KEGG   Emiliania huxleyi: EMIHUDRAFT_110807
Entry
EMIHUDRAFT_110807 CDS       T02915                                 
Name
(RefSeq) hypothetical protein
  KO
K19870  sperm-associated antigen 1
Organism
ehx  Emiliania huxleyi
Brite
KEGG Orthology (KO) [BR:ehx00001]
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   03037 Cilium and associated proteins [BR:ehx03037]
    EMIHUDRAFT_110807
   04812 Cytoskeleton proteins [BR:ehx04812]
    EMIHUDRAFT_110807
Cilium and associated proteins [BR:ehx03037]
 Motile cilia and associated proteins
  Dynein assembly factors
   EMIHUDRAFT_110807
Cytoskeleton proteins [BR:ehx04812]
 Eukaryotic cytoskeleton proteins
  Microtubules
   Tubulin-binding proteins
    Dyneins
     Dynein-related proteins
      EMIHUDRAFT_110807
SSDB
Motif
Pfam: TPR_1 TPR_2 TPR_11 TPR_BSK1_C TPR_17 RPAP3_C TPR_14 TPR_9 TPR_16 TPR_6 DUF3856 TPR_19
Other DBs
NCBI-GeneID: 17280532
NCBI-ProteinID: XP_005787693
JGI: Emihu1_110807
UniProt: A0A0D3KHM9 R1FPC8
LinkDB
Position
Unknown
AA seq 908 aa
MAVIEDLSAFLGDIAAKDDLLRKAAPSSAASAALPPIRGQSASSQGAPAKAPAKAPTEPP
ADASAIWDGDEAVASAPAPASFVASATFTGVRPGFVFKKGPKGVGYYTDDARGDSDARGG
PAPPARRKHAYEYFAEWDKYDADAEAAKVDREASGTVVAGGGGAGDESDGLPAGLTAAML
REMPRVEVERRARLPRLQRMLRALAEKQKGNEQYKVGEYKKAIVNYTHSLRLDPGNAAVY
ANRALCNLKLRSNSLAVADADAALSLDDGFTKARLRRAIARRRLGQPAAAIKDLRRVLEV
EPHNKEAAEQLRLATIEGERERREEAARAEAAPPPEAGAEAGAEAGAEAGAEAGAEAGAE
AGAEAGAARGAQRGERRRGGFLIEELEEEEEEEEEAAAAVSGTAAPGLAAATAAAAAAAA
AASAQSEAQCDAAKKLFAAGAYDAAADSYSAALDTLSTTPGGGSRSDDKLRARCLNNRAA
CQLQLRRFSEAVADCDAVLAFEPRNALHRRAVAREALERYAGALEDCRALQALGAASAEV
SASCTRLNRLVEQQRAEDSQGRDAAAAPTPVAPSGSGEADAAAAAAPSLTTEDDQAAAKA
KAAAARERGGAAFRRGEFKAAAEAYYEAAKHEPLVHTHFSNLALALLKLEATRHPEPAHA
VTAAKRCTELAPSFAKGWFRLGAAQRAKGNLSAACDAFAAGLPHASPDEARDLRRQLAEA
RKALDCVPAGIEEAGKPAPWAAGGDKARGKVDLAKAVQTAKRVAELAPATQAGPDELLSL
GYSAFERSFLQLWARGKASSQRDTDLAAYLGQLPRDARGLAAFVGDAMSEETLSAFVLAA
ERVMLPRDAVAAAAFLGRLASVRRFELLWMFQGKAESTAATNVLRAAVATSGGDEPAREV
ATKYGVKL
NT seq 2727 nt   +upstreamnt  +downstreamnt
atggcggtcatcgaggacctcagtgccttcctcggcgatatcgcggccaaggacgacctc
ttgcgcaaagcagctccgtcgtctgctgcctccgccgctctcccgccaatccgtggccag
tccgcctcgtcgcagggcgcgccagccaaggcgcctgccaaggcgcctaccgagccgccg
gcagacgcatcagccatctgggacggcgacgaagcggtcgcctctgcgccagcgcccgct
agctttgtcgcatcggccaccttcacgggtgtgcggccgggattcgtcttcaagaagggc
ccaaaaggcgtcggctattacacggatgacgccagaggcgactcggatgcccgtggcggg
ccagcgccgcccgcccgccgcaagcacgcctacgagtactttgccgagtgggacaagtac
gacgcggacgcggaggcggcaaaggtcgatcgtgaggcgagcggcaccgttgtggcgggt
ggaggcggcgctggggacgagagcgacggcctgccggccggtctgaccgcggcgatgctg
cgcgagatgccacgtgtcgaggtggagaggcgcgcccgcctgcccaggcttcagcggatg
ctgcgagccctcgccgagaagcaaaaggggaacgagcagtacaaggttggagagtacaag
aaagcgatcgtcaactacacccactcgctccggctcgacccgggcaacgccgccgtctac
gcgaaccgtgcgctgtgcaacctcaagctgcgctcgaacagcctcgccgtcgccgacgcg
gacgccgcgctcagcctcgacgacggcttcaccaaggcgcggctgcggcgcgcgatcgcg
cgccgccgcttgggtcagccagcggctgcaatcaaggacctgcgtcgtgtgctcgaggtt
gagccccacaataaggaggcggccgagcagcttcggctcgccacgatcgagggcgagcgc
gagcggcgcgaagaggcggcgcgcgcggaggcggcgcccccaccggaggcgggcgcggag
gcgggcgcggaggcgggcgcggaggcgggcgcggaggcgggcgcggaggcgggcgcggag
gcgggcgcggaggcgggcgcggcgcgcggagcgcagcggggcgagcgcaggcgcggcggc
tttttgattgaggagctggaggaggaggaggaggaggaggaggaggccgccgctgccgtg
tcgggcaccgctgcccccggccttgccgccgccacggcagcggctgcagcggctgcagcg
gccgcctcggctcagtctgaggcgcagtgcgacgcggcgaagaagctctttgcggcgggg
gcgtacgacgcggctgccgacagctactctgcggccctcgacacgctctccaccaccccg
ggcggaggctctcgctcggacgacaagctgcgcgcgcgctgcctcaacaaccgcgctgcg
tgccagctgcagctgcgccgcttctccgaggcggtcgccgactgcgacgccgtgctcgcg
ttcgagcctcgcaacgcgcttcaccggcgggcagtcgctcgcgaggcgctcgagcgctac
gccggcgcgctggaggattgccgcgccctccaggctcttggagccgcaagcgctgaggtc
tccgcttcttgcacgaggctcaaccggctcgtggagcagcagcgtgcggaggattcgcag
ggccgggatgcggcggctgctccgacccccgttgcgccgtctggcagcggcgaggcggat
gccgccgccgcggccgcgccctcgctcacgaccgaggacgatcaagcggcggcgaaggcg
aaggcggcggccgcgcgcgagcggggtggcgctgcgtttcggcgtggcgagttcaaggct
gccgccgaggcgtactacgaggctgcaaagcacgagccgctggtgcacacccacttctcc
aacctcgcgctcgcgctcctcaagcttgaggcgactcgccaccctgaaccggctcacgct
gtcaccgccgccaagcggtgcacggagctggccccctccttcgccaagggctggttccgt
ctcggtgccgctcagcgcgcgaagggcaacctgtcggcggcgtgcgacgcatttgccgcc
ggcctgccacatgcctcgcccgacgaggcgcgcgaccttcgccgccaactggccgaggcg
cgaaaggccctcgactgcgtcccggcggggatcgaggaggcggggaagccggcgccgtgg
gcggccggcggcgacaaggcgcgcggcaaggtcgacttggccaaggcggtgcagactgcc
aagcgcgtcgcggagctggcgccggccacgcaggccgggccggacgagctgctgtctctc
ggctactcggcctttgagcgctccttcctgcagctgtgggctcgcggcaaggcctcgtcc
cagcgcgacaccgacctcgccgcgtacctcggccagctcccgcgcgatgcgcgcgggctc
gccgcctttgtcggcgacgccatgtccgaggagaccctctctgcctttgtacttgccgcc
gagcgcgtcatgctgccacgcgacgccgttgccgccgccgcattcctcggccggctggcg
tctgtgcgtcgttttgagttgctctggatgttccagggaaaggccgagtcgacagcggcg
accaacgtgctgcgcgctgcagttgccaccagcggtggagacgagccagcgcgcgaggtt
gcgaccaagtacggcgtcaagctctga

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