SGID Silkworm Genome Informatics Database
Gene
KWMTBOMO06632  Validated by peptides from experiments
Pre Gene Modal
BGIBMGA011695
Annotation
megator_[Danaus_plexippus]
Location in the cell
Nuclear   Reliability : 2.636
 

Sequence

CDS
ATGGAAGCTACGGAGAGTGAAACCGGTGCAAATCATTTGAAAAATGTTTTATCCGAAGCAGAAATCAATAATTTATCCAACAATGTCGTACAGAAAATTAATGACTATATCGAGTCAAAATTTGATGAATATCTGACAGCAAAAGCTCTACATGAAACCAGTAGAGTGCAACTAGGTGAAAAAATCGCCGTTCTTGAATCAGAAGTACTGGAAAAAACGGCCAAGTACGAAGATGCGGCAAAGAAGTTGATTACAGCAGATGAAACTGTAGAAGAACTAGGCAAGCAAGTCGAAACCTTGAAAGCTGAACTTGAAAAAGCTCATGATAAAATAACTCGATTAGAAAATGAAATTATATCTCTGAAAAGTGCTAGAGATTCAGCAGTTGATGAAAGAAATGACTTAACTCGTATTTTGCAAAGGCGTGATGCTGAAATAGAAAGATTGACGACTAATGATACTGCACTCTCGCAACAATTACGAGCAGCTATCGATGCAAAATGTGAAGCATTGGCACTCAACGACGAAATACAAAGCAAAGAATTGTCTTTACAATATCGTGAAAAACGAATAGAACAAGAAAGAACATTGTTAAATTCTCAAATTGCTGGCTTAACAGAAGAAGTTAACAGGCTCACTTCTGAACTGCAAACAGTTAGACTAAACAACACAAGTAGACTGGTGAGCTTGGAAACACAATTAGCTGAAAAGGTTGAAGAACTTAATGCAGCTAATGAAACCATAGTCCAATTAAATGAAATAAAAAAGAATTTAAACGCTCGTGCAGAAAGTCTAGCCCAGAGGCTGGTAGAACAGAGAGATATAGAGAACAAAATGACAGACAATTTTAAAAAGGAATTGGATGCAAAAACGAAGTTAGCAGATTTATTCAAAACAATGCATGATGATGCTGAATCTAAAACACACGAATTAACAGAAGGGATATCAGAATTACAAAAATTATTAAATGAAGCCACTGATAAATATGGAGAGTTAGAAACTAAATACAAGCAGGCAGAAGTAGATCATGAAGAAATGATGGAAAAGAAAAATGAAGTAATATCTTCTTTGAAAAACGAAATAGAACATGCGAATGATTTATTAAAAGCTGCTAATGCTCACAATCTTGACATGGCTTTGAGTGATTTAGCACCATCCGCTGCAACTGCAAGCAAATTATTAAAATCTGGAATGTCACTGACACAAATATATTCACAATTAGTAAAAGTGTCTGATGAATTAAACCAGGAAAAAGAAGAGAACAGAAGACTCAACATTACTATTAATACCATTGTACAAGAATTAGAAGAGAAAGCACCATTATTGCAAAAACAAAAAGCTGAATATGAAGAAGCTTTAGAGAGCAATGCGGCTTTGTCACAGCAAATCGATTCCTTGGTCATGGAGTGTAACCGGCTAAGAGATGATTATAATGAAACTTCAAAGATAGCTAATCACTACAATCGTGAAAATACAAAATTGAAGGGAGAGTTAGCTGACTTAGGTAGACAAGTTTGTTTCTTACTAAAGGAAATAGAACATGTTCGTGGTGGTCTTGTGCCTAATGGTGACCATGATTTATCAAATAATGCATCCAATATATCTAATTCGTCTGACATTAGCTCATCTAGAATAATATCGAAGACATTAGTCACTTTCACCGACATTCAAGAACTACAATCAAACAATCAAAAACTTTTACGTTTAGTACGAGATCTTACAGAAAAACAAGAAGAATTTGAACGTCACAAAGAACAGTTTGAAAGTGGTGAAATGCAAACCAAAATAGAATCATTGAAAAACAGGGTTACTGAATTAACTGAAGCTCAGGATCGTCAAACAAAAATGGTTAACGGACTAATTCGACAACGGGATATGTTTAAAAAACTATACCATGATCATATGAAAGGAAAGCGATGCGAAACTTCTGCTCTAGAAACTCTTGAGTTGGAAAAAAGTGGATCTTTTACAATGGATACATCATCCGAGGATATTAGTAAACCAATTGAAAAAGTTCCGTTTGAAATAAAATACAGAGAGGCCGAAAAGCATTTACAACTTCTAAAAGAAGAATTTAAAACGTATAAAGAAGAGAAAATCACTAATGAGAGGATGCTTTATGAACAAATTGACAACATGAGACAAGAAATTTCGAAACTGACTACAGCCAACAGTAAATGTGCTTCTACATCTGAATACAATAATGAACGATTAAAGATATTGCAAACTAATGTTGCTACATATAAGAAACAAATTGCCTCACTCGAAGATAAAAACAAGGCATATAATGCTACTATTGCAAAGCATGAAGTTTCTCTTCAACATCTGCGTGATGAAGCTCTAAACGCCCAAAGCAAATTAGCAGCTGCAGAAATACAATTGGAAAATTTGAAACTAGAATGTAAATTAATCAAAGATGCTGAAATACGTCTTCAAACTGAAAAAGAAGTATTAAATCGCGAAAGACAAGGTCAGTCATTGTTACTAAAAAATTTAGAACTAATTAAAGCCAGTCTTGAACGAGTTGAAGCCGAAAATCGAGCGAAAATAGAAACAAGATTGGATGAAGCTACTAGAGAATGTTCTGCTTTAAGACGCCGACTGCAAGAAGAACAAGATAGATTTAGAGAATTAGCAGCTCATCTTGAGCGACAAACTGAAATTGCTAAAACACGTATGCAGGAAGAAAAAGAAGCAGCAGATGTTTTGAGGAAGGAAATTACGGAAATGAGACAAGATTGCGTTGAAAAAAATAAAATCAATGAAGATTTGATGAAAAAATTGAAATTTGCACTTGCTCCTAATACAGATGGTTCTTTTGACACCGTCAAAAAAATAAAGGAATTAGAAAATAAATTAATAGATAAACAAAATGAAATTCAGTCACTAAAAGAACAACTGAATGTTGCTAAAGAACATATTAAACAATATTGTGACATCTCAGAAGGGGCAGAAAAAGAACTTAAAACACTGAACAAAGAATATCAGGCATATAAAACTGAGTCCGAAAACAAATTTTTAGATTACAATAGTAAAATACAGCAACTTCAAGAAAAATGTTCCGAATTAGAAGCTGAACTGTCGCTTCATGCTAATGGAGAACACTCGAATAGTAACATTGCTTTGAAAACAGAATTATCAAATGCTAAAGAAGAACTGAAAACTGCATTAGTAAATGTTGATAATTATCGTACGGAGCTCGACAAAGCTCGCGAAGAAGTATCTAAGTTGTCGAATGCAGTACAAAAAGCTGAAGAAAAATATACACATGAAATGATTCTTCATTCTACTGATATTCAAACATTGACTCAAGTAAAAGAAGAGTTGTCCAGAGCACAAAACCAACTTAATGAATTGGTAGCGTTCAATAATAGCACAATCGAAAAACTACAAACTGAAAAATCTTCTTGGTTAGAGAGACAGAAAATACTAACTAGTGAAAATGAACAGCTTACTCACAGACTCAAAGATCTTAATGATCAAAACTCTCTGTTACATGATCAAATTCAAGCTTTAGGGACTCAATTATCAGTTACACATGCGTCTAAATCACAATCAGAAAGCATAAACGAATCTGGTAATGATTCTAATATGAATCTATCAATCAATGAAGATGACATAAAATCATCAGAGCAATTATATCAAATTGTAAAATTCCTAAGAAAAGAAAAAGACATTGCAATGGCTAAATTTGATATTTTGCAAGCTGAAACTATGCGACTTAAATCACAATTAGAAATAGCAGAAAAGCAATTGGATGAAGCTAAGTTAACGTTAGCAACCGAAAGGGAGAAGTCTGAAGTAAGCATTGTGACTGTTAATAAACAATCTGATATTTTAAGAAAAGTTGAAACTTTGAATGCTTTAACGGACAGCAATCGAATATTAAGAGAAGAAAGAGACGCATTATCTCGTCGCGTTGAAGATCTCACTGCTGTCACAAAGGCCTTAGAAGATCAGCTAAATCCATTACAAGAAAGTAATTCCGATTTAATTTCTAAGAATGAAACCTTGCAGTCAGAAAATAATGCTTTAAAAGCAGACTGTGCCAGGTGGCGAACAAGAGTTAATGCTCTAGTCGAACGGGCCAATAAGACGAGCCCAGAAGATTGGAAACGTCTGCAAAACGAGAGAGAAACTTTGGCTAAAATGCTTACAAATGAAAAAGAAAACGTGCGTAAATTAAATGAAGAACTGGGGTCTCTTAAAGCCGACAGAAATAAAATTGAAGAACAATATACTATGCTTTCTCGACAGCAAAATAATCTTGTTGAAGAAAACAGAAAACTGAGTGAAGAAATACAAACACTTAAAGATGACATGTCTAAACTCACTGAAGAATTAACTAAAGTGAAAACAGAACTAACTGCTGTATCTGAAGCAAATAATAAATTGACTGATGAAATTTCCAACAAAGATGCTTTACTGACTGATATCAGAAATAAAGAAATGCAAATTAGAAAGATAGCTAAAAAGTACAAGGCTCAATACGAGGAATTAGTAAAATCAGTGGAGGAGGAAAAGAAAAAGGCTGAAGGTGATGCAGCCGCTGCTGATGCTGCAACAGAAAATACAAAAAAAATGGAAGATCAGTTGTCTGATCTTCAATCTAAATTAGAAACTGAAAAATCAAACAATGAAAAATTAAAACAAGAACTCGAAACTCTTCGATCTGTGAATTTGGATAAAGAAGAAAAAGCGAAACTAGTACTAAAGCAAGCTAAAAATAAAATTGTCCAGTTAACAGAGCAGAAAAATTCTTTAACTAGGGAATTGGATGAATCGCGTACTAAAATCGGTGCAATTGAACAAAGCACCAGAGATGAACAAGACGTGCGCTTGGCGCTAATAAAATCTCAGTACGAAGGGCGTCTTACACGATTAGAAAAAGAGCGCACTGAAGCACAAGCTGAAAAAACTAGAGAAGTTGATGCACTACTGCAAAAAGTCAATATGTTGCAAAGGCAATTAGCCAATCAAGCTTCTGCATCCAAACAACAAGCAACAGCCGAGAAGACCACAACGGAACCTCCAACTGCCAATATAAAACCAATGGCTGGAATCGCGCAACAAAGCGTGACTGCGAGCAGACGCGCAGGAGAAACGCCATTAGCTTCGATCCGTCCTATGGCACAGGTTGGCCCTACGGCTCCACATGATGCGCACACTACCGAGTACATGCCTGCATCCTCATCGCGGCCGCTCACGCGTGCCGCTCTTGCTGCGACTACGGCTCCACCGGAGTCTACTCAGGACATGGATACTGGTGAAGGGAGCATGGGTAGTTCAGTAACAGCCGACAACGTGCAGCCATCTTCCCATTCCCAAGCACCGCAACAGGCGGTAGCGATGGTCATGCCACGAATCGAGCAGCCGAGTGCCATAGCTACCGGCTCAGCGGGCACGTCTCCCAGCTCTGCTGCGACCAGCGCCCCCACGCCTGCCTTGCCTCCTCCCGCACAAGGTACAAGCAGTGCGACGCCCATTTCAGCAGCAACATCGCAAACACCGGGCAGCGTGAGTACGTCACACGCCGCCCCCGGAGTGAGTACGTCACAAACGGCGGCCGGCGTGAGCACGTCGCAAGTGACGGCCGGGGTGAGCACGTCGCAGGCGGCGCCGGGCGTGAGCACATCGCAGGCGGCGGCCAGTGTGTCGCCGCCGCCGCCCGGCGTCACCACCTCGCACCCGCCGCCCGACGCCCGTCCTCCCAAGCGCCGTCTTCAGCCCAGATCTACCGCCACAAAAAGAACAAGAGTCCAGGGATTCGAAAGGTCTGTAGAAGTGGAATATCAAGTACCAACTTCATCACGATGCGATCAAGACGACGAGGGTGTTATTGTAGTAGACTCTGAGGAAGACGACGAACGCTGCACTGGTACCATGTACAGAGAAGGTGAAGAGGATGAAGAAGATGTGGAAGAGGAACAGGAAGTGGAAGGCGCAGACGACGAAGAGGAAGTCGAGGGCGATGACTCTGAGAATACAGCACAACAGGATTCACCTGTGCAGTCCCCAGAGGCGGGCGCCGAGCCCACCCCCGCGCCGCCCGCGCCCCCGCAGCAACAGATCGAGGCCATCAGCTCTGGAACCGAACCAAGTGGCGCCTTGTCTTTAGGAGGCAACGGTGCAGATGACGGCGATGACAGTATAGTTCCTTCAACACCTACGTTGTACGTGCCACGTAGAAATGATGGTTTCGGAGAGGCGGTGGTGTCGCCGGTGGGCGGCGCGGACGCTCGCTTCACGTTCTCCGAGGCGACGGGCGCCGACGCGGCCCCGCTGCAGCACCACGACACGCACGCCGACCTCGCGCCCGCCATGCCGCCCGCCACCACCGACCCTCATCATCGGGGTGAAAGCAGCGAGACTAGGGAATGGGAAGAGTCCCGTGGAGAGGAAGAGGCCGCTGCGGTGAGCTCACAGGGAAGCGAACCTTCATCGCCGCATCAGCAGATAGCAGAAGAAGGTCGCGAGGCGGAGGCTAGTGCACCGGCACGCCGCGCGCCCACGCGGTCTCCGCACTCTCCTCACTCCCATAATCAACGATGGATGAGGGCTGCAGACAGCGAGAGTGGCGCACGTGGACGCGGTATGCGATCACGAGGACGGCCGTCAAGAAGACCTCACAACTACATGAGGTTTTAA
Protein
MEATESETGANHLKNVLSEAEINNLSNNVVQKINDYIESKFDEYLTAKALHETSRVQLGEKIAVLESEVLEKTAKYEDAAKKLITADETVEELGKQVETLKAELEKAHDKITRLENEIISLKSARDSAVDERNDLTRILQRRDAEIERLTTNDTALSQQLRAAIDAKCEALALNDEIQSKELSLQYREKRIEQERTLLNSQIAGLTEEVNRLTSELQTVRLNNTSRLVSLETQLAEKVEELNAANETIVQLNEIKKNLNARAESLAQRLVEQRDIENKMTDNFKKELDAKTKLADLFKTMHDDAESKTHELTEGISELQKLLNEATDKYGELETKYKQAEVDHEEMMEKKNEVISSLKNEIEHANDLLKAANAHNLDMALSDLAPSAATASKLLKSGMSLTQIYSQLVKVSDELNQEKEENRRLNITINTIVQELEEKAPLLQKQKAEYEEALESNAALSQQIDSLVMECNRLRDDYNETSKIANHYNRENTKLKGELADLGRQVCFLLKEIEHVRGGLVPNGDHDLSNNASNISNSSDISSSRIISKTLVTFTDIQELQSNNQKLLRLVRDLTEKQEEFERHKEQFESGEMQTKIESLKNRVTELTEAQDRQTKMVNGLIRQRDMFKKLYHDHMKGKRCETSALETLELEKSGSFTMDTSSEDISKPIEKVPFEIKYREAEKHLQLLKEEFKTYKEEKITNERMLYEQIDNMRQEISKLTTANSKCASTSEYNNERLKILQTNVATYKKQIASLEDKNKAYNATIAKHEVSLQHLRDEALNAQSKLAAAEIQLENLKLECKLIKDAEIRLQTEKEVLNRERQGQSLLLKNLELIKASLERVEAENRAKIETRLDEATRECSALRRRLQEEQDRFRELAAHLERQTEIAKTRMQEEKEAADVLRKEITEMRQDCVEKNKINEDLMKKLKFALAPNTDGSFDTVKKIKELENKLIDKQNEIQSLKEQLNVAKEHIKQYCDISEGAEKELKTLNKEYQAYKTESENKFLDYNSKIQQLQEKCSELEAELSLHANGEHSNSNIALKTELSNAKEELKTALVNVDNYRTELDKAREEVSKLSNAVQKAEEKYTHEMILHSTDIQTLTQVKEELSRAQNQLNELVAFNNSTIEKLQTEKSSWLERQKILTSENEQLTHRLKDLNDQNSLLHDQIQALGTQLSVTHASKSQSESINESGNDSNMNLSINEDDIKSSEQLYQIVKFLRKEKDIAMAKFDILQAETMRLKSQLEIAEKQLDEAKLTLATEREKSEVSIVTVNKQSDILRKVETLNALTDSNRILREERDALSRRVEDLTAVTKALEDQLNPLQESNSDLISKNETLQSENNALKADCARWRTRVNALVERANKTSPEDWKRLQNERETLAKMLTNEKENVRKLNEELGSLKADRNKIEEQYTMLSRQQNNLVEENRKLSEEIQTLKDDMSKLTEELTKVKTELTAVSEANNKLTDEISNKDALLTDIRNKEMQIRKIAKKYKAQYEELVKSVEEEKKKAEGDAAAADAATENTKKMEDQLSDLQSKLETEKSNNEKLKQELETLRSVNLDKEEKAKLVLKQAKNKIVQLTEQKNSLTRELDESRTKIGAIEQSTRDEQDVRLALIKSQYEGRLTRLEKERTEAQAEKTREVDALLQKVNMLQRQLANQASASKQQATAEKTTTEPPTANIKPMAGIAQQSVTASRRAGETPLASIRPMAQVGPTAPHDAHTTEYMPASSSRPLTRAALAATTAPPESTQDMDTGEGSMGSSVTADNVQPSSHSQAPQQAVAMVMPRIEQPSAIATGSAGTSPSSAATSAPTPALPPPAQGTSSATPISAATSQTPGSVSTSHAAPGVSTSQTAAGVSTSQVTAGVSTSQAAPGVSTSQAAASVSPPPPGVTTSHPPPDARPPKRRLQPRSTATKRTRVQGFERSVEVEYQVPTSSRCDQDDEGVIVVDSEEDDERCTGTMYREGEEDEEDVEEEQEVEGADDEEEVEGDDSENTAQQDSPVQSPEAGAEPTPAPPAPPQQQIEAISSGTEPSGALSLGGNGADDGDDSIVPSTPTLYVPRRNDGFGEAVVSPVGGADARFTFSEATGADAAPLQHHDTHADLAPAMPPATTDPHHRGESSETREWEESRGEEEAAAVSSQGSEPSSPHQQIAEEGREAEASAPARRAPTRSPHSPHSHNQRWMRAADSESGARGRGMRSRGRPSRRPHNYMRF

Summary

EMBL
AGBW02009074    OWR51740.1    NWSH01000733    PCG74514.1    ODYU01004854    SOQ45159.1    + More
KQ461190    KPJ07170.1    GDQN01001477    JAT89577.1    JTDY01001049    KOB75013.1    CH477284    EAT44784.1    GFDL01014985    JAV20060.1    GFDL01014998    JAV20047.1    KZ288282    PBC29598.1    DS231862    EDS39775.1    KQ414657    KOC65673.1    NEVH01017474    PNF24179.1    PNF24180.1    KK852855    KDR14914.1    KQ435726    KOX78183.1    JXUM01114220    JXUM01114221    JXUM01114222    GL437703    EFN70082.1    AJWK01025142    AJWK01025143    AJWK01025144    KQ981126    KYN09317.1    GFDF01010553    JAV03531.1    GANO01000133    JAB59738.1    PYGN01001789    PSN32802.1    KQ976395    KYM93098.1    ADTU01020337    ADTU01020338    ADTU01020339    KQ981652    KYN38637.1    KK107238    EZA54644.1    KQ977890    KYM98979.1    GL888190    EGI65458.1    QOIP01000007    RLU20480.1    GL446209    EFN88236.1    KQ982584    KYQ54414.1    KQ971327    KYB28401.1    EFA01249.2    GEZM01034660    JAV83671.1    GBYB01014352    JAG84119.1    LBMM01005740    KMQ91239.1    JRES01000644    JRES01000350    KNC29639.1    KNC32004.1    KA645557    AFP60186.1    GECZ01019874    JAS49895.1    AXCN02000138    APGK01026888    KB740648    KB630779    KB631357    ENN79720.1    ERL83864.1    ERL84255.1    CVRI01000064    CRL05053.1    GAKP01014892    JAC44060.1    GBXI01001826    JAD12466.1    JXJN01000342    AXCM01000496    CCAG010018969    GGFK01001865    MBW35186.1    GGFJ01000038    MBW49179.1    CH933808    KRG04601.1    EDW09339.1    GGFL01000743    MBW64921.1    ADMH02001019    ETN64443.1    CH940648    KRF80307.1    EDW61894.1    GGFL01003440    MBW67618.1    CH916367    EDW02171.1    CH902619    EDV36722.1    CH963849    EDW74097.1    CM000158    EDW90878.1    CH954179    EDV56424.1    GDHC01016095    JAQ02534.1    GDHC01021593    JAP97035.1    CM000071    KRT03030.1    EDY69421.1    UFQT01000142    SSX20815.1    KRT03031.1    OUUW01000001    SPP74679.1    SPP74680.1   
Pfam
PF07926   TPR_MLP1_2        + More
PF00096   zf-C2H2
Interpro
IPR012929   TPR/MLP1        + More
IPR013087   Znf_C2H2_type       
IPR036236   Znf_C2H2_sf       
IPR012934   Znf_AD       
SUPFAM
SSF57667   SSF57667       
PDB
3JBH     E-value=8.84879e-07,     Score=133

Ontologies

Topology

Length:
2215
Number of predicted TMHs:
0
Exp number of AAs in TMHs:
0
Exp number, first 60 AAs:
0
Total prob of N-in:
0.00000
outside
1  -  2215
 
 

Population Genetic Test Statistics

Pi
229.637029
Theta
197.080275
Tajima's D
0.600052
CLR
0.166192
CSRT
0.547522623868807
Interpretation
Uncertain
Peptides ×
Source Sequence Identity Evalue
26822097 HKEQFESGEMQTK 100.00 7e-07
26822097 RNDGFGEAVVSPVGGADAR 100.00 0.003
26280517 TTTAVQFNVPNIVNQVR 100.00 0.003
26280517 IGADVTAIEFITSIGGVGIDGEVAK 100.00 0.007
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