KEGG   Muntiacus reevesi (Reeves' muntjac): 136176883
Entry
136176883         CDS       T10466                                 
Symbol
DNAI1
Name
(RefSeq) dynein axonemal intermediate chain 1
  KO
K10409  dynein axonemal intermediate chain 1
Organism
mree  Muntiacus reevesi (Reeves' muntjac)
Pathway
mree04814  Motor proteins
mree05014  Amyotrophic lateral sclerosis
mree05016  Huntington disease
mree05022  Pathways of neurodegeneration - multiple diseases
Brite
KEGG Orthology (KO) [BR:mree00001]
 09140 Cellular Processes
  09142 Cell motility
   04814 Motor proteins
    136176883 (DNAI1)
 09160 Human Diseases
  09164 Neurodegenerative disease
   05014 Amyotrophic lateral sclerosis
    136176883 (DNAI1)
   05016 Huntington disease
    136176883 (DNAI1)
   05022 Pathways of neurodegeneration - multiple diseases
    136176883 (DNAI1)
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   03037 Cilium and associated proteins [BR:mree03037]
    136176883 (DNAI1)
   04812 Cytoskeleton proteins [BR:mree04812]
    136176883 (DNAI1)
Cilium and associated proteins [BR:mree03037]
 Motile cilia and associated proteins
  Dynein arm
   136176883 (DNAI1)
Cytoskeleton proteins [BR:mree04812]
 Eukaryotic cytoskeleton proteins
  Microtubules
   Tubulin-binding proteins
    Dyneins
     136176883 (DNAI1)
SSDB
Motif
Pfam: Beta-prop_THOC3 WD40_Prp19 WD40_CDC20-Fz Beta-prop_EML_2 WD40 Beta-prop_EIPR1 Beta-prop_RIG_2nd Beta-prop_HPS5 WD40_WDHD1_1st Beta-prop_WDR3_1st Beta-prop_WDR3_2nd Beta-prop_WDR5 EIF3I Beta-prop_WDR36-Utp21_1st Beta-prop_WDR19_1st WDR55 Beta-prop_TEP1_2nd Beta-prop_Aladin Beta-prop_WDR75_1st WD40_RFWD3 Beta-prop_WDR36-Utp21_2nd WD40_MABP1-WDR62_2nd DUF4191 Beta-prop_LRRK2 Beta-prop_WDR90_POC16_2nd Beta-prop_TEP1_C Beta-prop_IFT122_2nd
Other DBs
NCBI-GeneID: 136176883
NCBI-ProteinID: XP_065803611
LinkDB
Position
10:8423635..8491183
AA seq 712 aa
MVPAGERAGGRARPGTPTGTARGGGPRCRSINMGRGTRKRDEDSGTEVGEGTDEWAQSKA
TVKPPDQLELTDAELKEEFTRILTANNPHAPQNIVRYSFKEGTYKLIGFVDQLAVHFTQV
GNLIPKDSDEGRRQHYRDELAAGSQESAKLVISETEILEEEEEPKEAEAGSQTDVPIVEA
SQKVAEEELMTPKQPKERKLTNKFNFSERASQTFNNPLRDRECQMEPPPRTNFSATANQW
EIYDAYMEELEKQEKTKEKEKTKTPVAKKMGKMAMRKMTSLESQSDDITKVTQAAKIVER
MVNQNTYDDVAQDFKYYEDAADEYRDQEGTLLPLWKFQNDKAKRLAVTALFWNPKYNDLF
AVGHGSYDFMKQSRGMLLLYSMKNPSFPEYVFSSESGIMCLDMHVDHPYLVVVGHYDGNV
AIYNLKKPQSQPSFRSSAKSGKHTDPVWQVRWQKDDMDHNLNFFSVSSDGRIVSWTLVKS
ELVHIDVIKLKVEGRTTEDLEGLQIHTVGCGTAFDFHREIDYLFLVGTEEGKIYKCSKAY
SSQFLDTYDAHNMAVDAVSWNPYHAKVFMSCSSDWTVKIWDHTIKTPMFIYDLNSAVGDV
AWAPYSSTVFAAVTTNGRTHVFDLSINKYEAICNQPVVAKKKNKLTHVQFNPIHPIIIVG
DDRGQVTCLKLSPNLRKMPKEKKGQEVQKGPAVEIAKLDKLLNLVREVKTKT
NT seq 2139 nt   +upstreamnt  +downstreamnt
atggtgccggcgggcgagcgggccgggggccgggcgcggccggggacgccgacggggacc
gcacggggcggcggccccaggtgccggagcatcaacatgggcagaggaacgaggaagaga
gatgaagactcagggactgaagtaggggaagggacagatgaatgggcgcagtccaaagcc
acagttaaaccccctgaccaactggagttgactgatgcggagctgaaggaggagttcacc
cggattctgacggccaacaacccgcacgcaccccagaacatcgtcaggtacagcttcaaa
gaaggcacatacaagctcattggctttgtggaccaactagcagttcacttcacccaggtc
gggaacctgatccccaaagactcggatgaagggcggcggcagcactaccgcgatgagtta
gcagccggttctcaggagtccgccaagttggtgatttcagaaacagaaatcctggaagaa
gaagaagagcccaaggaagctgaagctgggagtcaaacagatgtgcctatagttgaggca
tctcagaaagtggctgaagaagaattgatgactcctaagcagcccaaggagcgaaagctc
accaacaagttcaacttcagtgagagggcctcacagaccttcaataaccctctccgggac
cgagaatgtcagatggagcctcctcctaggacaaacttttcagccacagccaaccagtgg
gaaatctacgatgcctacatggaagagctcgagaagcaggaaaagactaaagagaaggag
aagacaaagaccccagtggctaaaaagatggggaagatggccatgaggaagatgacatct
ctggagtcccagagcgacgacatcaccaaagtgacccaggcagcgaaaatcgtggagcgg
atggtcaaccaaaacacatatgacgatgttgctcaggattttaagtactatgaggatgct
gctgacgagtatcgggaccaggagggtaccctgctgcctctttggaagttccaaaacgac
aaagcaaagcgcctggccgtcaccgccctcttctggaatccaaagtacaacgatctgttt
gcagtgggacatggctcctatgacttcatgaagcagagccgaggcatgctgctgttatac
agtatgaagaaccccagcttccccgagtacgtcttcagcagcgagagcggcatcatgtgc
ctggacatgcacgtggaccacccctacctggtggtggtgggccactatgatgggaacgtg
gccatttacaacctcaagaagccccagtcccagccctccttccgcagctcagccaagtct
ggcaagcacacggaccctgtgtggcaggtcaggtggcagaaggatgacatggaccataac
ctcaacttcttctctgtgtcatccgacggcaggatcgtgtcttggacactcgtgaagagc
gagctggttcacattgacgtcatcaagctgaaggtggagggcaggaccacggaagatctc
gagggcctgcagatacacacagtgggctgcggcactgcctttgacttccacagagagatc
gactacctgtttctggtgggcacagaggaggggaaaatctataagtgctccaaagcctac
tccagccagttcctcgacacctacgacgcccacaacatggccgtggatgccgtgtcctgg
aacccctaccacgccaaggtgttcatgtcctgcagctccgactggacagtgaagatatgg
gaccacaccatcaagaccccgatgttcatctacgacctcaattcagctgtgggcgacgtg
gcctgggcaccgtactcgtccactgtgttcgcagcagtcaccaccaacgggaggacccac
gtgtttgacttgtccatcaacaagtacgaggccatctgcaaccagcctgtggtggccaaa
aagaagaacaagctcacccatgtgcagttcaaccccatccaccccatcatcattgtgggc
gatgaccgagggcaagtcacctgcctcaagctctcacccaatttgcgaaagatgccgaag
gagaagaagggccaggaagtacagaaggggccagctgtggagatcgcaaaattggacaaa
ctgctgaacttggtgagggaagtgaaaaccaagacctga

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