Moniliophthora perniciosa: MPER_11125
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Entry
MPER_11125 CDS
T01089
Name
(GenBank) hypothetical protein
KO
K10352
myosin heavy chain 9/10/11/14
Organism
mpr
Moniliophthora perniciosa
Pathway
mpr04814
Motor proteins
mpr04820
Cytoskeleton in muscle cells
Brite
KEGG Orthology (KO) [BR:
mpr00001
]
09120 Genetic Information Processing
09125 Information processing in viruses
03273 Virion - Lassa virus and SFTS virus
MPER_11125
09140 Cellular Processes
09142 Cell motility
04814 Motor proteins
MPER_11125
04820 Cytoskeleton in muscle cells
MPER_11125
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04812 Cytoskeleton proteins [BR:
mpr04812
]
MPER_11125
04147 Exosome [BR:
mpr04147
]
MPER_11125
Cytoskeleton proteins [BR:
mpr04812
]
Eukaryotic cytoskeleton proteins
Actin filaments / Microfilaments
Actin-binding proteins
Myosins
MPER_11125
Exosome [BR:
mpr04147
]
Exosomal proteins
Exosomal proteins of bladder cancer cells
MPER_11125
BRITE hierarchy
SSDB
Ortholog
Paralog
GFIT
Motif
Pfam:
TPR_MLP1_2
Myosin_tail_1
Pox_A_type_inc
Motif
Other DBs
NCBI-ProteinID:
EEB90642
LinkDB
All DBs
AA seq
693 aa
AA seq
DB search
EWEIKQLESKQDKTIVEHVHVLEEAKRVTDRQLQDAQVELQKNAAYIRSLEKAKTRLTGE
AEDLVRETERERMELRNKEKAMRIQEERAARALADVERERSTREAAELQVRRLQTELQNA
QQHTDDLAQQLAAVQRSKVALEADLEKLADETPGSESLAKIQRQYQTRISQLEEQLDNAE
DSRLAAMRVRDLVQRQHAEIRQLIMNSGPKDSSFHSRLLQELQLVDDEIQRSVPSSSARR
DSTHSRIDSSPSKSSNKSFSAREHRDSAKSNDGQVAALRQQVEVLEIQMAASERVRHHLE
SSLREMTSELENSDGSKHFLQQYRARLSRENVRLAELLEDETKARQAAESAQIDGIQAMW
AKFQKTLQEERNSYSQLEEARKALRTGQADLEMLRKQLQDATQTKKQALGESAEMAAHLD
TARSEISSLKRQLQKRKQEDDISLSSGSLAHTVFYVEMKALVDTFKAKEQSYQERFEAAE
IARAESRESGSFWWEPTHSDHLTNALTFAGPSQTLKSLKVRPSQGTSRSRIVYDKVKNGS
RNWNIKLEDADKDSSDLVILNQRLAEELEDEKKQHQKDIEDGAFTSDQTRKKYQAELASL
SEELQSLRDTLTRLREENRKIRSDYDELQLRFDDEVYNSGGWRKEKERLETKIADVTKAY
EVSTAAQSEQQAQIVALLFTSSGAPWGARRCRS
NT seq
2083 nt
NT seq
+upstream
nt +downstream
nt
agaatgggagatcaagcaattggaatccaaacaggacaagacgattgtggaacatgtgca
tgtattggaggaagcgaagcgtgtcaccgatagacaactccaggacgcgcaggtcgaact
ccagaaaaatgctgcgtatattcgttctctcgagaaagccaagacgcgattgaccggaga
agcagaagatctggtccgggagactgaacgagaacgtatggaactacgaaataaagagaa
agcaatgaggatccaagaggaacgagcggctcgtgcactagctgacgtcgagcgggaacg
gtccaccagggaagctgccgaacttcaggtccgacggctgcaaactgagcttcaaaatgc
tcagcagcacacagatgatcttgctcagcaactggcggctgtgcagcgttccaaagttgc
tctagaggccgacctagaaaagcttgctgatgaaactcctggatcagaatcactggctaa
aatacagcgccagtaccaaacgaggataagccagcttgaagaacaactggacaatgccga
agactcgcgtctcgctgcaatgcgggtgcgagatctggttcaacgtcagcatgcagaaat
tcgccagttaattatgaacagcggccccaaagattcgtcgttccattcccggcttcttca
agaactccaacttgtagacgatgaaattcagcgctcggttccatcatcatccgccaggcg
ggattccacacactcgagaattgattccagtccttcgaaatcgtctaacaaatctttcag
tgcccgagaacatcgcgattcagcgaagagtaatgacggtcaagtcgccgctctccgcca
acaggttgaggtccttgaaattcaaatggccgcgtcagagcgagttcgccatcatcttga
gtcttctcttcgtgagatgacctccgagttggaaaacagcgatggctccaaacacttctt
acagcaatatcgggcacggctctccagggagaatgtgcgtttagctgaactgctggaaga
cgaaaccaaagcacgtcaagccgccgaatccgctcaaatcgatggtatacaagcaatgtg
ggctaagttccagaagacccttcaagaggaacgcaatagttattcacaattagaagaagc
acgaaaagcattacggacgggccaggcagacctcgagatgttacgcaaacagttacaaga
tgccacgcaaacgaagaaacaagctttgggggagtctgcagagatggccgctcacctcga
tactgcccgaagcgaaatttcatctctgaaacggcagctccaaaagcggaagcaggagga
cgacatatcgctatcttcgggctctttagctcacacagttttttacgtagaaatgaaggc
gctggtagacacttttaaagcgaaggagcaatcataccaagagcgcttcgaagctgcaga
aatcgcaagggcggaaagccgcgagagcggaagcttctggtgggaacccacgcattctga
tcacctgacgaatgcactaaccttcgccggtccctctcagaccttgaaaagtctcaaagt
gagaccctcgcaaggcacaagtcggtccaggatagtttacgacaaggtcaaaaacggatc
caggaactggaacataaaactagaagatgccgataaggattcttccgacttggtgatact
caatcaacgactcgcggaggaactggaggacgagaagaaacagcatcagaaagatatcga
agacggtgcattcaccagtgatcaaacgcgaaagaagtaccaagcggaactggcctcgtt
gagcgaagaacttcaatctctacgagatactctcactcgacttcgagaagaaaacaggaa
gattcgctcagactatgacgaactgcagctccgtttcgacgacgaggtttataacagcgg
cggctggcggaaagagaaggaacgactggagacgaagatcgctgatgttaccaaggctta
cgaggtatccacggcggcccagtccgaacaacaggcccaaatagtagctcttctattcac
aagttcgggagctccgtggggtgctcgacgatgtagaagctag
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