SGID Silkworm Genome Informatics Database
Gene
KWMTBOMO09613
Pre Gene Modal
BGIBMGA012848
Annotation
PREDICTED:_tetratricopeptide_repeat_protein_28_[Bombyx_mori]
Full name
Tetratricopeptide repeat protein 28      
Alternative Name
TPR repeat-containing big gene cloned at Keio
Location in the cell
Nuclear   Reliability : 2.28
 

Sequence

CDS
ATGTCGCAGAGAGACTTCTCAGAGGTGGAACCAAGTGGCTCCGCGTCCCTCGGAGCGGCGTCAAGAGCCCTCTTCGTGGAGAAGGTCAGGGCTTCGAACGCGGCCTGTCAGGCTGGTGACTTCGCCACCGCAGTAGCTTTGTACACGGATGCACTGACACTAGATCCCGCTAATCACATACTCTACAGTAATAGATCTGCGGCAAGATTGAAACAGGGCCAGTTTGCGGCTGCCCTCCAAGATGCCACCAGGGCTCGAGAATTATGCCCGAACTGGCCAAAGGCTTACTATAGACAAGGTGTGGCACTACAATGCCTCGGGAGACATGGCGAAGCCCTCGCAGCCTTCAGTTCTGGTCTGGGAGTGGAGCCCTCGTCTCGACAACTCCTGGCCGCGCTTGTGGAGGCATCACTGAAATCTCCTCTGCGAGCAACGCTAGAGCCGACTTTCAGGCAGTTGGAGGCTATGAAACTAGACCAGTCGCCTTTTGTGTTGATTTCGGTTGTCGGTCAAGAGCTTCTGGCAGCCGGTCACTATCAGTCTGCCGTGACTGTATTAGAAGCGGCACTACGTATAGGATCATGCTCCCTAAAACTAAGAGGGTCGGTATTCAGTGCATTATCATCAGCTCACTGGGCTTTGAGCCAACTGGACGCCGCCATCAACTACATGCAGCAAGACCTGGCTGTCGCGAAATCACTGGGGGACACGGCAGGAGAATGCCGCGCTCACGGCAATCTCGGGGCGGCTTACTTTAGCCAAGGCTCCTACAAAGACGCCTTGACAGCACATAGATATCAACTGGTACTGGCCATGAAATGCAAGGATACTCAAGCAGCTGCTGCCGCGTTAACCTCCTTAGGACACGTTTACACAGCAATCGGTGATTATCCAAATGCTTTGGCGAGTCACAAGCAATGCGTGCAATTAGTGAAACAAATGGGAGATAGATTACAAGAGGCGAGGGAGATTGGAAATGTTGGAGCTGTGTATTTAGCTATGGGCGAATTCGACTCGGCAGTCGACTGTCATACGCAGCACTTAAGATTAGCGAGACGACTTGGTGATCAGGTTGAAGAGGCAAGAGCGTATTCAAATCTTGGATCTTCCTATCATTACAGAAGAAACTTTTCACAGGCCATTGCCTATCATGAGAACGTTTTAAGGATAGCTCAAAATCTTGGCGACAGAGCCATCGAAGCGAGAGCATATGCTGGATTAGGACACGCAGCAAGATGTGCCGGTGATTACGGACAAGCAAAGAAATGGCACGAACGTCAACTAGACGTGGCATTAGCTGCGAGAGACAAGGTAGGAGAAGGTCGCGCATGCTCAAATTTAGGTATCGTATACCAGCTACTGGGAGAGCACGACGCTGCCCTTAAACTTCATCAGGCACATCTCTCCATTGCCAGACAATTACAGGATAAAGCAGGAATGGGACGAGCATACGGTAATATTGGAAATGCTTACTCAGCGGCCGGTTTCTATGAACAAGCCATAAAATACCACAAACAAGAATTGACGATATCCAAAGAAGTACATGACAGAAGTTCCGAAGCATCAACGCATGGAAATTTGGCTGTCGCATATCAAGCTTTAGGTGCTCATGATATGGCTTTGTTTCATTACAGAGCACATTTAGGAATCGCAAGAGAACTCAAAGACACAGCAGGAGAAGCATGTGCCCTTCTAAATCTCGGAAATTGCCTCTCATCCAGAGGGGAATTCGCTCAAGCCGTTCCATATTATGAACAACATTTAATGCTATCACAAGAACTAGGTGACGTGACAGCCGAGGCTAAAGCCTGTCACTTCTTGGGTTATGCACATTATTGTTTGGGAAATTATAGAGAAGCGGTCAGATACTACGATCAGGACTTGTCATTAGCCAAAGATCTCCAAGATAAAATGAATATGGGCAGAGCGTATTGCAATCTTGGACTCGCCCATCTTGCTTTGGGAAATTTAGAAACTGCTTTAGAATGTCAAAAATACTTTCTCGCAATAGCACACATGACACAGCATCTACAAGGCAAATTCAGGGCCTTGGGCAATATAGGAGATGTACTGATTAAAATGGGTGACGTAGAAGAAGCTGTAAAAATGTATCAAAGACAACTGGGATTCGCTAGACAGGCCCGTGATAGATCATTGGAAGCTGCGGCTTGTGGTGCTTTAGGTCTTGCAAGAAGACTCCAGAGAAGACTGGATGCTGCCTTAGGACATCATACTCAAGAATTGACACTTCGCCAAGAAGCAGGGGACGCTGCTGGAGAAGCCCGAGCTCACTCTCATCTTGGAGCTGTCCATATGGCTTTGGGGCATTATTCACATGCTGCTAGATGCTACCGTGAGCAGTTAGAGAGGGCTCAAGAACTACAAGATTGTGCATTAGAAGCTCAGGCGTACGGAAATTTGGGTATCGCCAAACTAAATATGGGACACTACGAAGACGCTATTGGCTATTTGGAACAGCAACTTGCCATTTTGGAGCGCGTTAACACCCCAACCTGCCAATTAGACAAAGCAAGGGCTTTAGGATCCCTTGGAGATTGTTACGATGCGTTAGGCGATCCTGAAGAAGCAACAAAATATCACGAGCAACACTTAGCTTCTGCATTGAAGTTGAATAACTCGAGGGAGCAAGAACGAGCCTATCGAGGCTTAGGACTTAGCCAAAAATCTGTGGGCAACTTACAACAGGCCTTAGTATGCCTTGAAAAAAGGCTTGTTGTGTCCCATGAACTCGGAGCTCCTGAAGCAAAGGCCCAAGCTTATGGAGAACTTGGTGCTTTACATATTGCCCTTAACAATTTAGAACAAGCTGTGCTGTGTTTGGATCATCAAAAAAATATTGCCAAGGAATTGAACAATCACATAATGGAGGCTGAAGCCTGTCACTCACTTGGCGTAGCTCAACATGCACTCGGAGACCATGCAGCTGCCATAAGACATCATCGGGCTGAACTTGAGTTGGCTCATCGACTAGGACTTACACATCTACAAGCTCGTGCAACTGGAGGCTTAGGGGCGGCCCATGCTTCAATGGGTGCTCACGCAGAAGCAGCAAGGTGGCATGAATCAAGACTCCGTCACGCTACTGCTGCAGGCGACACCCGGGGTCGCGCTCAAGCACTAGCTGATCTCGGCAGAGCGCACCTCGCGATGGGAGCCTGTGGCAGCGCCGTATCGTATCTCCGACAGGCGCTGGCGGCTACTGAAGGACTCACGGATGTTGACGAAGAGGCTAGAGTACGGCATAGACTCGGTTTCGCACTTTGGGCGTCGGGTGAGCTAGAAGAAGCAAAGGAACAGTTGCAGGCCGCTCTAAACGTTTTAGAGTTTGGTAACGAAAAGCACAGGGATAGGAAAGTGGCCGCCCTGTACACTTCCACACAGCATGCCCTACAGAGGATATTAGTTGAGCTGGGCCGTCACCCCGAAGCCCTTGTGGTGGCTGAAAGAGGACGTTGCCGTTCCCTGGACACTGTACCCGAGAAGCAGTCGGGAACCCTCAACCAGATGAACTTAGAGCTTCATACTGCTCAAAGGAACAACGAGGAATCGAGTAAAGAGCGTCCTGAACCTTGGAGTCCATCTAACGTCGAACAAATATTAGAAGTAGTTAATAAACAAAAAGCACCAGTTCTATACTACAGTCTCGCTGCTGGACGGCTCTATGCATGGCTGATGCAGCCACATAAAGGAATTCTGAGGTTCCATCAAATTTCACTGCTAGAAGAAGCTGAAGATAATGATAACAGCTTGCCAGACATCAGTCCAGACGATTTACAATTGAGCAACGGAGGCCTGGGCAAACTCGAGCGGTATATCAGCGAATGGTCCAACTGGCTAAAGACAGCCGAACGCAGAAGCGATGAGGACCAGTGGGATCCAGACGAAAGACCCACTGGACTTACACGAATGATGACTCGGAATCACCTGTTGAACTCTTCTAACTATTCGCTGAGCTCGTTGTTCAGCGTCGGTTCCGTCGGCGGTTCGGTGGCGGGCTCCGTTGCCAGTCTACAAGGCTCTACCAGGTCAAGTGTACACGGGCCGCGCAGAAAACAGCCGTCCTGGCAGGGACCTCCCTGTCTTAGCTCCTTGTACCAAATGCTTCTGGCTCCATTCGAAGACCTGTTACCCGCTTCCTGCAACAACAGCCATGCTTCACACGGGCGCCGCGGCTGCGGGGGCCGACGGGAGATCGTGGTGGTAGTGGAGGGAGCCCTGTACGCGTGTCCGTGGGGGGCGCTGCGCAGTACGTCGGACACCGAGCCCCTGTGCGAGCGTTACGCCCTACTTGCTGCACCCGCACTCCGGCCGCTGCGCCACCAGCGACATCTACGGGCCAGACCCCAAAACGAACAAGGTGGTTCTGGTAACAATAATGCGGACACGGGCATGCGTTGCCTCGTGGTGGGAGCCCCGCGGGTGGGCGGCGCGCGGTGGTCTCCGGCCAACACACAACTCAAGGAGGCCGAGCTTGTCGCGGACATGCTCCGGGTCACACCACTCACTGATTATCAGGCCTCAAAAGAAGCCGTTCTAGCACAGCTACCTCAAGCGGAATGCGTCCACTTCGCGACACACATTTGCTGGAAGTCACCTGCTATTGTCCTGAGCCCCGGAGAAGTGGTCGACTCTCAAGCCAAGCGTCTTTTAAACACAAGTGTTGGTAGTGGACTTGCTGAAACCACCGAAAACGAAGAAGAAAGTACAGAGCTTTCCCCGAGCAATGAAGAATTGCCCCCGGCGTCAGAATTCATGCTGACGGCTGCAGAAATTATAAACTTAAAGATCACAGCCAGATTGGTTATTATTTCGTGTGCTCCATCAAGCGCTGCCCTTCAAGGTTCCACCGCTGAGGAGTCTGAAGACATTGCGCAAGCAGGTGAAGGTATCTCGAGACTAATGAGGGCCTTCTTGACTGCTGGAGCTCAAGCCATTCTACTTACTCTATGGCCTTCTCCCCAAGATACAGCCACCAAGATATTGTATAGAGCTCTTTATTCTGCTCTATTACAAGGAAGCAGGGTTGCCAAAGCTTTAGGTGACGCGATGCAAACCGTGCGTCACACGAAGCACTTCGCTCACCCCGCGCACTGGGCCGGCCTCATGCTGCTCGGGGCTAACGTCCGCCTCAGCAACAAGGTAGCGCTCATGGGACAAGCCCTATGCGAACTAATGGCCACTCCAGATCGATGCCGTGATGCCTTACGAGTATGTCTGCATTTGGTGGAAAAGTCCCTTCAGAGGATCGTGAGAGGACAGAAGAACGCAATGTATACAACACAGAAAAGCATTGAGAACAAGGCCGGCAATGCTACCGGTTGGAAGGAACTACTCATGAGCGTTGGATTCAGATTCGAGCCGGCTGCTAATGGTATTCCATCAAGTGTGTTTTTCCCACAAAGCGATCCTGAGGAACGACTGACCCAATGCTCGGCCAGTCTACAGGCTTTATTGGGTCTAACATCGACTACTCTTCAAGCCTTGTCGAAGCTTATCTCGAACGGAGATGTGGCTGATGACATCATAGGACTAGTCCGGTCCGTCATATCACAGTTTTCGGTGAAAAACTCCGAGAATGAGACCATCGAAGTAGCTGTGAATGTTAGGTTATGGCGTGTGAACGGTTGTCATGAACTATTGGCGTCCCTCGGCTTCGACCTGGCCGAAGTAGGACAAGACGAGGTAACCCTGCGCACTGGTAAAGCTGCAAACAGACGACACATACAATTTGTACTACAGGCTCTTCTTGCGTTGTTCGATACACAAGAAGCACCACGCAGCCTCAGCCTCGAGTCGAGTTCGAGCGTAGAATCATTGGCTTCGATTGACGACGGCGACCTCGAACCACACTCTGACGGAGAGCCCCCACCAAGGCAACATAGACAAGAGAGTGCGTCTTCCGTACCGCCTCCGCCGTTACCGATTGGATCCTGCGGTGGTGCCTTTACTATGTATGTACGAGGGTCGACCACGGAGGTGGGTCGAGGAGAGCCGGATGGTAGGACTGCGCCGCCCCCCGCTCCCGCCCCCGGTCCCAACTCCGCTTCTACAGCCTCCACTGTCCCCCCTCCGCCCCCCGGACCCCCGGCACCACGCTACCGCGGGGAAAGTGACGCCGCGTTCACACCCTCGCCCCCCGCAGCCCCACCGCCCTCCGCCGCACCTCCTCGCGACGTCTCCCTCGCACTCGCACACCAAACTAAAATCCGCACCTTGTACACCAGAAGACCGCCTTCCGATGACTCTGACTGGGAAAACTCCGGTCACGATACCGTACTAAGAAGACGACCTGAACACGCCCATACAAGGTACTTGGATGCCTTCTATGAGCTTGCCACGGCGCAACCGAGGAGGTCGGAGGAGGATAAGGGTGACCAACTGAATCAACCGTCCACTTCAAAACGAGCTCCCAGACCCAAAATGGGAACGAACAGTCGCGATTCTATGGCACACGTGCGACACATGAGCGGAGAACTCACGCCCACCATATCAGAAGTTTATCACGAAAGAAACATCGGGCTTGGCCTCGCGCCCCCTCTAGCTGAGCTCCTTCTTGCCGAAGAATCGAAAACAGAAATGAGGACGGCAAGTTCCAGTGAAAACCTACTACTGCAAAACTTGGAGAAGCTAGGACTCTTAGGAGACACAAGTGAAACAGACGAGAGATGGTGCAGCAACAGCACCTCTAGGCCGTGGCTGTCGGCGCCTCCCTTAGAAACCGACGTACAGGGTTCTAACTTAACCACAGCCGACTTAATTGAACGTCAAACAAAATTCAAGAAAGATGTTAATATCAAAAGAAAAGAAGAAAACCAATACGAATTGAAGTCTAAAGATGAAATGCCCGGACCGAGTGGAATAGAGAAACGTTCTGTGTCTCCATTCTCGGAACTGTCTAGAAGAGATGAAGGGGACGGCAGAAGCATTGCAGATTCGCACTCATCCTACAAAGCTTTGGTCTTAAGTCCCAGAGCCCCGTATTTGCCTGAAGAAGGCGAAACTAGTTTGAGTACGAATATGGAAGGAGGGAAGACCCATCCCAGGCCTCGAAGGTCAGCCGTGTCTAGAGCTAGACCTGCTTATACCACTTTAGATTTTCCATCAACTAAATGA
Protein
MSQRDFSEVEPSGSASLGAASRALFVEKVRASNAACQAGDFATAVALYTDALTLDPANHILYSNRSAARLKQGQFAAALQDATRARELCPNWPKAYYRQGVALQCLGRHGEALAAFSSGLGVEPSSRQLLAALVEASLKSPLRATLEPTFRQLEAMKLDQSPFVLISVVGQELLAAGHYQSAVTVLEAALRIGSCSLKLRGSVFSALSSAHWALSQLDAAINYMQQDLAVAKSLGDTAGECRAHGNLGAAYFSQGSYKDALTAHRYQLVLAMKCKDTQAAAAALTSLGHVYTAIGDYPNALASHKQCVQLVKQMGDRLQEAREIGNVGAVYLAMGEFDSAVDCHTQHLRLARRLGDQVEEARAYSNLGSSYHYRRNFSQAIAYHENVLRIAQNLGDRAIEARAYAGLGHAARCAGDYGQAKKWHERQLDVALAARDKVGEGRACSNLGIVYQLLGEHDAALKLHQAHLSIARQLQDKAGMGRAYGNIGNAYSAAGFYEQAIKYHKQELTISKEVHDRSSEASTHGNLAVAYQALGAHDMALFHYRAHLGIARELKDTAGEACALLNLGNCLSSRGEFAQAVPYYEQHLMLSQELGDVTAEAKACHFLGYAHYCLGNYREAVRYYDQDLSLAKDLQDKMNMGRAYCNLGLAHLALGNLETALECQKYFLAIAHMTQHLQGKFRALGNIGDVLIKMGDVEEAVKMYQRQLGFARQARDRSLEAAACGALGLARRLQRRLDAALGHHTQELTLRQEAGDAAGEARAHSHLGAVHMALGHYSHAARCYREQLERAQELQDCALEAQAYGNLGIAKLNMGHYEDAIGYLEQQLAILERVNTPTCQLDKARALGSLGDCYDALGDPEEATKYHEQHLASALKLNNSREQERAYRGLGLSQKSVGNLQQALVCLEKRLVVSHELGAPEAKAQAYGELGALHIALNNLEQAVLCLDHQKNIAKELNNHIMEAEACHSLGVAQHALGDHAAAIRHHRAELELAHRLGLTHLQARATGGLGAAHASMGAHAEAARWHESRLRHATAAGDTRGRAQALADLGRAHLAMGACGSAVSYLRQALAATEGLTDVDEEARVRHRLGFALWASGELEEAKEQLQAALNVLEFGNEKHRDRKVAALYTSTQHALQRILVELGRHPEALVVAERGRCRSLDTVPEKQSGTLNQMNLELHTAQRNNEESSKERPEPWSPSNVEQILEVVNKQKAPVLYYSLAAGRLYAWLMQPHKGILRFHQISLLEEAEDNDNSLPDISPDDLQLSNGGLGKLERYISEWSNWLKTAERRSDEDQWDPDERPTGLTRMMTRNHLLNSSNYSLSSLFSVGSVGGSVAGSVASLQGSTRSSVHGPRRKQPSWQGPPCLSSLYQMLLAPFEDLLPASCNNSHASHGRRGCGGRREIVVVVEGALYACPWGALRSTSDTEPLCERYALLAAPALRPLRHQRHLRARPQNEQGGSGNNNADTGMRCLVVGAPRVGGARWSPANTQLKEAELVADMLRVTPLTDYQASKEAVLAQLPQAECVHFATHICWKSPAIVLSPGEVVDSQAKRLLNTSVGSGLAETTENEEESTELSPSNEELPPASEFMLTAAEIINLKITARLVIISCAPSSAALQGSTAEESEDIAQAGEGISRLMRAFLTAGAQAILLTLWPSPQDTATKILYRALYSALLQGSRVAKALGDAMQTVRHTKHFAHPAHWAGLMLLGANVRLSNKVALMGQALCELMATPDRCRDALRVCLHLVEKSLQRIVRGQKNAMYTTQKSIENKAGNATGWKELLMSVGFRFEPAANGIPSSVFFPQSDPEERLTQCSASLQALLGLTSTTLQALSKLISNGDVADDIIGLVRSVISQFSVKNSENETIEVAVNVRLWRVNGCHELLASLGFDLAEVGQDEVTLRTGKAANRRHIQFVLQALLALFDTQEAPRSLSLESSSSVESLASIDDGDLEPHSDGEPPPRQHRQESASSVPPPPLPIGSCGGAFTMYVRGSTTEVGRGEPDGRTAPPPAPAPGPNSASTASTVPPPPPGPPAPRYRGESDAAFTPSPPAAPPPSAAPPRDVSLALAHQTKIRTLYTRRPPSDDSDWENSGHDTVLRRRPEHAHTRYLDAFYELATAQPRRSEEDKGDQLNQPSTSKRAPRPKMGTNSRDSMAHVRHMSGELTPTISEVYHERNIGLGLAPPLAELLLAEESKTEMRTASSSENLLLQNLEKLGLLGDTSETDERWCSNSTSRPWLSAPPLETDVQGSNLTTADLIERQTKFKKDVNIKRKEENQYELKSKDEMPGPSGIEKRSVSPFSELSRRDEGDGRSIADSHSSYKALVLSPRAPYLPEEGETSLSTNMEGGKTHPRPRRSAVSRARPAYTTLDFPSTK

Summary

Description
During mitosis, may be involved in the condensation of spindle midzone microtubules, leading to the formation of midbody.
Subunit
Interacts with AURKB.
Keywords
Acetylation   Cell cycle   Cell division   Complete proteome   Cytoplasm   Cytoskeleton   Mitosis   Phosphoprotein   Reference proteome   Repeat   TPR repeat  
Feature
chain  Tetratricopeptide repeat protein 28
EMBL
NWSH01000320    PCG77495.1    ODYU01004296    SOQ44012.1    RSAL01000051    RVE50282.1    + More
AGBW02007651    OWR54983.1    KQ460208    KPJ16603.1    LADI01006439    KPJ20636.1    KQ971345    EFA05041.2    NEVH01006723    PNF36918.1    PNF36919.1    PYGN01000753    PSN41284.1    DS231860    EDS39349.1    AXCM01000194    APCN01000264    ATLV01021098    KE525312    KFB46025.1    AAAB01008859    EAA08203.6    AXCN02001467    LJIG01001566    KRT85374.1    JXJN01014969    CCAG010019609    JRES01001169    KNC24820.1    CH478202    EAT33582.1    GDHF01010307    JAI42007.1    GDHF01010006    JAI42308.1    GBXI01014455    JAC99836.1    DS235237    EEB13728.1    CVRI01000051    CRK99647.1    JXUM01090884    KQ563872    KXJ73136.1    GDIP01071823    JAM31892.1    GDIQ01099965    JAL51761.1    GDIQ01018621    JAN76116.1    GDIP01014812    JAM88903.1    ABLF02025352    GGMS01007443    MBY76646.1    GL438525    EFN68861.1    AJWK01015976    AJWK01015977    GFXV01000454    MBW12259.1    JH431806    GL769034    EFZ10861.1    CH902618    EDV39725.2    KQ982373    KYQ57036.1    KQ978068    KYM97548.1    CP012528    ALC48168.1    GGLE01002824    MBY06950.1    GDIP01183658    JAJ39744.1    NNAY01002138    OXU21959.1    GDIQ01165195    JAK86530.1    HACA01005016    CDW22377.1    GDIP01220806    JAJ02596.1    GDIQ01241119    JAK10606.1    AADN05000505    KB744908    EOA94251.1    AB665284    AL008724    AL121825    AL023281    AL050313    AL035453    AL035397    AL033538    ES313581    BU584912    AB028966    BC016465    AL080174    AL137328    AQIA01007400    AQIA01007401    AQIA01007402    AQIA01007403    AQIA01007404    AQIA01007405    AQIA01007406    AQIA01007407    AQIA01007408    AQIA01007409    JSUE03005226    JSUE03005227    JSUE03005228    JSUE03005229    JSUE03005230    JSUE03005231    JSUE03005232    JSUE03005233    JSUE03005234    JSUE03005235    NDHI03003442    PNJ48949.1    CABD030120620    CABD030120621    CABD030120622    CABD030120623    CABD030120624    CABD030120625    CABD030120626    CABD030120627    CABD030120628    CABD030120629    LSYS01006629    OPJ74905.1    AAEX03014780    AAEX03014781    AACZ04068129    AACZ04068130    AACZ04068131    GABC01005722    GABF01001117    GABD01007537    GABE01007568    NBAG03000026    JAA05616.1    JAA21028.1    JAA25563.1    JAA37171.1    PNI97708.1    OPJ74903.1    AGTO01010311    AAPE02038456    AAPE02038457    AAPE02038458    AAPE02038459    OPJ74904.1   
Pfam
PF13181   TPR_8        + More
PF13176   TPR_7
PF12770   CHAT
PF07719   TPR_2
PF07721   TPR_4
PF02121   IP_trans
Interpro
IPR011990   TPR-like_helical_dom_sf        + More
IPR019734   TPR_repeat       
IPR013026   TPR-contain_dom       
IPR024983   CHAT_dom       
IPR013105   TPR_2       
IPR011717   TPR-4       
IPR001666   PI_transfer       
IPR023393   START-like_dom_sf       
SUPFAM
SSF48452   SSF48452       
Gene 3D
PDB
6HC2     E-value=1.88209e-49,     Score=502

Ontologies

Topology

Subcellular location
Cytoplasm   At interphase, localizes to centrosomes. At prometaphase and metaphase, associated with spindle microtubules and spindle poles. At anaphase, accumulates in the spindle midzone. At telophase, condensed on central spindles. During cytokinesis, condensed on the midbody where it colocalizes with AURKB (By similarity).   With evidence from 8 publications.
Cytoskeleton   At interphase, localizes to centrosomes. At prometaphase and metaphase, associated with spindle microtubules and spindle poles. At anaphase, accumulates in the spindle midzone. At telophase, condensed on central spindles. During cytokinesis, condensed on the midbody where it colocalizes with AURKB (By similarity).   With evidence from 8 publications.
Microtubule organizing center   At interphase, localizes to centrosomes. At prometaphase and metaphase, associated with spindle microtubules and spindle poles. At anaphase, accumulates in the spindle midzone. At telophase, condensed on central spindles. During cytokinesis, condensed on the midbody where it colocalizes with AURKB (By similarity).   With evidence from 8 publications.
Centrosome   At interphase, localizes to centrosomes. At prometaphase and metaphase, associated with spindle microtubules and spindle poles. At anaphase, accumulates in the spindle midzone. At telophase, condensed on central spindles. During cytokinesis, condensed on the midbody where it colocalizes with AURKB (By similarity).   With evidence from 8 publications.
Spindle   At interphase, localizes to centrosomes. At prometaphase and metaphase, associated with spindle microtubules and spindle poles. At anaphase, accumulates in the spindle midzone. At telophase, condensed on central spindles. During cytokinesis, condensed on the midbody where it colocalizes with AURKB (By similarity).   With evidence from 8 publications.
Spindle pole   At interphase, localizes to centrosomes. At prometaphase and metaphase, associated with spindle microtubules and spindle poles. At anaphase, accumulates in the spindle midzone. At telophase, condensed on central spindles. During cytokinesis, condensed on the midbody where it colocalizes with AURKB (By similarity).   With evidence from 8 publications.
Midbody   At interphase, localizes to centrosomes. At prometaphase and metaphase, associated with spindle microtubules and spindle poles. At anaphase, accumulates in the spindle midzone. At telophase, condensed on central spindles. During cytokinesis, condensed on the midbody where it colocalizes with AURKB (By similarity).   With evidence from 8 publications.
Length:
2377
Number of predicted TMHs:
0
Exp number of AAs in TMHs:
0.0214099999999999
Exp number, first 60 AAs:
0.00599
Total prob of N-in:
0.00080
outside
1  -  2377
 
 

Population Genetic Test Statistics

Pi
235.314957
Theta
173.241551
Tajima's D
1.133943
CLR
0.3416
CSRT
0.688815559222039
Interpretation
Uncertain
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