEGGIDDSSPSGASTQQVATAAPGAAPAPAAFGNDDADDDLYA
NT seq
2493 nt
NT seq
+upstream
nt +downstream
nt
atggtggaaggcaacaagttggttcctcaagatgacacgaaggatacctctctggccatc
ctgagaaataagaagtctccaaatcgtctctttgtagaagacgccacaacagacgacaac
tctgtggcgtgcttgtcgccagccaagatggaggaacttggcctattccgtggcgacact
attctaattcgtggaaagaaacgtcgtgacacagttctcatcgtcctgacggacgaggag
acagaggactcgaaaatccgtctgaaccgtgtggcgcgcaacaatctccgcgttaagctt
ggtgatctagtcaacgttcatgcatgccatgatatcaaatacggtaagcgcattcatgtc
cttcccttcgatgacagcgttgagggcctgcaaggtaacctattcgacgtgtacttgaag
ccttacttcctcgaagcataccgaccagtgcgcaaaggtgatacttttattgtgcgtgga
agcatgcgtgcagtggagtttaaggtgattgaaacagaccccgcggagttctgtatcgtg
gcacaggacactgtgattcacactgagggtgaaccagtgcgtcgtgaagatgaagaggcc
aaccttgctgatgtcggctatgacgatattggtggctgccgtaaacaaatggcacaaatt
cgcgagatggttgagctccctcttcgtcacccccagcttttcaaaagtattggtattaag
ccgccgcgtggtgttttgatgtttggtcctcccggtacaggcaagacgcttatggcgcgc
gcagttgcgaacgagacgggtgcatttttcttcctcatcaacggtcctgaaatcatgagc
aagatggctggtgaaagtgagtcgaacttgcgcaaggctttcgaggaagccgagaagaat
tcgcctgcgatcatcttcattgatgagatcgactcaattgctcctaagcgcgagaaaact
aatggtgaggttgaacgccgcgttgtctcgcagcttctaacgcttatggatggtctgaag
gcacgttcgaacatcgtggtcatggccgcgacgaatcgaccgaactccatcgaccctgca
cttcgccgctttggtcgctttgaccgtgaggtggacattggtattcctgaccccacaggt
cgtcttgaagttctccgtatccacaccaagaacatgaagctcgccgaggacgtggatctc
gagcaaattgcatctgagacccacggttatgttggttcggacattgcatcactttgctct
gaggccgccatgcagcagattcgcgagaagatggatttaattgacctcgatgaggactca
atcgacgccgaagtgctcgactctcttggtgtaacaatggaaaacttccgctttgctcta
ggtgtatcgaatccatctgctttgcgcgagacggtggtggaagtgccgacaactacatgg
gcagacattggtggtctcgacaaggtcaagcaagaactgcaagagaccgtgtcgtaccct
gtcgagcaccccgaaaaattcctcaagtacggcatgtctccttcgaagggtgtgttgttc
tatggtcctcctggtactggtaaaacgttgctggccaaggctattgcccacgaatgtcag
gccaacttcatctctatcaagggcccagaactgttgaccatgtggtttggtgagtcggaa
gccaatgtgcgagatgttttcgataaggctcgtgcagctgcgccctgtgttatgttcttc
gatgagcttgattccattgctaagtcgcgcggcggctcatctggtgacgctggcggtgct
ggtgaccgcgttatcaaccagattttaacagaaatggacggtatgaacgcaaaaaagaat
gtgtttgtcattggcgctacgaatcgtcccgaacagatcgatcctgccatcctgcgtcct
ggtcgtcttgaccagcttatttatattccgcttcccaacgaggcatcacgtttggacatt
ctcaaggctacactcaagaactcgcctgtgtcgcccaaggttgaccttggtttcttggcc
aagcacacgcatggcttctctggtgccgatttggcggaggtgtgccagcgtgctgccaag
attgctattcgcgagtctattgaggctgaccgtcgtcgcgaacaagagcgcaaggagcgc
ggcgatgatgtcaagatggaggaagaaggcgcagcgcaggagttagaggatgaccctgtt
cctgaaatcaccttggctcactttgaggattcgatgcgcttcgcacgtcgttcggtctct
gacgctgacattcgccgttacgagatgtttgcttcaactatgcagcagagccggggtacg
atgggtgcctctttccggttccctgagggtggtatcgatgactcttctccgtctggtgca
tcgacccagcaggtagctactgctgcccctggggctgcgcctgcaccggctgcattcggt
aatgatgatgccgatgatgacctttatgcgtaa
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