Trichoderma atroviride: 25783822
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Entry
25783822 CDS
T10217
Symbol
TrAtP1_002566
Name
(RefSeq) uncharacterized protein
KO
K01539
sodium/potassium-transporting ATPase subunit alpha [EC:
7.2.2.13
]
Organism
tatv Trichoderma atroviride
Pathway
tatv04820
Cytoskeleton in muscle cells
Brite
KEGG Orthology (KO) [BR:
tatv00001
]
09140 Cellular Processes
09142 Cell motility
04820 Cytoskeleton in muscle cells
25783822 (TrAtP1_002566)
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:
tatv04147
]
25783822 (TrAtP1_002566)
Enzymes [BR:
tatv01000
]
7. Translocases
7.2 Catalysing the translocation of inorganic cations
7.2.2 Linked to the hydrolysis of a nucleoside triphosphate
7.2.2.13 Na+/K+-exchanging ATPase
25783822 (TrAtP1_002566)
Exosome [BR:
tatv04147
]
Exosomal proteins
Exosomal proteins of haemopoietic cells (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
25783822 (TrAtP1_002566)
Exosomal proteins of other body fluids (saliva and urine)
25783822 (TrAtP1_002566)
Exosomal proteins of colorectal cancer cells
25783822 (TrAtP1_002566)
Exosomal proteins of bladder cancer cells
25783822 (TrAtP1_002566)
BRITE hierarchy
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
E1-E2_ATPase
Cation_ATPase_C
Hydrolase
Cation_ATPase
Cation_ATPase_N
HAD
Hydrolase_3
DUF4400
Motif
Other DBs
NCBI-GeneID:
25783822
NCBI-ProteinID:
XP_013940543
UniProt:
G9P0W3
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All DBs
Position
1:join(7070636..7070984,7071047..7074090)
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AA seq
1130 aa
AA seq
DB search
MADPYDRDPEKDGSAVVVQAKGNTGRLGATKRQVRYFDDSDEIQQIGPSTNNNAKLKRKG
SAYSIHSLSSIRSGRREVDPATALPVLYRTLSIDMERVQREKDSIIRRRYSDATMADLED
LEWHTLSIHDVSQKLHTSIEAGLSIQGVKDKIEVFGANTPTPPKSRLLQKIFFYLFGGFG
SILFGGSILVFVSWKPLGEPNPAVANLALGIVLAIVWLAQAAFNAWQDFSSSRVMKSITG
MLPEDCSVLRDGSRRLVPASEVVPGDILFFSAGNKLPADIRFVDVSTDAKFDRSILTGES
NPLPAVAESLEKNYLETKCIGMQGTHCTSGSGLGIVVATGDSTVFGRIAKLTNKPKTGQT
ALQKEIFRFVLIIATLMILMVVVIVALWAGFIRHKYPDYISVSTLIVDCVSVAIAFIPEG
LPIALTASLTITAGIMKKNNILCKSLKTVETLGTVSVLLSDKTGTLTKNQMTVTDCLVGS
KVLTVAEAVQEMSDKSDSPKRATLKQLCVTSAVCNAGEFDPTTIHLPISERKILGDATDQ
AILRLSELLGSVKESRELWIKRFDLAFNSKNKFALRVSSARDQTSLETSLSASETDDFDA
QRDYVLMIKGAPDVLLPRCSKYVGEDGGVHDFDETIRLSIEEAKNSWSSEGKRVLALARK
VLPSSIIQTNPEDNLFEREALELARTGLTLIGLVAIEDAPREEVPGVIETLHRAGIRTAM
VTGDFQLTAQAIARACGIISVPDAEVHSIQNLPRTPPNFEPKKNNKSNHLPTEIKAIVLT
GQDLMTLLPHQWHTLVTEYSEIVFARTTPEHKLQIVREFQSQSYVVAMIGDGVNDAPSLK
QADIGISPASGSDIAVEAADMVLLNTFSAIPEAVLYGRVVFDNLKKTIAYLLPAGSWSEF
WPVFTNVAFGLPQILSSFLMIIICCFTDCATAISLAYEKPEANVMLQPPRDIINDRLVDW
KLLFQAYGFVGTFETVLSFTMSYWYLQRKGLTFGSLWFSFGSIPTPEGQTVDEVTAHLTV
ASSVYFITLVVMQWFNAMALRTRHLSIFTHPPLFNPKTQNWLLFPAILFALAIGLIFTMI
PGIDYLGCAPVPVEHWFIPMALGLGLLCIDELGKMMKRRYPGGLVAKVAW
NT seq
3393 nt
NT seq
+upstream
nt +downstream
nt
atggcagatccttatgaccgagatcctgaaaaggacggctctgcagtggtcgtccaagct
aagggtaataccggcagacttggtgctacgaagcgtcaagtccgttatttcgacgacagt
gacgagattcaacagatcggcccttccacaaacaataatgccaaactcaagagaaagggg
tcggcctactctatccactccctatcaagcataaggagtggccgacgagaggttgatcct
gccactgcgctgcctgttctataccgtactttgagtatagacatggaacgagtgcagaga
gaaaaggactccatcattaggagaagatacagcgatgcgaccatggcggatctcgaagat
ctcgagtggcacactctatctatccacgacgtttctcagaaactacacacatcgatagag
gctggtctctcaatacaaggcgtcaaagacaaaattgaagtatttggagccaacactcca
accccaccaaagtctcggctactgcagaagatattcttctatctctttggaggctttggt
tccatactttttggtggaagcattctcgtctttgtttcatggaagccactcggcgaacca
aatcccgcagtggccaatttggctctgggaatcgttttggccattgtgtggctagcacaa
gccgcgttcaatgcttggcaggatttctcctcttccagagtcatgaaaagcatcacaggc
atgctaccagaggactgcagtgtcttgcgtgacggcagcaggagattggttccggcatct
gaagttgttcccggagatatcctcttcttcagcgccggcaacaagctacctgctgacatt
cgattcgttgacgtgtcaactgatgcaaaattcgatagaagcatcttgactggcgaatca
aatcctctgccagccgtcgctgagtctctggagaagaactatctcgaaacaaaatgcatt
gggatgcaagggactcactgtacctctggaagtggtctgggtatagttgtcgcgactgga
gacagcacagtctttggccgtatcgcaaagctgaccaacaaacccaagactggtcaaacg
gcgctgcaaaaagagattttcagatttgtcctgataatcgcaacgttgatgatattgatg
gttgttgtgattgttgctctgtgggcgggctttattcgtcacaaatatcccgactacatc
tcagtctcaacattgattgtggactgtgtaagcgtggctattgcctttatcccagaaggc
ctaccgatcgccttgactgcgtcgcttacaattactgcgggtattatgaagaaaaacaat
atcctctgcaagtctctgaagacagtagagactctgggaacagtttcggtgctgttatca
gataaaacagggactctgaccaagaatcaaatgaccgtgacagattgcctcgtcggatcc
aaggtcttgactgttgcagaggcggtacaagaaatgtcagacaaatccgattcacccaaa
agggccaccctcaagcaactctgcgttacttctgcagtgtgcaacgctggagagtttgac
cccacgactattcatctcccgatctcagagcgaaagatacttggtgatgcgaccgaccaa
gctattcttcgcctgtcagaattattgggttcagtgaaagagtctcgcgaactatggatc
aaacgatttgacctcgcattcaattcaaaaaataaattcgctctgcgtgttagctctgct
cgcgaccagacttcattggaaacttcgctctctgcttccgaaaccgatgactttgacgct
caaagggattacgtcttaatgatcaagggtgcaccagatgttttactccctcgatgctca
aaatatgttggtgaagatggcggtgtgcacgattttgatgagacgattcgcttgtccatt
gaagaggccaagaactcatggtcaagtgaaggtaaacgtgttttggctcttgcacgcaag
gtccttcctagcagcataattcagacaaatccagaagacaatttattcgaaagagaagct
ctggaattggcacggactggtcttacgcttattgggcttgttgcgattgaagacgctcca
agagaggaggttcccggcgtgattgagactctacatcgtgctggtatccgtactgccatg
gttacgggggattttcagctcacagctcaagccattgctcgagcctgcggtattattagt
gtcccagacgctgaagtccatagcatccagaatctccctcgcacgccgcccaactttgag
cccaagaaaaataacaaatccaaccaccttccaacagaaatcaaggcaattgtcttgaca
ggccaagatcttatgactctgctacctcatcaatggcacactttggtgacagaatactca
gagattgtatttgctcggacaacaccagagcataagcttcaaattgtgcgggaattccaa
tcgcagtcttacgtcgttgccatgatcggagatggagtgaatgatgcgccaagtttgaag
caagcagatattggcatttcacctgcatctggctccgacattgctgttgaagccgcagac
atggtcttactgaatacattctccgctatcccagaggctgttctctacggtcgcgtcgtg
tttgacaatctgaagaagacaattgcgtacttgctaccggctggctcttggtcagagttc
tggccggtgtttactaatgtagctttcggtctgcctcagatactgtcttcttttctcatg
attattatatgctgtttcacagactgtgcaaccgcaatttccttggcttacgagaaacca
gaggccaatgtcatgcttcagccacctcgagacataataaatgaccgtcttgtcgactgg
aagctacttttccaagcctatggttttgttggtacatttgagaccgtcctctctttcaca
atgtcgtattggtatctgcagcgaaagggtttaactttcgggtcgttatggttctccttt
ggatcaattccaacgcccgaaggacagactgtggacgaagttactgctcatttaacagtg
gcatcttcagtctattttataacactggttgtaatgcagtggtttaatgcgatggcactg
cgtactcgacacctctcaatattcacgcatccaccgctattcaaccccaagactcaaaac
tggctcctttttccggcaatcctatttgctcttgctatcggtttaatattcacgatgatc
ccgggtattgattaccttggctgcgctccagtccctgtggagcattggtttatccccatg
gcattaggccttggcctattgtgcattgatgaactggggaagatgatgaagagaagatat
cctggtggccttgtcgcaaaggttgcttggtaa
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