Micromonas commoda: MICPUN_61188
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Entry
MICPUN_61188 CDS
T02695
Name
(RefSeq) predicted protein
KO
K16462
centrosomal protein CEP164
Organism
mis
Micromonas commoda
Brite
KEGG Orthology (KO) [BR:
mis00001
]
09180 Brite Hierarchies
09182 Protein families: genetic information processing
03036 Chromosome and associated proteins [BR:
mis03036
]
MICPUN_61188
09183 Protein families: signaling and cellular processes
03037 Cilium and associated proteins [BR:
mis03037
]
MICPUN_61188
Chromosome and associated proteins [BR:
mis03036
]
Eukaryotic type
Centrosome formation proteins
Centriole proteins
MICPUN_61188
Cilium and associated proteins [BR:
mis03037
]
Primary cilia and associated proteins
Other primary cilia associated proteins
MICPUN_61188
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
WW
Motif
Other DBs
NCBI-GeneID:
8246080
NCBI-ProteinID:
XP_002504522
JGI:
MicpuN3_61188
UniProt:
C1EBU0
LinkDB
All DBs
Position
9:complement(join(326570..329361,329536..329605))
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AA seq
953 aa
AA seq
DB search
MATPADSVILEEEIDENYEPTHDEMIDYAKWLGMDLETEKDLMWIAREGLKAPLPEHWKP
CKAPDTGDIYYFNFQTGESVWDHPCDEYYKNLYATEKANLERRRAAERERPASAAAGARP
TTAGVVRPGTAAGIRPVTAGPAGANPLDRQRLGSLAPLGGSLAPLSRPITAARPLGGEPA
SAMRPDESDSGSEGSRGGFGGIDSPSAAGGSESTNVWKLEEDADDDAAREAYKVKLTTAR
EAWENEMDKEDAAARRRRELERDKEQLRLDQEEAKIRREMEEKFERLAIELKKAAKRREE
EAEVEATALEKEATERKAKAEEMMREATEKIADAKAKSAAAAALVADAEETRHAKERAVR
FLDAENERITEEEEGKIRAEMEPQIAALRAKLDAEREELKKQIAAAAEETSKAKSRDDGS
RVAALMSATEHLTDPKIEEMYATAAEASSVRRIEMAEARAQAAEDAARSRISLAEEAVVK
ADREAMAAIEASRAQTREAEDGALAMEPYGEDSSGRRRRGGGVGRSSGDASSFASFGSAA
SDGDSESDGGFESLRGDDEATIERYDPDENPAIASPGGKMAVSSLRAAVAAGDDDALLAR
AEEFLKVQKRLAGAKRQALQRASSEWRAAEKALMDPRMDEDLRERRGAMVRAIRAALDVS
MSAFTAEMRVTRALRVATRSAAYPTANWAAVFSSTVMADVGWDPSEFDPKAVFARLRPAP
GAARAAARERLTADASFKDLQSFQRSSSYVADVDDGSPIGSPGESPTTSPRASGRNSSAA
AAFDPRGRVGASREPSAADLPRRAYSTRIGEDPLDRVFGRLKKTVATGAYSSKPHPVFAD
TSGMSETFLKRTEEWAKAAEKERRLIEDHVEWMSKFQASLEVGAAKLLRPRKMFKPAPPM
PAFAPTIPPPGDEPRPPLDVRRAEQRAVEAINALDAQSEAKPVDKPKVEGASD
NT seq
2862 nt
NT seq
+upstream
nt +downstream
nt
atggcgacccccgccgacagcgtgatcctcgaggaggaaatcgatgaaaactacgagccc
actcatgacgagatgatcgattacgccaaatggctcggcatggacctcgaaacggagaaa
gacttgatgtggatcgcgcgcgaggggctcaaggcgccgcttccggagcactggaaaccg
tgcaaggctccagacaccggcgacatctactacttcaacttccaaaccggcgagagcgtc
tgggaccacccgtgcgacgagtattacaagaacctgtacgcgacggagaaggcgaacctg
gagaggcgccgcgccgccgaacgtgagcgccccgccagcgccgcggcgggcgcacgaccg
accaccgcgggcgtcgttcggcccggcaccgccgcgggcatccgaccagtcaccgccggg
ccggctggagctaacccgctggacaggcagaggctgggctcgctcgcgcccctcggcgga
tcgctcgcgccgttgagccgaccgatcaccgcggcgaggccgctcgggggcgagccggcg
tcggcgatgcgccccgacgagtccgacagcggaagcgaggggtcgcgcggagggttcggc
gggatcgactcgccgtccgccgccggcggctccgagtcgacgaacgtgtggaagttggaa
gaggacgccgacgacgacgccgcgagggaggcgtacaaggtcaagctcaccaccgcgagg
gaggcgtgggagaacgagatggacaaggaggacgccgccgctcgcaggcgaagggaattg
gaacgagacaaggaacaactccggctggaccaggaggaggcgaagatccggcgggagatg
gaggagaaattcgagcgcctggcgatcgaactgaagaaggcggcgaagcgacgcgaagag
gaggcggaggtggaggccaccgcgctcgagaaggaggcgaccgagcgtaaggccaaggct
gaggagatgatgcgcgaagcgacggagaaaatcgcagacgcaaaggcgaaatccgccgcc
gccgccgcgctcgtcgcggatgcggaggaaacgaggcacgcgaaggagcgcgccgttcgg
ttcctcgacgccgagaatgagcgtatcacggaagaggaggaggggaaaattcgcgcggag
atggagccgcagattgcggcgttgcgagcgaagctcgacgccgagcgagaggagctcaaa
aaacaaatcgccgccgccgccgaggaaacgtccaaggccaagtcgcgcgacgacgggagc
cgcgtcgccgcgctcatgtcagcgacggagcacctgacggacccgaagatcgaggagatg
tacgccaccgccgcggaggcctcgagcgtcaggcgcatcgagatggcggaggcgagggcc
caggcggcggaggacgccgctcggtcgcgcatctcgctcgcggaagaggcggtggtcaaa
gcggaccgggaggcgatggcggcaatcgaggcgtcaagggcgcagacgcgggaggcggag
gatggagccctcgcgatggagccgtacggggaggactcaagtgggaggagacggcgcgga
ggcggcgtcgggcgatcatccggggacgcatcgagtttcgcgagtttcgggtcggctgct
tccgacggggactcggagtccgacggtggtttcgagtcgcttcgaggcgacgacgaggcg
actatcgagaggtacgacccggacgagaacccggcgatcgcgtcccccgggggcaagatg
gcggtttcctccctgcgcgcggctgtggctgcgggcgacgacgacgcgctcctcgctcga
gccgaggagtttcttaaggtccagaagcgcctcgcgggggctaaaagacaggcgcttcaa
cgcgcaagctcggagtggcgcgccgccgagaaggcgctcatggacccacggatggacgag
gaccttcgcgagcggcgcggtgcgatggtacgcgccatacgcgccgccctcgacgtgtcg
atgtccgcgttcaccgcggagatgcgggtgacgcgagcgctacgagtcgcgacgaggtcg
gcggcgtatcccacggcgaattgggcggcggtgttctcgtcgacggtcatggcggacgtc
gggtgggatccgagcgagttcgacccgaaggcggtgttcgcgaggcttcgccccgcgccg
ggcgcggcgcgcgccgccgcgagggagaggctcacggcggatgcctcgttcaaagatctt
caaagttttcaaagatcttcatcgtacgtcgccgacgtcgacgacgggtctccgattgga
tcgcccggggaatcgccgacgacgtcgccgagggcttccggtcggaactcgtccgccgcg
gccgcgttcgacccgcgcggtcgcgtcggcgcctcgagggaaccgtccgcggcggacctc
ccccgtcgggcctactctacccgtatcggtgaggacccgctcgaccgcgtgttcgggagg
ttgaagaaaaccgtcgccaccggcgcgtattcgtccaagccgcacccggtgttcgccgac
acgagcggcatgtccgagacgttccttaagcgcacggaggagtgggcgaaagccgcggag
aaggagcgacggctgattgaagatcacgtggaatggatgtcaaagtttcaggcgagcctc
gaggttggcgcggctaagttgcttcggccgaggaagatgttcaagcccgccccccccatg
cccgcgttcgccccgacgattcccccgcccggagacgagccgaggccgcctctggacgtt
cgtcgggcggagcagcgagcggtggaagcgataaacgcgctcgacgcccaatccgaggcg
aagccggtcgacaagccaaaggtggagggcgcgagcgactga
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