SGID Silkworm Genome Informatics Database
Gene
KWMTBOMO01798  Validated by peptides from experiments
Pre Gene Modal
BGIBMGA005995
Annotation
PREDICTED:_myosin-VIIa-like_isoform_X1_[Bombyx_mori]
Full name
Peptidylprolyl isomerase       + More
Myosin-VIIa      
Alternative Name
Protein crinkled
Location in the cell
Mitochondrial   Reliability : 1.727
 

Sequence

CDS
ATGACTGACCGAATTCGGCTTTCGGACCTGGTTTGGATAAAGCCACAAGGAAGGTCAGAATTTGACATTCCCGTGGCGGTCAAAATCTTAAACAGTTCCGGCGACAGGATCCAGGTTCAGGATGATGATGGCAAAGTGTTCTCGACCACGGTGCATGACGTCATCAAACCTCTTCATGCGACGTCAATTTGTGGAGTGGAAGACATGATAACTCTTGGCGAACTCCAGGAATATACGATACTCCGAAATCTACATTTAAGATATAATGAGCAATTGATTTATACATATACGGGTTCCATGTTAATAGCTATTAATCCATATGAAATTCTACCAATTTATACCATGGATCAGATACACTTCTATCAAAACAGTCAAATTGGAGATATACCACCACACATTTTTGCCATAGGAGACAATTCTTACAGGAAATTGATCGAGACTTCTTCCAACCAGTGCATAGTTATCAGTGGAGAAAGTGGAGCTGGAAAAACTGAAAGCACTAAGCTATTGTTACAATACTTAGCAGCAGCTAGCGGAAAACACTCTTGGATTGAACAACAAATTCAAGAAACCAATCCTATCCTTGAAGCTTTTGGTAATGCTAAAACAGTTAAAAACGACAATTCATCGAGATTTGGGAAATATGTGAACATTTATTTTAACAGAAAAGAAGTAGTAGATGCTGTGAACGCAAATAGAATAGCTACGCTTTTGGGCGTAAACAAAACTGATTTATGTGAGGCATTGACCAGGAAAACTTTTGTTGCTCACGGAGAAAAAGTTGTTTCTACATTAACAGTGGCTTCTGCCATCGAAAGTAGAGACGCACTTGTAAAAGCCATTTACGGGCATATATTCGAGTATATCGTGGATACTATTAATAAAACACTGCACAAAGACCAACAATTGACAAGTGGATCGGTTGGAATTTTGGATATTTTTGGTTTTGAAAACTTTGATTCTAACAGTTTTGAACAACTGTGCATCAATTACGCAAATGAAAACTTACAACAATTCTTTGTCAAGCATATTTTCAAACTTGAACAAGAACAGTACGAAAAAGAAGGTATTACATGGACAAATATCAACTACGTTGATAATCAAGAAAATCTGAACATGATCGGAATGAGACCAATGAATTTATTAGCGCTCATAGATGAAGAGTCACGGTTTCCTAAGGGGACAGATATCACACTATTATCAAAATTAAATAGTAATCACAGTAATAAGAATTGTTATATAGCTGCAAAATCTTCCCGTGAACATAGATTTGGCGTTAGGCACTTTGCTGGAGCCGTGTTTTATGAGGTTGCAGGTTTTTTGGACAAAAACAGAGATTTGCTTACAACAGACGTAAAGGAAATTATGTTTGATTCGAATAATCAATTCCTTAAAGGATTATTCGCATCAGAATTCACTGAAACGCGCAATAGTAGTCGAAAAACGATTTCTCTGAGTAATCAATTCAAAGCTTCACTTGATACTCTTATGAAAAATTTATACGCATGTCATCCATTTTTCGTTAGGTGTATAAAACCAAATGAACTGAAAAAACCAAGGGTTTTTGATAAAGCGCTCTGTGTGAGACAGCTAAGGTATGCAGGTTTAATGGAAACTGCAAAAATTAGACAGGCTGGTTACCCAATACGATATACCTACGTCTCATTTGTTCATCGTTACCGATTTTTAATACCTGGAATACCGCCCGCGGAAAGAACAGATTGTAAAAGTGCTACAAAAAAGATTTGTACTGAAGTTTTAAAAGATCAAGAATTCCGACTTGGACACACTAAAGTGTTTTTGAAAGATACACATGATTACTTACTTGAAGAATTGCGGCACACTATATTTACAACAGCTGTCATTAGAGTCCAAGCGAACGCAAGACGGTTTATTTGCAGAAGGAGATTCTTGAAGATGAGGGCTGCCGCTATAACAATTCAGAAACATTATCGTGCCCGTGGTTTACGCCATAGATTCCTTGTAATGCGAAGAGGGTACTCTCGTATTCAAGCCGTTATTAAATCAAGGGAATTGAGACGCACATTCTTACACTTGAGAAGCTTCTTCAGAAACTTACAGGCGCATTGTAGAGGCTACCTCATTAGAAAGTTAGTAAAAGAAAAAGGAACCTTAATAAAAGCTAAATTGTTACAACTTAAATCCGAAAAAGAAAAATTAGAAAAATCTGGAAAGGACGAACAATTTATCGCAGATGATCACGAAAAGAAGTTTACTGAACTGTTAAGGTCCATTTGGATAGTAAAAGAAATTGCTGTCGATGATAACGAACAGAACATCTCAGCTATTGATGATAGATACGTAGATGATGTTTTCGGTTTTCTTAAAGATAGTTCAACACCTGGTGGAACTGTGCGTGGAGCCGGATTTGGTGTTACTTCGACAGCTAAGCCAGAAATGTCGTCAATAATTCCAATGCCACAAGAATACGAAGAAGAACAGTTTGATGAATTCAACTTCAGGAAATTTGCGGCGACATATTTCTCTGGGAATACAAGTCACCAATATTCCCGCAAACCTTTGAGACACTCACTATTAGAGCTACCGTCACCAATGGATAAAGTTGCGTCTCAAGCACTGTGGATAACGATACTAAGATTTATGGGTGATTTGGCTGAACCTAAATATGTTGACGATAAAATTGATAATATTCCTGTTATGACTAAGTTAACTGACACTATTGGCCGAGCTTTTCAGAAGAGCAAAGAATTTGAGGAAATGCTAATCAAAGATGGAAATCAAAATAAAAGTCGATTGGTTTCCAAAACCTTGAAGAGGCAATCTAAATTAAATGAAGTATTCATCAAAAACTTATTAAATGACGAAACAACCAATGAAATGTACAGTCATTGGTTGAATTCGCGACGCAGTACGAACTTAGAAAAACTTCATTTCATTATAGGTCATGGAATTATCAGAAAAGAGCTAAGAGATGAAATATTTTGTCAGCTCTGTAAACAATTAACGAACAATCCATCAAAAACATCACATGCTCGTGGTTGGATACTTTTGTCCCTATGCGTTGGTTGTTTCCCACCCTCGGAGAGATTTGTGAAATACCTACGCTCTTTCATTCGCGGAGGACCACCGGGCTATGCACCATATTGTGAAGGTAGACTGGTAAGGACATTCAAGAACGGTCCTAGAACCCAACCACCTAGTTGGCTAGAATTACAGGCAACTAAAACTAAGAAACCGATTTTACTGACCGTCACTCTGATGGACGAGTCAATTAAAACTGTGCAATCGGATTCAGCATCTACGTCGGAAGAAATATGTCAACAGATAGCAGACAATATTGGTTTAACGGACACTTTTGGTTTTTCACTGTACATAACTTTGTATGATAAAGTGCTTTCATTGGGTAGCGAAGGAGAACACATCTGCGATGCGATATCGCAATGTGAGCAGTTTGCCAAAGAACATGGCACTCCTGAAAAGAGCGCACCATGGAGATTGTTCTATAGAAAAGAAGTTTTTACACCTTGGCACAATCCCGCCATTGATCCTATAGCGACTAATTTAATTTATAATCAAGTAGCTAAAGGTGTGAAGTTCGGAGAATATAGGTGTAATTCAGAAAATGACTTGGCGATGTTAGCTGCTCAACAACATTACATCGAATACGGTTCTCGATTAGATCCAAATGTTTTAAGAAAAGTTATTGTTAACTATATCCCGAATCAATTTATTCAATCGAATGATGCTGCCTTAACGAAATGGGAACATTTCGTAACGAAAGCATTTGATTCATGCCCCAATATTAAATCGAAAATAGATCCTTTAAGGTGTAAAGAAGATATAGTCATTTTTGCAAAACTCAAATGGCCCATGTTATTTTCAAGATTCTTCGAAGCTCTTAAACTAAAAGGCGATGCTATCAGTAAAGACATTATTATCGTTGCTGTAAACTGGACTGGCATATATATTGTTGACCAACTAGAGCATATACTTCTTGAGATAGCATATTCTGAAGTGACTTATGTGGCCTACGATGACGATACTGACTTGGAAAACATAGGAAAGGTCACTATCAGAACAATACAACAAGAAGAATTCGTATTTCAGAGTGTTGATGCAGGAGAAATGAGTTCCTTAATCATATATATTATTGATGGTTTAAAAAGAAGATCTGCATACGTTGTGGCCCAGAGTGATTCGCAAGGTTATGCTGATGCGTCATCTTTCCTTCAATTCAAAAAGGGTGATCTTATTACACTTTTGCATGATTCTACCGGAGAGACTTTAATGAATGCCACATGGGGTCATGGAGCTTGTAATGGCCAAGAAGGTTTATTCCCTACCGAACAAGTTTACATTTTGCCAACATTAGAAAAACCTTCGAATTCTGTACTCGAAGTATTTAAAAAGGGGACAGTAAACAATGATAAGAAACCATACCAATACAATACAGTGCAACGAAAGAGGATGCACACGTTAGAGAAATACGCGAAGGAATACTTCAGGGAAAATTATGATGTCAATACAACGGTATCACGACAATCAACACTAACTACCGCTAAGAAACCTATTGCCGGAGATTTATGGGTGCACAGTAGAGAGCCAATACGTAAGCCATTGTTAAAAAAAATACAAGATGATGAGAAACTATCTAAGAACGCAATCGCTGCTTATTACGCAATCTTGAAATACATGGGAGACATGCCAGCACCAAAACCTAAGTCGGCCACTGAATATACAGATGAAATATTTAAAAATGCAATATCGGAACCCGCATTGCGAGATGAAATATACTGTCACATAATGAAGCAATTGACCAACAATAGAATACAGTTGAGTGAAGAGAGAGGATGGGAGCTGCTTTGGTTGGCCACTGGCGTCTTCGCCTGTAGCCAAGTTTTAATGAAAGAACTAGTTGAATTCCTTAAAACACGACCTCATCCGATAGCCAAAGACTGTTTGAAACGATTATTTAAAACACAAAAATACGGATCAAGAATGTATGCTCCGTACGTTGTAGAGGTAGAAGCTATTCAACATAGAAGTATGCAGATATATCACAAAGTATACTTCCCAGACGATACTGATGAAGCTTTCGAGGTGGATTCATCTACAAAAGCGAGGGACTTGTGCGAGCAAATAACCGGAAGGCTAAATCTGAAGAATAGCGACGGTTTTAGTTTGTTTGTAAAAATAGCGGACAAGGTGTTTTCTGTCCCAGAAAACTATTACTTCTTCGACTTTGTTCATGAATTAGTTGAATGGATGAAACAAACGCGGCCAGTTCGAGGAGGTTCAACACAAATGCAAATGAACTACCAAATATTCTTCATGAAAAAGCTATGGATTAACACGGTTCCTGGTAGAGATAAAAATGCTGATCAAATTTTTTATTTTCCTCAAGAACTTCCAAAGTACTTGAGAGGATATCATAAGACTTCAAAGCAGGACCTCGTTGAACTTGCTGCATTGGTTTATAGGGCTAGATTCGGCAGTGATCAATCATTATTAGCACAAATATCCCATTTGCTTGAAGATTTTGTACCCTCTGATATGATTCGAATACAATCGAATTCTCAGTGGAAATCTTCAATAGTGACTGCGTACCTGCAACATGGAAATATGACTGAAAGCGAAGCTAAAGAACAATTCTTAAAGAAAATTTATCAGTTACCTACATTCGGCACAGCTTTCTTCGAAGTCAAGCAGACTTCAGACCCTGCTTATCCGGAAATGGTAATCGTAGGAATAAATAAAAATGGCGTTAGTCTTGTTCATCCACAAAGTCGGGATGTGTTGATCACGCACCCCTTTTCACAATTATCTAATTGGTCGTCTGGAAACACATTTTTTCACATGACAATGGGAAATTTCTTAAGAGGAACTAAGATACTGTGTGAAACTTCGCTTGGCTACAAAATGGATGATCTTATTTCATCATACATTGCTGTCCTCCGTGCTTCTTTAAATCAAAACAGTAGAGGTTAA
Protein
MTDRIRLSDLVWIKPQGRSEFDIPVAVKILNSSGDRIQVQDDDGKVFSTTVHDVIKPLHATSICGVEDMITLGELQEYTILRNLHLRYNEQLIYTYTGSMLIAINPYEILPIYTMDQIHFYQNSQIGDIPPHIFAIGDNSYRKLIETSSNQCIVISGESGAGKTESTKLLLQYLAAASGKHSWIEQQIQETNPILEAFGNAKTVKNDNSSRFGKYVNIYFNRKEVVDAVNANRIATLLGVNKTDLCEALTRKTFVAHGEKVVSTLTVASAIESRDALVKAIYGHIFEYIVDTINKTLHKDQQLTSGSVGILDIFGFENFDSNSFEQLCINYANENLQQFFVKHIFKLEQEQYEKEGITWTNINYVDNQENLNMIGMRPMNLLALIDEESRFPKGTDITLLSKLNSNHSNKNCYIAAKSSREHRFGVRHFAGAVFYEVAGFLDKNRDLLTTDVKEIMFDSNNQFLKGLFASEFTETRNSSRKTISLSNQFKASLDTLMKNLYACHPFFVRCIKPNELKKPRVFDKALCVRQLRYAGLMETAKIRQAGYPIRYTYVSFVHRYRFLIPGIPPAERTDCKSATKKICTEVLKDQEFRLGHTKVFLKDTHDYLLEELRHTIFTTAVIRVQANARRFICRRRFLKMRAAAITIQKHYRARGLRHRFLVMRRGYSRIQAVIKSRELRRTFLHLRSFFRNLQAHCRGYLIRKLVKEKGTLIKAKLLQLKSEKEKLEKSGKDEQFIADDHEKKFTELLRSIWIVKEIAVDDNEQNISAIDDRYVDDVFGFLKDSSTPGGTVRGAGFGVTSTAKPEMSSIIPMPQEYEEEQFDEFNFRKFAATYFSGNTSHQYSRKPLRHSLLELPSPMDKVASQALWITILRFMGDLAEPKYVDDKIDNIPVMTKLTDTIGRAFQKSKEFEEMLIKDGNQNKSRLVSKTLKRQSKLNEVFIKNLLNDETTNEMYSHWLNSRRSTNLEKLHFIIGHGIIRKELRDEIFCQLCKQLTNNPSKTSHARGWILLSLCVGCFPPSERFVKYLRSFIRGGPPGYAPYCEGRLVRTFKNGPRTQPPSWLELQATKTKKPILLTVTLMDESIKTVQSDSASTSEEICQQIADNIGLTDTFGFSLYITLYDKVLSLGSEGEHICDAISQCEQFAKEHGTPEKSAPWRLFYRKEVFTPWHNPAIDPIATNLIYNQVAKGVKFGEYRCNSENDLAMLAAQQHYIEYGSRLDPNVLRKVIVNYIPNQFIQSNDAALTKWEHFVTKAFDSCPNIKSKIDPLRCKEDIVIFAKLKWPMLFSRFFEALKLKGDAISKDIIIVAVNWTGIYIVDQLEHILLEIAYSEVTYVAYDDDTDLENIGKVTIRTIQQEEFVFQSVDAGEMSSLIIYIIDGLKRRSAYVVAQSDSQGYADASSFLQFKKGDLITLLHDSTGETLMNATWGHGACNGQEGLFPTEQVYILPTLEKPSNSVLEVFKKGTVNNDKKPYQYNTVQRKRMHTLEKYAKEYFRENYDVNTTVSRQSTLTTAKKPIAGDLWVHSREPIRKPLLKKIQDDEKLSKNAIAAYYAILKYMGDMPAPKPKSATEYTDEIFKNAISEPALRDEIYCHIMKQLTNNRIQLSEERGWELLWLATGVFACSQVLMKELVEFLKTRPHPIAKDCLKRLFKTQKYGSRMYAPYVVEVEAIQHRSMQIYHKVYFPDDTDEAFEVDSSTKARDLCEQITGRLNLKNSDGFSLFVKIADKVFSVPENYYFFDFVHELVEWMKQTRPVRGGSTQMQMNYQIFFMKKLWINTVPGRDKNADQIFYFPQELPKYLRGYHKTSKQDLVELAALVYRARFGSDQSLLAQISHLLEDFVPSDMIRIQSNSQWKSSIVTAYLQHGNMTESEAKEQFLKKIYQLPTFGTAFFEVKQTSDPAYPEMVIVGINKNGVSLVHPQSRDVLITHPFSQLSNWSSGNTFFHMTMGNFLRGTKILCETSLGYKMDDLISSYIAVLRASLNQNSRG

Summary

Description
Myosins are actin-based motor molecules with ATPase activity (PubMed:16585515). Unconventional myosins serve in intracellular movements: can function in cells as a single-molecule cargo transporter (PubMed:16585515). A very slow and high-duty-ratio motor, may be suitable for tension maintenance of actin filaments (PubMed:16585515). Their highly divergent tails are presumed to bind to membranous compartments, which would be moved relative to actin filaments (PubMed:15579689). Plays a key role in the formation of cellular projections and other actin-based functions required for embryonic and larval viability (PubMed:15579689, PubMed:16585515). Necessary for auditory transduction: plays a role in Johnston's organ organization by functioning in scolopidial apical attachment and therefore to acoustic stimulus propagation from the antenna a2/a3 joint to transducing elements (PubMed:15886106, PubMed:27331610). Interaction with the myosin zip may be important for its function in scolopidial apical attachment (PubMed:27331610). During oogenesis it has Cad99c-dependent and Cad99c-independent roles in regulating the shape and spacing of the follicle cell microvilli which secrete eggshell material such as the vitelline membrane (PubMed:25236597). May be required for the normal expression of Cad99c in the follicle cell microvilli (PubMed:25236597).
Myosins are actin-based motor molecules with ATPase activity. Unconventional myosins serve in intracellular movements: can function in cells as a single-molecule cargo transporter. A very slow and high-duty-ratio motor, may be suitable for tension maintenance of actin filaments. Their highly divergent tails are presumed to bind to membranous compartments, which would be moved relative to actin filaments. Plays a key role in the formation of cellular projections and other actin-based functions required for embryonic and larval viability. Necessary for auditory transduction: plays a role in Johnston organ (JO) organization by functioning in scolopidial apical attachment and therefore to acoustic stimulus propagation from the antenna a2/a3 joint to transducing elements (By similarity).
Catalytic Activity
[protein]-peptidylproline (omega=180) = [protein]-peptidylproline (omega=0)
Subunit
Homodimerizes in a two headed molecule through the formation of a coiled-coil rod (PubMed:16585515). Homodimers motility is approximately 8-10 times slower than that of myosin V, and its step size is 30 nm, which is consistent with the presence of five IQ motifs in its neck region (PubMed:16585515). Interacts with Cad99C (via the cytoplasmic domain) (PubMed:25236597, PubMed:27331610). Interacts with zip and Sans (PubMed:27331610).
Homodimerizes in a two headed molecule through the formation of a coiled-coil rod.
Similarity
Belongs to the TRAFAC class myosin-kinesin ATPase superfamily. Myosin family.
Keywords
Actin-binding   ATP-binding   Cell projection   Coiled coil   Complete proteome   Cytoplasm   Motor protein   Myosin   Nucleotide-binding   Phosphoprotein   Reference proteome   Repeat   SH3 domain  
Feature
chain  Myosin-VIIa
EC Number
5.2.1.8
EMBL
BABH01004805    NWSH01000013    PCG80855.1    KQ460855    KPJ11894.1    KQ459601    + More
KPI93990.1    JTDY01000232    KOB78155.1    AGBW02013271    OWR43684.1    ODYU01012494    SOQ58831.1    KQ971342    EFA03648.1    GECZ01028367    JAS41402.1    NNAY01003312    OXU19644.1    KK853129    KDR10964.1    KK107111    QOIP01000011    EZA58907.1    RLU16549.1    KQ981948    KYN32622.1    FX985580    BBF97914.1    GBYB01009046    JAG78813.1    KQ980322    KYN16600.1    GL887898    EGI69596.1    ADTU01025086    ADTU01025087    ADTU01025088    ADTU01025089    KQ971343    EFA03361.1    KZ288322    PBC28193.1    KQ978023    KYM97974.1    KQ982275    KYQ58443.1    KQ434809    KZC06404.1    GEZM01051100    JAV75175.1    KQ976723    KYM76657.1    KB632357    ERL93472.1    NWSH01000324    PCG77465.1    CM000361    CM002910    EDX05096.1    KMY90323.1    KQ459598    KPI94607.1    JTDY01000998    KOB75157.1    CH916368    EDW02843.1    GEDC01025701    GEDC01023358    JAS11597.1    JAS13940.1    KQ461183    KPJ07555.1    ACPB03003006    ACPB03003007    ACPB03003008    GGFL01002524    MBW66702.1    GGFL01002232    MBW66410.1    GGFJ01000103    MBW49244.1    GGFL01002304    MBW66482.1    GGFK01001239    MBW34560.1    AXCN02000794    ADMH02000481    ETN66322.1    JXJN01023741    JXJN01023742    GGFM01000990    MBW21741.1    GGFK01001253    MBW34574.1    GGFJ01000094    MBW49235.1    GL448450    EFN84631.1    ATLV01014402    KE524970    KFB38675.1    GDHF01032785    GDHF01002196    JAI19529.1    JAI50118.1    GAKP01022340    JAC36612.1    APGK01024675    KB740558    ENN80359.1    GBXI01001246    GBXI01000160    JAD13046.1    JAD14132.1    CH902620    EDV30712.1    CCAG010021883    CH940649    EDW63656.2    CH954177    EDV57994.1    BT132752    AE014134    AET07635.1    AHN54463.1    AHN54464.1    AY069438    BT011332    AAF53435.1    AAR96124.1    DS235811    EEB17358.1    CH933807    EDW11778.1    KRG02912.1    KRG02913.1    DS231876    EDS41979.1    CH480818    EDW51799.1    CM000157    EDW89782.1    NEVH01016296    PNF26019.1    APCN01003381    CH479184    EDW37047.1    CH379058    EAL34422.1    GDIQ01084623    GDIQ01066741    GDIQ01034392    JAN60345.1    GDIQ01072731    JAN22006.1    GDIQ01225775    JAK25950.1    GDIQ01041397    GDIQ01038445    JAN53340.1    GDIQ01175340    JAK76385.1    GDIQ01086171    JAN08566.1    GDIQ01217376    JAK34349.1    GDIQ01114010    JAL37716.1    GDIQ01189883    GDIQ01063185    GDIQ01038446    GDIQ01029350    JAN56291.1    GDIQ01120964    JAL30762.1    GDIQ01072729    JAN22008.1    GDIQ01072730    JAN22007.1    GDIQ01265954    JAJ85770.1    GDIQ01072728    JAN22009.1    GDIQ01120962    JAL30764.1    GDIQ01063186    JAN31551.1    GDIQ01229424    JAK22301.1    GDIQ01223377    JAK28348.1    GDIQ01078025    GDIQ01078022    JAN16715.1    GDIQ01155249    JAK96476.1    GDIQ01101266    JAL50460.1    GDIQ01101267    JAL50459.1   
Pfam
PF00784   MyTH4        + More
PF00063   Myosin_head
PF00612   IQ
PF09379   FERM_N
PF00373   FERM_M
PF07653   SH3_2
PF01398   JAB
PF13012   MitMem_reg
PF00254   FKBP_C
PF00018   SH3_1
PF16087   DUF4817
PF15866   DUF4729
Interpro
IPR036106   MYSc_Myo7        + More
IPR035963   FERM_2       
IPR038185   MyTH4_dom_sf       
IPR008989   Myosin_S1_N       
IPR041793   MyoVII_FERM_C1       
IPR000857   MyTH4_dom       
IPR001452   SH3_domain       
IPR019749   Band_41_domain       
IPR014352   FERM/acyl-CoA-bd_prot_sf       
IPR000048   IQ_motif_EF-hand-BS       
IPR029071   Ubiquitin-like_domsf       
IPR000299   FERM_domain       
IPR027417   P-loop_NTPase       
IPR041794   MyoVII_FERM_C2       
IPR036028   SH3-like_dom_sf       
IPR011993   PH-like_dom_sf       
IPR001609   Myosin_head_motor_dom       
IPR019748   FERM_central       
IPR036961   Kinesin_motor_dom_sf       
IPR018979   FERM_N       
IPR037518   MPN       
IPR000555   JAMM/MPN+_dom       
IPR033858   MPN_RPN7_8       
IPR024969   Rpn11/EIF3F_C       
IPR001179   PPIase_FKBP_dom       
IPR011990   TPR-like_helical_dom_sf       
IPR032135   DUF4817       
IPR031732   DUF4729       
SUPFAM
SSF52540   SSF52540        + More
SSF47031   SSF47031       
SSF50044   SSF50044       
SSF54236   SSF54236       
SSF48452   SSF48452       
PDB
3PVL     E-value=0,     Score=1725

Ontologies

Topology

Subcellular location
Cytoplasm   In scolopale cells (radially organized units in the Johnston's organ), protein is concentrated along actin-rich scolopale rods and more apically near scolopale cell-cap cell junctions (PubMed:15886106). In neurons, protein is concentrated near the basal body where neurons are tethered to the scolopale cell (PubMed:15886106). In germline and associated somatic cells of the ovary, it has a punctate distribution and associates with specific F-actin cell structures (PubMed:25236597). In germline cells, expressed in the F-actin-rich cytocortex of the oocyte (from stage 3, peaking at stages 9 to 10a) and in the cortex of nurse cells (from stage 6) (PubMed:25236597). Expressed in the microvilli and terminal web of follicle cells (PubMed:25236597). High expression at the base of the follicle cell microvilli in the brush border (PubMed:25236597).   With evidence from 10 publications.
Cell cortex   In scolopale cells (radially organized units in the Johnston's organ), protein is concentrated along actin-rich scolopale rods and more apically near scolopale cell-cap cell junctions (PubMed:15886106). In neurons, protein is concentrated near the basal body where neurons are tethered to the scolopale cell (PubMed:15886106). In germline and associated somatic cells of the ovary, it has a punctate distribution and associates with specific F-actin cell structures (PubMed:25236597). In germline cells, expressed in the F-actin-rich cytocortex of the oocyte (from stage 3, peaking at stages 9 to 10a) and in the cortex of nurse cells (from stage 6) (PubMed:25236597). Expressed in the microvilli and terminal web of follicle cells (PubMed:25236597). High expression at the base of the follicle cell microvilli in the brush border (PubMed:25236597).   With evidence from 10 publications.
Cell projection   In scolopale cells (radially organized units in the Johnston's organ), protein is concentrated along actin-rich scolopale rods and more apically near scolopale cell-cap cell junctions (PubMed:15886106). In neurons, protein is concentrated near the basal body where neurons are tethered to the scolopale cell (PubMed:15886106). In germline and associated somatic cells of the ovary, it has a punctate distribution and associates with specific F-actin cell structures (PubMed:25236597). In germline cells, expressed in the F-actin-rich cytocortex of the oocyte (from stage 3, peaking at stages 9 to 10a) and in the cortex of nurse cells (from stage 6) (PubMed:25236597). Expressed in the microvilli and terminal web of follicle cells (PubMed:25236597). High expression at the base of the follicle cell microvilli in the brush border (PubMed:25236597).   With evidence from 10 publications.
Microvillus   In scolopale cells (radially organized units in the Johnston's organ), protein is concentrated along actin-rich scolopale rods and more apically near scolopale cell-cap cell junctions (PubMed:15886106). In neurons, protein is concentrated near the basal body where neurons are tethered to the scolopale cell (PubMed:15886106). In germline and associated somatic cells of the ovary, it has a punctate distribution and associates with specific F-actin cell structures (PubMed:25236597). In germline cells, expressed in the F-actin-rich cytocortex of the oocyte (from stage 3, peaking at stages 9 to 10a) and in the cortex of nurse cells (from stage 6) (PubMed:25236597). Expressed in the microvilli and terminal web of follicle cells (PubMed:25236597). High expression at the base of the follicle cell microvilli in the brush border (PubMed:25236597).   With evidence from 10 publications.
Length:
1989
Number of predicted TMHs:
0
Exp number of AAs in TMHs:
4.7784
Exp number, first 60 AAs:
5e-05
Total prob of N-in:
0.21563
outside
1  -  1989
 
 

Population Genetic Test Statistics

Pi
211.48884
Theta
199.673891
Tajima's D
0.123786
CLR
0.357862
CSRT
0.403329833508325
Interpretation
Uncertain
Peptides ×
Source Sequence Identity Evalue
28556443 VQAPLSLAR 100.00 3e-12
28556443 NDGLEFSDIR 100.00 1e-06
28556443 VIVNYIPNQFIQSNDAALTK 100.00 8e-04
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