SGID Silkworm Genome Informatics Database
Gene
KWMTBOMO06369
Pre Gene Modal
BGIBMGA011978
Annotation
PREDICTED:_serine/threonine-protein_kinase_SMG1_[Bombyx_mori]
Location in the cell
Nuclear   Reliability : 1.902 PlasmaMembrane   Reliability : 1.595
 

Sequence

CDS
ATGCTATCCGCAACAACAAGTAACAAAGTCAAAAACCTAAAAGGAACGGAAACTTCGATAACTTTAGAACGGGATGATAGTGCGCACGAAAACTCAACGGATGATAAGATCAGAGGTTATGTTAATGCCTACGATTCCCTGCCTGGTTTCGAGGGATCCTCCAGGGATGGACGTTTTCGACCCCGGGGCCGGGTTACTGAATTTCGGCCGTCACGTGGCGGTCGAGGCGGCAGCCGCGGTCGAGGCGGTTTCCCGCCCCGCGGCGAACGGGATCCCTTCGATAATTCCTATAAATATCACGAACCGTTAAATCAGCCCGTGGGTGACTCCTGGTCTCAAGGAAATAACGACAGCACATTTTATGAGCGATCAGATTTAGTTTTGAATTTGCCAGAAGATCCACGCATCTCAAAACTGCTACGGCGTCTTTGTGCTGAAAGTGACGTCGAAAAGTCGCTCGCCATATGTAGAAAACTTCAAGACGCTGTGATGATGCCAGAAAACACTCGATACATACGAAGGTCTTACGAAATTTTGGTGGAATCACTGTTGGATGTGCTTTATGATGGCCCCGGTCCTGAAACAAAGGAAGGCGCTGCTGCAGTGCTCGGAAGAATAGGATATGTAATGGGTCCGGACTTTAGAAAACACCTTGATTGGATAGTAGCTACTTACTCTGTCCATAACAACTCAATCAAACACTTGTTGACATTGTCTTTAACCGAAACATACCAACTGGATTATCAAAATCATGACTTGTCTGAATTTGCAGAACAAACTCTTGACAGACTACAAGTAATAATCGAGGGTACAGACTCAGCTGATGTGTTCATGGCTGCCATTAATGCTATGTTAATCATGTCTAATTCATATCCAGTGCAATTTGCCAATCACTTTGTAGACACTGTAGACATATTGGTTGGTTGGCATGTAGACAATGCCCAACCAAATAAAATTAAACTATTTGCTTTGCAGTCATTGTTTAAATTGAGTAGGCATTGGCAAGCTGATGTGGGATTCTCGGTCAATTTATTGAATCACTTTGTCGAAGATTTGACTGTTCACTCTCTTGATCTGGAGTCTGGAAAAAGTGAAGGAGATGACATACAAAAAATTACATCTTTTTTGAATGTTTTCAACACAGTCGTCAAGAGCTTAGGAAATCTTTTAAGCCCTACGGTCTCACATACTGTCACATGGGTGTTTTTAACAGAAACATTCACAAAAATACTAGAGGTTTTAAAGAAATCACTCAAGGATGATGTGGAATCTGATTTAATATTAGCTGGTAATGAATGCATTTCGTTGCTCCTAAAATATCTGCAGTCTAAATCAACATCTTGTGCTTTAGGTTTGTACCCCTTGATTTATATGGAGATGGAAAAATACCTGCAATTTGATGAGAATGTATGCCTCAGTGTAATTAATTTAGTGTCAACAACAATTAAGGAAATCGCATCTAATCTCCCCATAGAATTTATTGGACAAACAATAGGCCCAGGGTCACTACTGAGACCACTTCGTTACTCTGAGAGTATACTGATATTGAACAGCATTTTGTCAGTGTACAGTAATTTGTTAAACTTGAAGAATATTCCTCTACTGCAAGAGACCTACAAATTTGTGTTGACTGACATCCAGAATGCATATTCGGTCATTTTACCTGAACTATCAATTATAAAAGCAGAATATTTTGAAGAAATTAAAGAAGAACATGCAGAGAAAAATGTAATATTTTATCTTCAATGTTTGTCTGAGCTTGCAAATGCGAGTAATTCTATAATTGGCATGTGGGCACTCCAACCAAGCATCCTGGAACTGCTAGCCATAAAAATGTGTCCGCATAGTGAAATATTAGGTGGTTACAAACCAGCTCTACAATATTCAATACTGTATCTTTTGTACTCACATTGCAAGAAAAATAATCACTTCATAGCTTCAAGTGATTTAATGAGCAATACCCAACAGAGAGCTAGTGATATATTTGGTTTAGCCAATCTGAGTTTAGGAGATGTTTCAAGCTCAAGCCCAACATCTGGTCATCTTGCTGTGATTTTGAATACAATCAGTACGATTTTGGTTGAAGATGTACCAAAAGAAACTTTGGTACTTGTATTGAGCTGGATATCTGATATTTTTTGCCAGCTGGACAAATATTTGCCAATTGTGAGCTTGTGTAATGGCTTTCTAGTTTTGGTAACAAACATGTTGACCTTAGTTCACTGCTTTGATGATGATGTTGTATTGCTAATCATGAATAATTGCCACCATTTACTGAAGAATAAAAGTTTGACTTGGAATCTCATTTTGTTAAAAAAAATAGCAGTATTATGTTTGCTGCATATTGACAATTTTAATAAGAACCTGGCTGATGTTTGTAAGCAAGTACTGTTTGATCTACCTTGGGATATCGTGCAGTTGGAATTAGACAAGCAAGTAGTAAAAGTGTTCACAAGTCGTAAAATGAGTTTGAATATTTTGAATTGTGATACGAAATTCAACTCCTTCAAAGAGTACCTAATGAGAGGAACGTATTGTACTTTGTCACAACAACACTTTCAACCGATCATGAATTCACTATTAGTATCTGTACCAGTGGAAAAAACCTTTATACTTGATTCATTTCTATCCACTTGGCCTTTACAAAATGGAGATACAGATGACAAAAACCAGCTCTTCTTCAGACAGTGTGCAATGACTTTTGATTCTGTTTGTGTTAGCTGGGCACTCTCTGAGGTCGCACAAACATGTGTCTCAGTAAAATTAAGAACAGTCCTGGGAAAGCCACAAGAGACCTTCATGAAAATAGAAGGTGCCTTAAAAACAATGGCAAGAGAGGTTTCATTAACGGACACAAAATACACAAGTAAAAATAGTAATGACTTAATATCCACCATAAAAATGGAGCAAATGAGGTCTTCATGGATTACTGAGTTTATGATATTCTTGGAGAAATATATTTACAATGCAGCTGAAGGTACAGCTACAGTATTACCAGCAGTTAGCAAACCAGTGAAAACATTTTTTCACACTAATTGGTCTACTTGTAGAGAATGGTTAACAAGAGTGCGCCCTGCCGCACTGGCTGTAAGTCTGCATGCAGGACATTTTGGTGCTGCGATATATCACGCCTCTTTGATGTTACAAGCTGCAGCGAATTCTAAAACTAATATTGACATTGAAGCCATAACAATGACTATAGCACGTGCCCTTATTAAAATTGAAGAACCGGAAGTTTTACACGGCTTTTATGTTTGGATTAAAAAGACGTTTGACAAGAAACTTGTTTGGCTAAAAGGAGCTGCAGAACAAGCCAACTCGAGACATGAATTAGCATTAGGCTTCTTCAAGAAATTAAAGAATATCAAGCCGAATGATGCTCAACAAGAGACTATGATCACTTCACTATACAATGACTCTAGATGTCTTAAATTCATAGATGAACAGATTATAGAAAGCTACAAGCATATTCAAAGCTGGGAAGAAATAGAAGAATGGAAGGATATTGACCAACAAAATCCAAATTCACAATGGTACTGTTTATCTGCTCTAAAGATGTTCGAAGAGGATGCGCAAATTCCTGAAAAACTCTGTAATTGGAATGTATTGGAACTCGAAAGTAATGAAATATCTAAAAACAGCTGTTCATACCAAGCATTGTTGAATAAGATAGAATCAACTCTCATTTGCACAGCAGCGAATGTTTATTACAATGATTACAATGAAAAATATGAAACTTTATTGAAAAATTGTCAAGAACTACTAAATTCAGCCACAGAAGAGTTCACCAGAAGTAATTCCATACATTTTTTGAAGGAAATAGCTGTACTACAACTAGCAAACCACGGATTGATGAATGTCGTTAAAAATGGGAAAGTTTTAACAAACCCTTTCAAACCATCTAGCGTGAAAGAACATAAATATGTGACTGAATTGAAAAACCTCAGCAGAGTAGTGTGGTGGAATCAATACTTTACAGATTTGAATGTGACGGAAGAAAATGTTTTCTTCACTGAAAGTCTTCGACTAGACCTTATTAAGAGTGCGAGAAAAAACGCTAACATCATGATGGCTAAAAGGGAACTTCTAAAACATTTTAAAAATAACTCTGCATTCCAGTTGTATCTGGGTGAAGTCGAGAATTTGGAAGAATTGAGTGAAGTTTTGCTTATGTCTACAAATTCATACAATTTAGATATTTGGACTCCTAATAATGCTTGTGCTTTGACCGAACTCTGTAAATTGGCGTATGCAAAAGAAGATACGAAAATGCCAGCAATTAATTTGTGTGCTAGTATTTCGTTTGGATTTTCTCAAAGACTAGCAATGGGTGAACAGAGTTATGAGCTTCGTGAAAGGGGCACTAGGATGCTCTTGACTCTTTCTAAATGGGTTCAGAGTGAAACAGAAAATGTTTTAGACGTTGATTCGCCATTATCAAAACTAGTATCAGCTTTGCCTGAAATTGGCTTAGTGGATAATAATGTTTCCGAGAATGTAATTCCGCTAACGGACTCTGCTGTTGGTAAATTATTGCAATTTGGAGTCAATCAGTGCCCAGGATTGGCCAAAGCGTGGGCAAATTTTGCAGCTTGGTGCTTTAGATGGGGTAGGAAAATGGTCGAATTCAGTTCCAAAACGAGGGAACAATTGACTGAAAATGACAAACTGCAAATCGAAAGCGTTATGATTGGATGTTCTCCTGAAGATTTTGAAGCTGTTTGCGAGATTCTTTCTAAGACTAAAGCTACATGTGATGACGAAGACATAGATTGGAATGAGATTAACACATCGGAAATGATTGAAAGTCAGTTAAGGACCGTGCCGTCGCTCAGTAATGCTTTCCCCGAACATTTGGCGCTCCTAGTCGACATATGGCGACAAGCCCAGAAACGAGTGTTTTCGTACTTCGAATTATCGGCAGATGCATATTTCAAGTTCCTTCAATTGATATGCGCTTCTGACTACATAAACCACAGTGGGGAAAATGCTGTGGTCACTGCTACTTTGAGACTGCTACGTTTGATAGTGAAACATGCCATGGAATTGCAGACTGTTTTAGAATCTGGATTGGCCAATACACCTACACAACCGTGGAAAGTAATAATTCCACAACTATTTTCAAGACTAAATCACCCTGAGACATACGTAAGGAAGTGTGTTTCAGATTTGCTTTGTAGACTTGCGGAAGACACTCCTCATTTGATCACCTTTCCAGCCGTCGTTGGTGCAGTGGAAAACGAGCAATCTGAATTGCCTGAGTTGAATTTTGCTAGATCTTTACTCTCGAACGATGCCGAAAGCTGTGAAGATAATCTTGACCTCCATGATGCTGCTAGCGATAAAGTGGTTAACAACGAGTTGAATTCATGCTTTCTAGACATGGTTGAGACTTTAGCGAATCAGGCTCCCACAACTATACTCCAAGTAAAACTACTGGTCAAAGAGTTGCAAAGAATCAACTTACTATGGGATGAACTCTGCTTAGGAACTCTGGTTCAACATCACTCCGATTTTACTAAGAGGCTAGCGCAGTTGGAAACTGAAGTAACATTAGTGAAGAATAACGAAAATCTATCTGCAGAAGACAAAGAAAAATTAATAAAAGAAAAACATCGCATTATATTCGAACCTATAGTTTTTATTCTTGAACAACTTCAGCACGTGACGTCAGCGAAGCCTGAGACACCACACGAGGTTGCGTTCCAGGCAAAATTTCAGTCACTAATTATTGATGTGATCGACAAGTTAAAGAATCCTACGAATCCTGAAAAACCACAAGAATCGTGGGCTCCGTTTAAGCAGTTACAAATCAAACTCCAACAGAAAGTTAATAAGAGAACTTCTTATATACTGAGGATGTCCGATATTAGTCCAGTTCTCGCTGAAATGAAAAACACGGTTATCACTATGCCCGGTGTACACACAAATCAAAGAACGGTCAGGGTGACTATACGATCTGTAGAAAACAACGTTGCTATTCTGCCAACCAAGACAAGGCCTAAAAAGTTAGTGTTTTACGGTTCCGATGGAAAATCCTACACGTACTTGTTCAAAGGTTTGGAAGATTTACATTTAGATGAGAGAATTATGCAACTGCTATCGATAACCAATACAATGTTGGCGCGAGATTCCGAAAACAACAACAATCAAACATACCGAGCGAGGCATTATTCCGTAATTCCTCTGGGACCCAGGTCTGGTCTCATTAGTTGGGTAGATAATGTAACACCACTTTTTGCCCTGTACAAACGTTGGCAGAATCGTGAAGCCGCCGTTATATCAACCAAAACGAACAAGACTGTCAACGTTTTGCGTCCATCAGAACTATTTTACAACAAACTGAATCCGTTGTTAAAAGAAGCGGGTATTTCTACCGACAACAGAAAGGAGTGGCCCGTGACGATACTGAAGCAAGTACTGCAGGAATTAACCGCAGAAACTCCCCGTGATCTACTGTGGAGAGAGTTGTGGTGTGGTAGCGTGACGCCGGAACAGTGGTGGCAGATGACTCGCCGGTACAGTTACTCTGTTGCCGTGATGAGCACTATCGGATACATAATAGGGTTAGGTGATAGACATTTGGACAATGTGTTGGTGGACTTAACGTCCGGTGAAGTGGTGCATATAGACTATAACGTGTGCTTCGAGAAAGGCAAGACTCTCCGTGTGCCGGAGAAGGTACCCTTCCGGCTGACGCCCAACTTGGTCGCAGCTCTTGGAGTTACTGGAGTCGAGGTGAGTGTTTGA
Protein
MLSATTSNKVKNLKGTETSITLERDDSAHENSTDDKIRGYVNAYDSLPGFEGSSRDGRFRPRGRVTEFRPSRGGRGGSRGRGGFPPRGERDPFDNSYKYHEPLNQPVGDSWSQGNNDSTFYERSDLVLNLPEDPRISKLLRRLCAESDVEKSLAICRKLQDAVMMPENTRYIRRSYEILVESLLDVLYDGPGPETKEGAAAVLGRIGYVMGPDFRKHLDWIVATYSVHNNSIKHLLTLSLTETYQLDYQNHDLSEFAEQTLDRLQVIIEGTDSADVFMAAINAMLIMSNSYPVQFANHFVDTVDILVGWHVDNAQPNKIKLFALQSLFKLSRHWQADVGFSVNLLNHFVEDLTVHSLDLESGKSEGDDIQKITSFLNVFNTVVKSLGNLLSPTVSHTVTWVFLTETFTKILEVLKKSLKDDVESDLILAGNECISLLLKYLQSKSTSCALGLYPLIYMEMEKYLQFDENVCLSVINLVSTTIKEIASNLPIEFIGQTIGPGSLLRPLRYSESILILNSILSVYSNLLNLKNIPLLQETYKFVLTDIQNAYSVILPELSIIKAEYFEEIKEEHAEKNVIFYLQCLSELANASNSIIGMWALQPSILELLAIKMCPHSEILGGYKPALQYSILYLLYSHCKKNNHFIASSDLMSNTQQRASDIFGLANLSLGDVSSSSPTSGHLAVILNTISTILVEDVPKETLVLVLSWISDIFCQLDKYLPIVSLCNGFLVLVTNMLTLVHCFDDDVVLLIMNNCHHLLKNKSLTWNLILLKKIAVLCLLHIDNFNKNLADVCKQVLFDLPWDIVQLELDKQVVKVFTSRKMSLNILNCDTKFNSFKEYLMRGTYCTLSQQHFQPIMNSLLVSVPVEKTFILDSFLSTWPLQNGDTDDKNQLFFRQCAMTFDSVCVSWALSEVAQTCVSVKLRTVLGKPQETFMKIEGALKTMAREVSLTDTKYTSKNSNDLISTIKMEQMRSSWITEFMIFLEKYIYNAAEGTATVLPAVSKPVKTFFHTNWSTCREWLTRVRPAALAVSLHAGHFGAAIYHASLMLQAAANSKTNIDIEAITMTIARALIKIEEPEVLHGFYVWIKKTFDKKLVWLKGAAEQANSRHELALGFFKKLKNIKPNDAQQETMITSLYNDSRCLKFIDEQIIESYKHIQSWEEIEEWKDIDQQNPNSQWYCLSALKMFEEDAQIPEKLCNWNVLELESNEISKNSCSYQALLNKIESTLICTAANVYYNDYNEKYETLLKNCQELLNSATEEFTRSNSIHFLKEIAVLQLANHGLMNVVKNGKVLTNPFKPSSVKEHKYVTELKNLSRVVWWNQYFTDLNVTEENVFFTESLRLDLIKSARKNANIMMAKRELLKHFKNNSAFQLYLGEVENLEELSEVLLMSTNSYNLDIWTPNNACALTELCKLAYAKEDTKMPAINLCASISFGFSQRLAMGEQSYELRERGTRMLLTLSKWVQSETENVLDVDSPLSKLVSALPEIGLVDNNVSENVIPLTDSAVGKLLQFGVNQCPGLAKAWANFAAWCFRWGRKMVEFSSKTREQLTENDKLQIESVMIGCSPEDFEAVCEILSKTKATCDDEDIDWNEINTSEMIESQLRTVPSLSNAFPEHLALLVDIWRQAQKRVFSYFELSADAYFKFLQLICASDYINHSGENAVVTATLRLLRLIVKHAMELQTVLESGLANTPTQPWKVIIPQLFSRLNHPETYVRKCVSDLLCRLAEDTPHLITFPAVVGAVENEQSELPELNFARSLLSNDAESCEDNLDLHDAASDKVVNNELNSCFLDMVETLANQAPTTILQVKLLVKELQRINLLWDELCLGTLVQHHSDFTKRLAQLETEVTLVKNNENLSAEDKEKLIKEKHRIIFEPIVFILEQLQHVTSAKPETPHEVAFQAKFQSLIIDVIDKLKNPTNPEKPQESWAPFKQLQIKLQQKVNKRTSYILRMSDISPVLAEMKNTVITMPGVHTNQRTVRVTIRSVENNVAILPTKTRPKKLVFYGSDGKSYTYLFKGLEDLHLDERIMQLLSITNTMLARDSENNNNQTYRARHYSVIPLGPRSGLISWVDNVTPLFALYKRWQNREAAVISTKTNKTVNVLRPSELFYNKLNPLLKEAGISTDNRKEWPVTILKQVLQELTAETPRDLLWRELWCGSVTPEQWWQMTRRYSYSVAVMSTIGYIIGLGDRHLDNVLVDLTSGEVVHIDYNVCFEKGKTLRVPEKVPFRLTPNLVAALGVTGVEVSV

Summary

Catalytic Activity
ATP + L-seryl-[protein] = ADP + H(+) + O-phospho-L-seryl-[protein]
ATP + L-threonyl-[protein] = ADP + H(+) + O-phospho-L-threonyl-[protein]
Similarity
Belongs to the PI3/PI4-kinase family.
EMBL
BABH01028611    KZ149897    PZC78704.1    ODYU01010366    SOQ55429.1    GDQN01004496    + More
JAT86558.1    JTDY01003478    KOB69498.1    KQ459692    KPJ20434.1    AGBW02014545    OWR41460.1    KK107020    EZA62476.1    KQ435714    KOX79166.1    KQ979275    KYN22035.1    KQ981522    KYN40743.1    KQ978143    KYM96819.1    KQ976445    KYM86128.1    KQ971319    KYB28837.1    KYB28836.1    KQ414615    KOC68709.1    APGK01019725    KB740120    ENN81313.1    KQ760382    OAD60741.1    KQ982775    KYQ50767.1    GEZM01019431    JAV89636.1    KB631607    ERL84633.1    GEDC01022287    JAS15011.1    PYGN01000433    PSN46478.1    QOIP01000004    RLU23717.1    GL434491    EFN74897.1    ADTU01026180    ADTU01026181    KK852999    KDR12657.1    NNAY01000979    OXU25637.1    GL452737    EFN76953.1    GL763174    EFZ20104.1    KZ288204    PBC33161.1    GBYB01010851    GBYB01010852    GBYB01010853    GBYB01010854    GBYB01010856    JAG80618.1    JAG80619.1    JAG80620.1    JAG80621.1    JAG80623.1    LBMM01000708    KMQ97681.1    DS231855    EDS38237.1    GGMR01009303    MBY21922.1    GGMS01015025    MBY84228.1    UFQS01000107    UFQT01000107    SSW99688.1    SSX20068.1    GFXV01002049    MBW13854.1    SSW99686.1    SSX20066.1    ABLF02032469    ABLF02032472    CVRI01000020    CRK90715.1    GFTR01008998    JAW07428.1    AADN05000376    ADON01065093    KK682277    KFQ13112.1    AAGW02057093    AAPN01422258    AAPN01422259    AAPN01422260    AAPN01422261    AAPN01422262    KL896939    KGL83922.1    GAMP01002290    GAMP01002289    JAB50466.1    GAMR01003557    GAMR01003556    JAB30375.1    KL448074    KFO79988.1    KL872115    KGL94559.1    KL226142    KFM09113.1    KB743005    EOB02051.1    AKCR02000042    PKK24550.1    AMGL01068643    AMGL01068644    GAMC01020924    JAB85631.1    KK532820    KFP28519.1    KK424380    KFQ87384.1    LSYS01001700    OPJ87815.1    KL387516    KFP90433.1    KL306680    KFP52292.1    KK561810    KFW01841.1    KK626292    KFV53486.1    KB030624    ELK13562.1    KL225117    KFW67625.1    GABZ01003339    JAA50186.1    GABZ01003338    JAA50187.1    AAEX03004486    AAEX03004487    KL500536    KFO14422.1    KL214745    KFV61553.1    GFFV01000017    JAV39928.1    AKHW03004154    KYO30574.1   
Pfam
PF00454   PI3_PI4_kinase        + More
PF15785   SMG1
PF02260   FATC
PF02259   FAT
PF01329   Pterin_4a
PF17229   SMG1_N
Interpro
IPR014009   PIK_FAT        + More
IPR000403   PI3/4_kinase_cat_dom       
IPR011009   Kinase-like_dom_sf       
IPR031559   SMG1       
IPR039414   SMG1_PIKKc       
IPR016024   ARM-type_fold       
IPR036940   PI3/4_kinase_cat_sf       
IPR018936   PI3/4_kinase_CS       
IPR003152   FATC_dom       
IPR003151   PIK-rel_kinase_FAT       
IPR036428   PCD_sf       
IPR001533   Pterin_deHydtase       
IPR035175   SMG1_N       
SUPFAM
SSF48371   SSF48371        + More
SSF56112   SSF56112       
SSF55248   SSF55248       
Gene 3D
PDB
6BCX     E-value=2.20522e-49,     Score=501

Ontologies

Topology

Length:
2249
Number of predicted TMHs:
0
Exp number of AAs in TMHs:
0.735009999999998
Exp number, first 60 AAs:
0
Total prob of N-in:
0.00076
outside
1  -  2249
 
 

Population Genetic Test Statistics

Pi
207.451817
Theta
181.945636
Tajima's D
0.346266
CLR
0.115475
CSRT
0.470526473676316
Interpretation
Uncertain
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