KEGG   Propithecus coquereli (Coquerel's sifaka): 105819705
Entry
105819705         CDS       T08746                                 
Symbol
DNAI1
Name
(RefSeq) dynein intermediate chain 1, axonemal isoform X1
  KO
K10409  dynein axonemal intermediate chain 1
Organism
pcoq  Propithecus coquereli (Coquerel's sifaka)
Pathway
pcoq04814  Motor proteins
pcoq05014  Amyotrophic lateral sclerosis
pcoq05016  Huntington disease
pcoq05022  Pathways of neurodegeneration - multiple diseases
Brite
KEGG Orthology (KO) [BR:pcoq00001]
 09140 Cellular Processes
  09142 Cell motility
   04814 Motor proteins
    105819705 (DNAI1)
 09160 Human Diseases
  09164 Neurodegenerative disease
   05014 Amyotrophic lateral sclerosis
    105819705 (DNAI1)
   05016 Huntington disease
    105819705 (DNAI1)
   05022 Pathways of neurodegeneration - multiple diseases
    105819705 (DNAI1)
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   03037 Cilium and associated proteins [BR:pcoq03037]
    105819705 (DNAI1)
   04812 Cytoskeleton proteins [BR:pcoq04812]
    105819705 (DNAI1)
Cilium and associated proteins [BR:pcoq03037]
 Motile cilia and associated proteins
  Dynein arm
   105819705 (DNAI1)
Cytoskeleton proteins [BR:pcoq04812]
 Eukaryotic cytoskeleton proteins
  Microtubules
   Tubulin-binding proteins
    Dyneins
     105819705 (DNAI1)
SSDB
Motif
Pfam: Beta-prop_THOC3 WD40_Prp19 WD40_CDC20-Fz WD40 Beta-prop_EML_2 Beta-prop_EIPR1 Beta-prop_HPS5 Beta-prop_WDR3_1st Beta-prop_WDR5 Beta-prop_RIG_2nd Beta-prop_WDR3_2nd EIF3I Beta-prop_WDR19_1st WDR55 Beta-prop_WDR36-Utp21_1st Beta-prop_WDR75_1st Beta-prop_TEP1_2nd WD40_MABP1-WDR62_2nd Beta-prop_Aladin WD40_RFWD3 Beta-prop_TEP1_C DUF4191 Beta-prop_LRRK2 Beta-prop_BBS7
Other DBs
NCBI-GeneID: 105819705
NCBI-ProteinID: XP_012511474
Ensembl: ENSPCOG00000022195
UniProt: A0A2K6G2K2
LinkDB
Position
Unknown
AA seq 700 aa
MLPASAKVPHKPSRRQSISMGRGTRKRDEDSGTEVGEGTDEWTQSKATVRPPDQLELTDA
ELKEEFTRILTANNPHAPQNIVTYSFKEGTYKLIGFVNQLAVHFSQVGNLIPKDSDEGRR
QHYRDELVAGSQESAKVVISETENLEEDEEPKELEAEAGSQTDVPAAGAAEKVTEELITP
VQPKERMLTNKFNFSERASQTFNHRLRDRECQMEPPPRTNFSATANQWEIYDAYVEELEK
QEKTKEKEKTKTPVAKKTGKMAMRKLMSVESQSDDITKVSQAAKIVERMVNQNTYDDIAQ
DFKYYEDAADEYRDQEGTLLPLWKFQNDKAKRLAVTALCWNPKYRDLFAVGHGSYDFMKQ
SRGMLLLYSMKNPSFPEYIFSSESGIMCLDMHVDHPYLVVVGHYDGNVAIYNLKKPHSQP
SFRSSAKSGKHTEPVWQVKWQKDDMDQNLNFFSVSSDGRIVSWTIVKSELVHTDVIKLKV
EGSTMEVSEGLQLHTMGCGTAFDFHKEIDYMFLVGTEEGKIYKCSKSYSSQFLDTYDAHN
MAVDAVSWNPFHTKVFMSCSSDWTVKIWDHTIKTPMFIYDLNSAVGDVAWAPYSSTVFAA
VTTDGKAHVFDLAINKYEAICNQPVVAKKKNKITHVQFNPIHPIIIVGDDRGHVTCLKLS
PNLRKMPKEKKGQEVQKGPAVEIAKLDKLLNLVREVKTKT
NT seq 2103 nt   +upstreamnt  +downstreamnt
atgcttcctgcttctgcgaaggttcctcataaaccgtctcgtaggcagagcatcagcatg
ggcagaggaaccaggaagagagatgaagattcagggactgaagtgggagaagggacagat
gaatggacccagtccaaagccacagttagaccccctgaccagctggagttgactgatgcg
gagttaaaggaggagttcacccggattctgacagccaacaacccacatgcaccccagaac
attgtcacgtacagcttcaaagaaggcacatataagcttattggctttgtgaaccaactg
gcagttcacttcagccaggtcgggaacctgatccccaaagactcggatgaaggacggcga
cagcattaccgcgatgagttagtggcaggttctcaggagtctgccaaggtggtgatttca
gaaacagaaaatcttgaagaagatgaagagcccaaggagttagaagctgaagctggaagt
caaacagatgtgcctgcagctggggcagctgaaaaagtgactgaagaattgataactcct
gtgcagcccaaggagcgaatgctcactaacaagttcaacttcagtgagagggcctcacag
accttcaaccaccgtctccgggaccgtgaatgccagatggagcctcctcccaggacaaac
ttttcagccacagccaatcagtgggagatctatgatgcctatgtagaggagcttgagaag
caggaaaagacgaaagagaaggagaagacaaagacccccgtggctaaaaaaacagggaag
atggccatgaggaagctgatgtctgtggagtcccagagcgatgatatcaccaaagtgtct
caagctgctaaaatcgtggagcggatggtcaaccagaatacatatgatgacattgctcaa
gattttaagtattacgaggatgctgctgacgaataccgggaccaggagggtaccctgctg
ccgctctggaagttccaaaacgacaaagccaagcgcctggcggtcaccgccctctgctgg
aatccgaagtacagggatctttttgcagtgggacatggctcctatgacttcatgaagcag
agccggggcatgctgctgctctacagcatgaagaaccccagcttccccgaatacatcttc
agcagtgagagcggcatcatgtgtcttgacatgcatgtggaccatccctatctggtggtg
gtgggccactacgatggcaatgtggccatttacaaccttaagaagcctcactcccagccc
tccttccgcagctcagccaagtctgggaagcacacggaacctgtatggcaggtcaagtgg
cagaaggatgacatggaccaaaaccttaacttcttctctgtgtcatctgacggcaggatt
gtgtcttggacgatcgtcaagagcgagctggttcacacagatgtcatcaagctgaaggtg
gaaggcagcaccatggaagtgtctgaggggttgcagctacacaccatgggctgtggaacc
gcctttgacttccacaaagagatcgactacatgttcctggtcggcacagaggagggaaaa
atctacaagtgctctaaatcctattccagccaatttctcgacacctatgatgcccacaac
atggcagtggatgctgtgtcctggaacccattccacaccaaggtcttcatgtcctgcagc
tctgactggacagtgaagatctgggaccacaccatcaagacccccatgttcatctacgac
ctgaactcagccgtgggcgatgtggcctgggcaccatactcttctactgtgtttgcagca
gttaccacagatgggaaggcccatgtgtttgacttggccatcaacaagtacgaggccatc
tgcaaccagcctgtggtggccaaaaagaagaataagatcacccacgtgcagttcaatccc
atccaccccatcatcattgtgggcgatgaccgtgggcacgtcacctgcctcaaactctca
cccaacttgcgcaagatgccaaaggaaaagaaggggcaggaagtacagaagggtccagct
gtggagattgcaaaactggacaaactgctgaacctggtgagggaagtcaaaaccaagacc
tga

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