SGID Silkworm Genome Informatics Database
Gene
KWMTBOMO07000  Validated by peptides from experiments
Pre Gene Modal
BGIBMGA010475
Annotation
PREDICTED:_dynein_heavy_chain_2?_axonemal_[Amyelois_transitella]
Full name
Dynein heavy chain 2, axonemal      
Alternative Name
Axonemal beta dynein heavy chain 2
Ciliary dynein heavy chain 2
Dynein heavy chain domain-containing protein 3
Location in the cell
Cytoplasmic   Reliability : 1.846
 

Sequence

CDS
ATGTATGAGTCGGTCGTCTACAGGTACGCGGGACGAACCGAACTACCCGATAATCTCAAGTCAATGTTCCGTCCCATCGCGATGTGTGTGCCGGACTCGCTCATCATAGCCGAGAACACTTTGTTCTCTGATGGATTCACCGCATACAAAATTAACGCTAAGAAGGTGTTCACGTTGTACCAACTCGCAACGCAACAGCTCTCCAAACAGGATCACTACGACTTTGGACTTAGGTCGATGGTCGCCTTACTCCGGTACGCCGGAGTGAAGAGACGCGCCTACCCTCATCTACCGGAACAAGAGATGGTAATCTTGGCGATGCGCGACATGAATGTGGCTCGTTTGACAGCCAAAGACGTGCCGCTCTTCGACGGCATCATGCAAGACATCTTCCCTGATGTGGAGATTCCGACCTTGGACTACGAGCTGCTGGAGACAGCTATCGCGGCGGAGATGAGACAGGCCGGGTTGCAGCCAACGCGAGCTGCGCTGCACAAAGTGATACAAACTTTTGAGACCAAGAACTCTCGCCATTCTAGCATCCTGCTGGGAGACACCAACACCGCCAAGTCGGTTTCCTGGCGCATGCTGTCCGCTACCATCAGTCGTCTGTGCAGAGAGAACGTCCCGGGCTTCGAGAACGTCCAGGTCCACCCCATGAACCCGAAGGCTCTGACGCTGGGAGAACTATACGGGGAGTACAACCTGGCCACTGGGGAGTGGAAGGACGGGGTTCTGTCGTCCATCATGAGGACCATTTGTCAAGACGAATCTCCGGATCAGAAGTGGATTATCTTCGACGGGCCCGTTGATGCCATTTGGATTGAGAACCTTAATTCGGTGATGGACGATAACAAGCTCCTCACGTTGGTCAACAGCGAGAGGATCTCCATGCCGAGACAAGTGTCTCTATTAATCGAGACTCTGGACTTGGCTGTGGCCTCTCCAGCTACTGTCTCCAGAAACGGCATGGTGTACAACGACTACAAGGATTGGGGCTGGTGGCCATACGTCAACTCTTGGTTGGAGACCATCAGTGACTTGGAGTATCGGGAAATGCTCCGGCGGCACTTTCAAAATATTCTGACCCCGGTACTGGAGCTGAAGCGGCTACAGCTGACTGAGGGTCCGTCGGTGCGCGGCCAGGAGCTGACCGGGGTGCGCGCCCTGTGCAGACTGCTGGGCCTGCTCCCCCCGCCCGCCGCCCCGCTGCCCGACGAGGAGGACAATGAGAACTTTTCCAAGATGCGATTTTTGTTTGCTTTGGTGTGGTCGGTGTGCGCGACCCTCGAGGAAGAGTCGCGTCGCAAGATCGACAACTGGATCCGGGAGCACGAAGGCATCTTCCCGCTGAAGGACACGGTGTACGATTACTACGTGGACGAGAGGCTGCGGCAGTTCAAGCCCTGGGAGGACAAGCTGCCCGACAACTGGAGGTTCAATGCCGGTCTGGGTTTCCACACGATCTTGGTGCCGACCGTGGAGTTCATCCGAGTTCAGATAGTGGCCTTGGAGATGCTGCGGGCCGGTCGCGGCGTGCTGGTTGGTGGCGCCACCGGGACAGGGAAGACGTTCCTCGTCCAGGGAACGTTGGCCAGCCTCGACCCGGACAGGTACAGCACGCAGGTCATCAACATGTCTGCCCAGACCACGGCCGCGAACGTCCAGGATATTATTGAGGCAAGACTCGAGAAGAGAACCAAAGGGAACTATGTGCCAGCCGGAGGCAAGAAGATGATAGCGTTCCTAGACGATATAAACATGCCGGTGCGGGACGAGTACGGGTCGCAGCCCCCGCTGGAGCTGGTCCGCCTGTGGAACGACTACGGCTACTGGTTCGACCGGCAGAAGCAATGGCGCAAGAACGTTAAGGACATGGTGCTGTGCGGGGCCGCCGGACCGCCGGGGGGCGCCCGCAGCGCGCTGCCCCCCCGCCTGCTGTCCTGCTTCCATGCCTTCTACCTGCCGCCCCCCACGCAGTCCCAGCTCATCAAGATCTTCGGGACGATGCTATCCCAACATCTCCAGGAGTTCGACGAGGAGACTAAAAGTGTCGGTAAAATCGTCCTCGCGGCCACGATCGACATGTTCAACAATATCGTGGCCAAGCTCCTGCCGACTCCGAGCAAGATGCATTATTTGTTTAATCTGAGGGACATCTCCAAGATATTTCAGGGTCTCCTCCGCAGCAACAAGGACTACACAAACACGAAGCCGCGATTCCTTAGGCTTTGGATCCACGAGTGTTTCAGAGTGTTCGGTGATCGACTTACCGAAGAGAAGGATCGCGACTGGTTCATGAACCAAGTGAGCGACATGTTGGGTAAGCACTTCGAGCTGACGTTCCACGCTCTGTGCCCGAGCAAGAGTCCTCCGTTGTTTGGACATTTCCTCAACCCCTTCGAAGTTTACGACGATTTAAACGACCCCGCCGCTCTGAGGAGGTACATAGCCAATCAGATGGAGGAGTACAACAGCTGTCCCGGCGTCGTGAAGATGGATTTGGTTCTGTTCAAGGACGCGATCGAGTACATTGTTCGTATTGTCCGGGTCATATCGCAGCCGAGGGGCCACATGCTGTGCGTCGGCATTGGTGGCTCCGGACGTCAGAGTTTAACTCGCGTCGCGTCTTACATCTGCGAGTGTAATTCTTTCCAAGTTGTAGTCACGAAGACTTATGGAGTGAAAGATTTTCGTGAAGATTTGAAGGTCCTGTACACCAGTTGCGGAGTGGACTCCAAGAAGACGACGTTTATATTCTGCGACACTCAAATCGTGGAGGAGACTTTTACAGAGATAATCAACAACCTGCTCAGCAGTGGAGAGGTCACCAACCTGTACAAGCCGGACGAGTTTGAGGATATCAAACAGGCCTTAGAGAAGCCCATGAAGGCAGCGAATTTGATGCAGACCGCGGAGGCCGTGTACTTGTTCCTGGTGGACAGGGTTCGCGCCAACATGCACATCGTGCTCTGCTTCAGCCCCATCGGGGATGACTTCAGGAATCGCATCCGGCAGTACCCGGCGCTGATCAACGCGACCACCACGAACTGGTTCTTGGAGTGGCCGCGGGAGGCGCTGCTCGAGGTGGCCTACAAGTTCTTGGACGGGGTCGAGCTGCTCGCCTCCATTACCGGACAACGGGTGCGTAGGAAGGAGTCTGTGATCGAGAGTAGGGAGGACTCCCTGCGTGCTTCGGTGGCGTCCATCATGTCTCTGGTCCACTCGTCGGTCGGGAAGTACTCGGTGAAGATGTGGAACGAGATGAGGAGGACCAACTACGTCACCCCCACCAACTATCTGGAGCTGGTGACCGGATACAAAGAAATGTTAAAAGCGAAACGCTTCGAAGTAGCGCTACAGGCGAACAAGCTGAGAAACGGTCTCGGTAAAGTCGAGGAGACGACCAAACTCGTCGGGCAGATGTCTGAAGAATTGGCGGTCGCTCAGGTTCAAGTGGCCGAGTACACGGATCAGTGTATCGAGTACATGGGCGTGATCAACGCGCAGCAACGGAACGCGGACGAGCAGCAGCGCAGCGTGGCGGCGCGCAGCAAGAAGACGCAGGAGGAGGAGGTGCAGTGCAAGAAGCTGGCCGACGCCGCCATGCGGGACCTCGCCAGCGCCATGCCCGCGCTCGAGGAGGCCGTCAAGGCCCTGGACGCGTTGAACAAGAAAGACATAACCGAAGTGAAGTCCTACGCCAAGCCTCCTCAAAAAGTCGAGATGGTCCTCGAAGCTGTGCTCATACTACTGCAGAAAGAGCCGACCTGGGCCGAAGCGAAGCGCCAGCTCGGCGACCAGTACTTCCTCGACCGGCTCCGGGAGTTCGACAAGGACAACATTTCCGATAAGACGCTGAAGAAGATCGGCACTTACACGGCCAAGCCGGACTTCGACCCCGAGATTGTCGGTACCGTGTCCCTGGCGGCCAAGTCGCTCTGTCTCTGGGTCAGGGCCATCGAGAAGTACGGCAAGGTTTACAAGATAGTAAAACCGAAAAAGGAACGTTTGGAAGAGGCGCTAGAGTCGCTTCGTATGAAGCAACAGATCCTGGCCGAAGCCCGGGCGAAGCTACGCGAGCTGAGCGAGATGATAGCGCGTCTTCAGAAGGAGTACGACGAGAAAGTCGCCCAGAAAGACGAGCTGGAGAGGAAATCGAAGCTGCTGCAGCTGAAGCTGGAAAGGGCTGAAGCTCTGATCACTGGGCTTTCAGGTGAAAAGGAACGGTGGGCATTGACTGTGGAAAGACTCGACGAGGAGTTCACGAGGCTGCCCGGAGACTGTCTGCTGGCTACGGGCTTCGTGGCGTACCTTGGACCTTTTGTTTCTGTATATAGGGAGGACTTGCTCGATCATTGGTTCAAAGAGGTATTCAACGAAGAAGTTCCGGTCACTATGGAGTTGAGCATGAAGAACTTTTTACTCGACGACGCGATTCTCAGGGATTGGAACTATATGGGTTTGCCGGATGACAATTTTAGCGCAGAAAACGGTATAATAGTGGTGAGAGCCACGCGGTGGCCCCTCGCCGTCGACCCTCAAGGTCAGGCCCTCATTTGGATATCCAAACTTGAAGAACCTAATGGCATACAGGTAGTCGACTTCGGGCAGCCTAACTATTTGAAAGTTATGGAGTCATGTCTAATGGAAGGGAAGCCGGTAATCATTCAAAACGTTGGCGAGATTCTAGATCCTTCCATAGCCCCGATCTTGGACAAGGCCATCGTGAAAATCGGGAATGATCTGGTCATAAAGTTTAATGAGAAAATGATACCTTATAATACCAAGTTCAAAATGTATTTGACCACTAAGCTCGGTAATCCCGTTTATACACCCGAGACCCTGACGAAGACCACAATGGTGAACTTTGCTGTCAAAGAAGAAGGTCTGACGGCGCAGTTGCTCGGCATAGTCGTCAGGAAGGAGCGGCCGCAGCTCGAACAGATGAAGGATAGTTTGGTTATGACCATAGCCAACAATAAAAAAGTCTTGGTGGACCTCGAGAACGATCTGCTGCGGATCATGTACGAGTCCCAAGTGCCGCTGCTGGAGAACGAAGAGCTGTTCGTCACGCTCCAGATCTCACAGCGAACGTCTGAGGAAGTCAAGGAGGCGCTGATCACGTCTCAGGTCACCGAGAAGGAGATTGATGCTGCAAGACAGGGATACGTGCCAGTCGCGGTGCGGGCCTCCGTGCTCTTCTTCGCTCTGAACGACTTGTCGCGTATCGACCCGATGTACCAGTTCTCTCTGGAAGCGTACATAGACTTGTTCACTTACTCCATAGACAAAAGCCCCAAAGGAGGCGAACTGGAAGACAGGATTAATAATTTGAATGAATATCACACGTACTCTGTTTATAAGAACACGTGCCGCGCGCTGTTCGAGCGACACAAGCTGCTGCTCTCGTTCCACATCGTGTCCCGGATCCTGTTCCAAATGAACAAGATGAGCGCGCACGAGTACCTGTTCCTGCTGAAGGGCGGCGTCGTCCTGGACAGATCCGAACAACCCGAGAATCCTACCAACTGGATGCCGGACGAGTGCTGGGACAACGTGACGGAGCTGGACAAGCTGCCGGGCTTCCACGGGGTGGTCGACGCCTTCGAGACCTTCAGCAAGGACTGGAGGGACTGGTACCTCCACCCGGAGCCGGAGTCGCAGCCGCTCATAGGCGAATGGAACGACATCTGCAACGACTTCCAGAAGATCCTGTTCATCCGCTGCCTGCGCGCGGACCGCGTGTCCGCCTGCGTCACCGCCTTCATCGTCAGCGTGCTGGGCGCCCGCTACGTGGAGCCCCCCGTGCTCGACATCAAGCAAGCCTGGGAGGAGTCCACGTGGAAGACGTCGCTGCTGTTCGTGCTGTCCCCGGGAGTGGACCCCACGGCCTCGCTCATCCAGCTGGCGCGCGACGTCAAGATGGCGGACAAGTTCCAGTCCCTCAGTCTCGGGCAGGGACAGGCGCCGGCCGCCGTCAGGCTGCTGAGCCGCGGCATGCGCGAGGGCGGGTGGGTGTACCTGGCGAACTGCCACCTGGCGTGCGCGTGGCTGGCGGGGCTGCGGCTGGACGCGTCGCGCGTGCACGCCCGCTTCCGCCTGTGGCTGTCGTCGCTGCCCGACGCGCGCTTCCCGCTCGCCGTGCTGCAGCGGAGCATCAAGATGACGACGGAGCCGCCCCAGGGCCTCAAAGGGAATCTGGTTCGTATATACGCGAACATGAACGAGGATCGCTTCGACGAAGCGACGCCGAAGTATCGACGGCTCCTGTTCTGCGTCTCGTTCTTCCACTGCACGCTCATCGCCAGGAAGCGGTTCCGGCAGCTCGGATACAACGCCGTCTACAGCTTCAACGATGCCGACTTTGACGTATCAGATAATTTGCTGTCTAACTACTTGGAGGAATACGATGAGGTTCCGTGGGATGCTTTACGTTATCTGTTCGCGATCATCAACTACGGAGGACACATCACGGACGATTGGGACAAGCGCGTGCTGATCGCTTACATCAATCAGTTCTTTTGCGAGGAAGCTCTCGATACACCGTTTTATAGACTGTCGTCGATGCCGTCGTACCACATCCCGCGCGACGGCAGCCTGGAGTCGTACCGCGACTTCCTGGAGCTGCTGCCTGGGTACGAGCGCGCGGAGTCCGTCGGGCAGCACGCCTCCGCCGACGTGGCCACCCTGGCGCAGGATGCGTTGATAATGTGCTCCACGCTGTTCGCTCTGGCTTCCACCGGGGGAGGCGGGGGGGGCAGCGGGGACGACCAGAAGGTGAACGAGCTGGCGGCGGAGATGCTCTCAAAGCTCCCGAACAAGATTGACGTGGAGACCACGGAGAGAATGATGGGGCCGGAGATTGTGATGCCCATGTGCGTCTCCCTGCTACAGGAGATTGGCTACTACAATACCCTGCTGACCGGCATTGTGGGCGGGCTCAAGGAGCTCCGACGCGCCATCGAGGGTCTGGTCGTGATGTCCGAAGTGCTGGAGGACATGAACACTTGCATCTTCGAGGGGAGGGTGCCGATTTTTTGGCAGAAAGGTCGTCCGTCGATGAAGCCGCTAGGGTCGTGGTGCCGCGAGCTGTGTCTCCGCGGGACGCACCTGGCGGCGTGGGCCGGCGCCCCGCGCGCCCCGCCCACGCTGTGCTGGCTGCCCGCGCTCGTCGCTCCGACCGGCTTCCTCACCGCCGTCATGCAGACCACGGCCCGTGGCGAGGGTTGGCCCATAGACACGCTGTGCTGGGAGTTCACCGTTATGCCGCTCGAGGAAACCGCCTTCGTCCGCCCTCCGAGAGATGGTGGGGTTTACATCAGAGGCCAATACTTGGAAGGGGCGAGCTGGTTTAAGAAAGAAGGGTATCTACAGGAACCCCTTCCCATGCAGCTGGTGTTTCCCATGACGCCAATACACTTCAAGCCGATCAGAGCCACCGGGAGACGACTGAAGAACCGGTACACGTGCCCTTGTTACTACTACCCGCTGCGGCAGGGAGCGTTCGTGGTGGCCGTGGACCTACCGTCTGGGAAGGAGTCCTCCGATTTCTGGGTTAAAAGAGGAACGGCCTTGTTGTGTACTTTAGCTACGTAA
Protein
MYESVVYRYAGRTELPDNLKSMFRPIAMCVPDSLIIAENTLFSDGFTAYKINAKKVFTLYQLATQQLSKQDHYDFGLRSMVALLRYAGVKRRAYPHLPEQEMVILAMRDMNVARLTAKDVPLFDGIMQDIFPDVEIPTLDYELLETAIAAEMRQAGLQPTRAALHKVIQTFETKNSRHSSILLGDTNTAKSVSWRMLSATISRLCRENVPGFENVQVHPMNPKALTLGELYGEYNLATGEWKDGVLSSIMRTICQDESPDQKWIIFDGPVDAIWIENLNSVMDDNKLLTLVNSERISMPRQVSLLIETLDLAVASPATVSRNGMVYNDYKDWGWWPYVNSWLETISDLEYREMLRRHFQNILTPVLELKRLQLTEGPSVRGQELTGVRALCRLLGLLPPPAAPLPDEEDNENFSKMRFLFALVWSVCATLEEESRRKIDNWIREHEGIFPLKDTVYDYYVDERLRQFKPWEDKLPDNWRFNAGLGFHTILVPTVEFIRVQIVALEMLRAGRGVLVGGATGTGKTFLVQGTLASLDPDRYSTQVINMSAQTTAANVQDIIEARLEKRTKGNYVPAGGKKMIAFLDDINMPVRDEYGSQPPLELVRLWNDYGYWFDRQKQWRKNVKDMVLCGAAGPPGGARSALPPRLLSCFHAFYLPPPTQSQLIKIFGTMLSQHLQEFDEETKSVGKIVLAATIDMFNNIVAKLLPTPSKMHYLFNLRDISKIFQGLLRSNKDYTNTKPRFLRLWIHECFRVFGDRLTEEKDRDWFMNQVSDMLGKHFELTFHALCPSKSPPLFGHFLNPFEVYDDLNDPAALRRYIANQMEEYNSCPGVVKMDLVLFKDAIEYIVRIVRVISQPRGHMLCVGIGGSGRQSLTRVASYICECNSFQVVVTKTYGVKDFREDLKVLYTSCGVDSKKTTFIFCDTQIVEETFTEIINNLLSSGEVTNLYKPDEFEDIKQALEKPMKAANLMQTAEAVYLFLVDRVRANMHIVLCFSPIGDDFRNRIRQYPALINATTTNWFLEWPREALLEVAYKFLDGVELLASITGQRVRRKESVIESREDSLRASVASIMSLVHSSVGKYSVKMWNEMRRTNYVTPTNYLELVTGYKEMLKAKRFEVALQANKLRNGLGKVEETTKLVGQMSEELAVAQVQVAEYTDQCIEYMGVINAQQRNADEQQRSVAARSKKTQEEEVQCKKLADAAMRDLASAMPALEEAVKALDALNKKDITEVKSYAKPPQKVEMVLEAVLILLQKEPTWAEAKRQLGDQYFLDRLREFDKDNISDKTLKKIGTYTAKPDFDPEIVGTVSLAAKSLCLWVRAIEKYGKVYKIVKPKKERLEEALESLRMKQQILAEARAKLRELSEMIARLQKEYDEKVAQKDELERKSKLLQLKLERAEALITGLSGEKERWALTVERLDEEFTRLPGDCLLATGFVAYLGPFVSVYREDLLDHWFKEVFNEEVPVTMELSMKNFLLDDAILRDWNYMGLPDDNFSAENGIIVVRATRWPLAVDPQGQALIWISKLEEPNGIQVVDFGQPNYLKVMESCLMEGKPVIIQNVGEILDPSIAPILDKAIVKIGNDLVIKFNEKMIPYNTKFKMYLTTKLGNPVYTPETLTKTTMVNFAVKEEGLTAQLLGIVVRKERPQLEQMKDSLVMTIANNKKVLVDLENDLLRIMYESQVPLLENEELFVTLQISQRTSEEVKEALITSQVTEKEIDAARQGYVPVAVRASVLFFALNDLSRIDPMYQFSLEAYIDLFTYSIDKSPKGGELEDRINNLNEYHTYSVYKNTCRALFERHKLLLSFHIVSRILFQMNKMSAHEYLFLLKGGVVLDRSEQPENPTNWMPDECWDNVTELDKLPGFHGVVDAFETFSKDWRDWYLHPEPESQPLIGEWNDICNDFQKILFIRCLRADRVSACVTAFIVSVLGARYVEPPVLDIKQAWEESTWKTSLLFVLSPGVDPTASLIQLARDVKMADKFQSLSLGQGQAPAAVRLLSRGMREGGWVYLANCHLACAWLAGLRLDASRVHARFRLWLSSLPDARFPLAVLQRSIKMTTEPPQGLKGNLVRIYANMNEDRFDEATPKYRRLLFCVSFFHCTLIARKRFRQLGYNAVYSFNDADFDVSDNLLSNYLEEYDEVPWDALRYLFAIINYGGHITDDWDKRVLIAYINQFFCEEALDTPFYRLSSMPSYHIPRDGSLESYRDFLELLPGYERAESVGQHASADVATLAQDALIMCSTLFALASTGGGGGGSGDDQKVNELAAEMLSKLPNKIDVETTERMMGPEIVMPMCVSLLQEIGYYNTLLTGIVGGLKELRRAIEGLVVMSEVLEDMNTCIFEGRVPIFWQKGRPSMKPLGSWCRELCLRGTHLAAWAGAPRAPPTLCWLPALVAPTGFLTAVMQTTARGEGWPIDTLCWEFTVMPLEETAFVRPPRDGGVYIRGQYLEGASWFKKEGYLQEPLPMQLVFPMTPIHFKPIRATGRRLKNRYTCPCYYYPLRQGAFVVAVDLPSGKESSDFWVKRGTALLCTLAT

Summary

Description
Force generating protein of respiratory cilia. Produces force towards the minus ends of microtubules. Dynein has ATPase activity; the force-producing power stroke is thought to occur on release of ADP. Involved in sperm motility; implicated in sperm flagellar assembly (By similarity).
Subunit
Consists of at least two heavy chains and a number of intermediate and light chains.
Similarity
Belongs to the dynein heavy chain family.
Keywords
Alternative splicing   ATP-binding   Cell projection   Cilium   Coiled coil   Complete proteome   Cytoplasm   Cytoskeleton   Dynein   Microtubule   Motor protein   Nucleotide-binding   Polymorphism   Reference proteome   Repeat   RNA editing   TPR repeat  
Feature
chain  Dynein heavy chain 2, axonemal
splice variant  In isoform 3.
sequence variant  In dbSNP:rs35664870.
EMBL
BABH01005180    BABH01005181    BABH01005182    KQ461194    KPJ06858.1    AAZX01000330    + More
DS235494    EEB16077.1    GL434547    EFN74799.1    QOIP01000002    RLU26149.1    KK107574    EZA48745.1    KQ977978    KYM98389.1    KQ980259    KYN17075.1    GL452124    EFN77889.1    KQ983238    KYQ46233.1    AL935046    AL954772    CU570992    AEFK01165155    AEFK01165156    AEFK01165157    AEFK01165158    AEFK01165159    AEFK01165160    AEFK01165161    AEFK01165162    NDHI03003640    PNJ12841.1    PNJ12842.1    JSUE03015993    JSUE03015994    JSUE03015995    JSUE03015996    JSUE03015997    JSUE03015998    AQIA01026373    AQIA01026374    AQIA01026375    AQIA01026376    AQIA01026377    CM001291    EHH57691.1    CM001268    EHH24487.1    AQIB01138131    AQIB01138132    AQIB01138133    AQIB01138134    AQIB01138135    AQIB01138136    AHZZ02009656    AHZZ02009657    AHZZ02009658    AHZZ02009659    AHZZ02009660    AHZZ02009661    AEYP01050872    AEYP01050873    CABD030103512    CABD030103513    CABD030103514    CABD030103515    CABD030103516    CABD030103517    AAQR03080620    AAQR03080621    AAQR03080622    AAQR03080623    AAQR03080624    AAQR03080625    AAQR03080626    AAQR03080627    AAQR03080628    AAQR03080629    AB040936    AK128517    AK292607    AC025335    AC087388    BC034225    U83570    AY903242    AY903243    AY903244    AAX85372.1    AAX85373.1    AAX85374.1    AABR07029859    AABR07029860    AABR07072134    AC136563    AL731687    AL596125    CAI52011.1    Z83813    AK029791    AGTP01070912    AGTP01070913    AGTP01070914    AGTP01070915    KB199651    ESP04959.1    AJFE02031318    AJFE02031319    AJFE02031320    AJFE02031321    AJFE02031322    AJFE02031323    AJFE02031324    AJFE02031325    AJFE02031326    AJFE02031327    ADTU01000355    ADTU01000356    ADTU01000357    ADTU01000358    ADTU01000359    AACZ04040211    AACZ04040212    AACZ04040213    AC192612    NBAG03000347    PNI36831.1    PNI36832.1    GL888184    EGI65615.1    AHAT01030211    AHAT01030212    AHAT01030213    AHAT01030214    AHAT01030215    AHAT01030216    AHAT01030217    AHAT01030218    AHAT01030219    AHAT01030220    NEDP02004020    OWF47169.1    ACTA01161779    ACTA01169777    ACTA01177775    ACTA01185773    AAGW02049557    AAGW02049558    AAGW02049559    AAGW02049560    AAGW02049561    AAGW02049562    JH168588    EHB04500.1    KQ976509    KYM82700.1    AAKN02044409    AAKN02044410    AAKN02044411    AAKN02044412    AAKN02044413    AMQN01010963    KB308597    ELT97318.1    AMGL01018049    AMGL01018050    AMGL01018051    AMGL01018052    JH881039    ELR57060.1    GDHF01006808    JAI45506.1    GDHF01021646    GDHF01010187    JAI30668.1    JAI42127.1    GAKP01022468    JAC36484.1    KB105946    ELK31814.1    GDHF01004437    JAI47877.1    CCAG010009806    GBXI01006136    JAD08156.1    JRES01000383    KNC31762.1   
Pfam
PF12781   AAA_9        + More
PF00515   TPR_1
PF12774   AAA_6
PF13181   TPR_8
PF17852   Dynein_AAA_lid
PF18199   Dynein_C
PF17857   AAA_lid_1
PF12777   MT
PF03028   Dynein_heavy
PF12780   AAA_8
PF18198   AAA_lid_11
PF17830   STI1
PF08385   DHC_N1
PF08393   DHC_N2
Interpro
IPR041466   Dynein_AAA5_ext        + More
IPR001440   TPR_1       
IPR003593   AAA+_ATPase       
IPR019734   TPR_repeat       
IPR011990   TPR-like_helical_dom_sf       
IPR042219   AAA_lid_11_sf       
IPR004273   Dynein_heavy_D6_P-loop       
IPR013026   TPR-contain_dom       
IPR006636   STI1_HS-bd       
IPR035699   AAA_6       
IPR041228   Dynein_C       
IPR041658   AAA_lid_11       
IPR041243   STI1       
IPR041589   DNAH3_AAA_lid_1       
IPR035706   AAA_9       
IPR024317   Dynein_heavy_chain_D4_dom       
IPR024743   Dynein_HC_stalk       
IPR027417   P-loop_NTPase       
IPR013594   Dynein_heavy_dom-1       
IPR013602   Dynein_heavy_dom-2       
IPR042228   Dynein_2_C       
IPR018247   EF_Hand_1_Ca_BS       
IPR042222   Dynein_2_N       
IPR026983   DHC_fam       
SUPFAM
SSF48452   SSF48452        + More
SSF52540   SSF52540       
PDB
4RH7     E-value=0,     Score=2080

Ontologies

Topology

Subcellular location
  
Length:
2532
Number of predicted TMHs:
0
Exp number of AAs in TMHs:
0.248500000000001
Exp number, first 60 AAs:
0.0497
Total prob of N-in:
0.00305
outside
1  -  2532
 
 

Population Genetic Test Statistics

Pi
281.687489
Theta
154.651615
Tajima's D
1.674459
CLR
0.437438
CSRT
0.825558722063897
Interpretation
Uncertain
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