SGID Silkworm Genome Informatics Database
Gene
KWMTBOMO14567
Annotation
PREDICTED:_uncharacterized_protein_LOC105841441_[Bombyx_mori]
Location in the cell
Nuclear   Reliability : 1.822
 

Sequence

CDS
ATGGACAATTGTAAAGAGAAATTACCCCAGGAGGGTACCTCCCGCTCAGCGGGAGGAGAATCCCTCCGTGCCTCCGAGCAATCGGAGGCACGCAGCCCCTCGTATTCTGGGGGGGGCAACAATTGCCAAGATGTAGGAGGCGGTAGCACGAACCGCGAAAGGGAGAGGATCCCGTTCGTGCAACCTGAGCGCTGTGACAGCGCGCTCTCACTACGCTCAACGCGAAGCTCCGCAAGGGGATACGCGTCAAGCGGTCGAGAGTCGCCGCTGTTCCTGCAAGACAGCGTTGGGCGATCTATCAGCCGGAACCAGGCTGAACCAAGGACTCGGAGGAAGCGGAAGACGGTCCAACGACCAGCGACCACCGCTCCTTCCGACTCATCGGAGGTTGAACCCGCGCCCGCCAAATTCATGGCGGTTGAGGAAGGGCCGGTAAACGTTGTGGTGTGTTCGGCCATGGAACGTAGTCAGGAGCTGAGGCTGACTTATAGCATACCAGCTGCTACCCCTTCGGTGCGAACCGATGCCCCCCGCTGTCGGACAGCGGAACGGACCCGAGAAGGTGAGGTTGAGCGGCTGACCCGCTCCCTCATGGAGATAGATCCAGATGACCCCGGAGGAAAGTTTCATGTGCTGAAGGAAATTGTCTCCTCAGTGGCGTCCAAGTCAGGCTCTTTAAAGGGCACGTACGTCCGGGCCCTGAAGTGTGTAGCCGCTACCCTGGAAGTATATCTGGAGGCTTTCCTTCAGCGCACAAGCACGGAGGAGGTAGCCAACCTGCGGTCGCAACTGGAGCGGTTGCACTCAGAAAATGGGGAGCTACGGATGGAGAGCGTGCGTGCGAGAGAGGAGTTGACTGATATGCGTGTGACCCTCGATGGGGTTGTTGGATGCCAAAGCAATTTGACAATTCCGCAACCCCCGCTAGAAGACATTCTACAAGAAAAGGATAAGGAGATCGAGGAGCTGAAGCGGCAAATCACGATCCTGGAGGCTCGCACCTCCAAAGTTGAGCGCGCGAGGCCATTGCTGGCGCACGAGCGCCCCGCGCCTATGTCATCGTCACGTGGAACAGTGGCGGCACCAGCGCCTTCAAAAGCCACAGTGACCAAAGTGGGTGCAGCACCCGCGACGCGCGCTTTGGCTAACTTGGCCGCACCGGTCAAGTCTGCTAGCAGGCGAGTGCATGCTCAGCCCGCAAGGCCGCCGACCGCCGCTCCTGCCCCACTCCAGCCAGCAAAAGCGGGGTCTGGAAGGAGTCGCGCTAAGCAGAAGAAGGGCCTGAACGCCGCCAAGCAGGCGCAGACCCCCCAGCCCCGTCCGCTACCATCCGCCCCGTCCAACATGAACGAGGCGTGGACCACAGTGGTGAGGCGGGGTGGAAGGAAAACACAAACCTCGCTTGACCCTCGGCCCGTCCTTGTGGCCGCCGCTCCCCAGACTATGGGTCGAGAGGCAGCTAGGACAAAAAAGAAAGGGCGGAAGTCAAGGAAACCGCGCGCCCCACGGTCGGCGGCAGTAGTTTTAGAGCTGCTGCCGGCTGCGAAGGAAAAAGGCTTCACTTACGGGGAGGTGATGGCCCGGGCGCGCTGTAGCGTTGATGTAGACGCTATAGGCGTAGAGGGTGGCATCCGAGTCCGGCACACAGCTAACGGGGCTCGGCTGCTTGAATGTCCCGGTGCCGACTCCGGCGCGGCTGCAGACAGACTGGCGGCCCGGCTTCGCGAAGTCCTGCCGGACCCGGAAGTCGTGCGAATCGAGAGGCCCGTCAAGATGGCAGAGATTAAGGTGACGGGCCTGGATGAGTGCGCTACTCAGATGGAAGTGGCCGCCGCTATTGCATCGCAGGGCAACTGCGCCCTCGCACAAGTGAAGGTGGGAGAGCTCCGGAGTTGTTACTCTGGGGCTTTCACCGTGTGGGCGCGTTGCCCCGTGCAGGCGGCCACCCTGTTGGCCACGCCTCCACAAGGTCGGCCTGCCGACTCGCCGGGGAGGCTGCGCGTGGGTTGGGTGATAGCCCACGTGCAGCTGCAGGAGGCACGTCCATGGCGATGCCTCCGGTGCTTTGGCACCGGGCACGGCCTCGCCAAGTGCCCGTCGGCTGTGGATCGCAGCGGACTTTGCTTCCGTTGCTGTCAGCCCGGACACAAGGCAGCCTCCTGCACCGCTGCAACACCGCACTGCGTGTTGTGTGATGCAGCGAAACGGCGGGCCGATCATCGGGCCGGGGGTCCGGCCTGTCTTTCCGCACCCTCCTCCACAAAGAGGAGGCGTGGCGGGAAAAAGAAGAAAAAGTCAGAGGAAGAGCCGGCTGCGTGTGAAACAGCCGGCCCGTCAGTTCCCGCCGCGGCCGTCGGGCCGCAAGGCGGGACGGAAGACGAGGGAGCGATGGACGATCTCCTCGTCCATACCATGGCGGAGTGGTTCATCGACATCGCGATCGTCGCGGAGCCATACTTCGTACCTTCCGACCGGGAGGACTCCTGGGCCGGAGATGTCGATGGCTCCGTGGCGATCGTGATGCGACAGTCGGCGGCGTTACCCCCCCTTGGAATGGTGGCCAGGGGATCTGGAGGTTCGGTCGCGACCTGCGTGCGGTGGAACGGGGAATCACACGTGGACGTATCGTTCGCGTCTCCGTCCGCCGCGCGCCGTGTCTGTGGTTGGCGTGTCCTCGAGGGGGCGGAGACGCTCTCGGATCATCGGTTCGTCCGATTTGAGCTCTCCGTTTCCACCTCGTTGAACGCGCCGGCCGAAGACGCCCGCGGCGAGGAGGAGCTCCCGCGTAGTGCTCCCCGATCATTCCCGCGATGGGCACTGAAGCGCCTGAACAAGGTGCTTGCGGTGGAGGCGGCCACAGTGGCCGCGTGGGCGCCGATGCCCGCGCGTCTAGTGGACGTGGAGTTGGAGGCCGAATGGTTCCGGGGTACGATGCGTCGCGTCTGCGATGCTGCGATGCCCCGGGTCAGCGGTCGCGCTCCGCGTGGCGGTGCGTACTGGTGGACGCCCGAGATCGCGCTCCTCCGAGAGGAGTGCGTGCGGGCGCGCCGCCGAAGCGCCCGCCACCGCCGTCGCCGCCTTCGCGATGCGGACTTCGCGGAGGTGGCGACCCGCCTGCATGCCGACTGCCGTCAGAAGCAGGAGGCACTGCGGCGGGCCATCGGCGAGGCCAAGTCTCAGAGCATGAAGACGCTCCTGGAGACGCTTGACCAAGATCCTTGGGGGCGCCCGTACCAAACGGTCCGCAAGAAATTGCGGCCGTGGGCGCTCCCGGTGACGGAACGTCTCCAGCCTCAGCAGCTGCGGGAGATTGTCTCCGGGCTGTTCCCGCGGATGGAGAGGGGCTTCGAGCCCCCTTCCATGGGCGCGCCACCACGCAGTAGCGTGAGCGGTGATGCCCCTGCTGAGGTGGTCCCTCCGAGCATCTCGGAGGAGGAGATTCGTGCGGCCGTGTCGAGGATGCGGAGGAAGGACGCGGCCCCCGGCCCTGACGGTGTTCACGGCCGGGTCTGGGATTTGGCCTTCGGTGCCCTTGGGGACCGACTCGTGCGGCTCTATGAAGCCTGCCTCGAGTCGGGACGGTTTCCGAAGCAGTGGAAGACGGGCAGACTTGTTCTGCTAAGGAAGGAGGGACGCCCCGCGGACTCACCTGCGGGATATCGTCCCATCGTGCTGCTGGACGAGGCTGGAAAATTGCTCGAGCGGGTGGTGGCCGCCCGCATCGTCCAGCATCTGACGGGGGTGGGTCCCGATCTGTCAGCGGAGCAGTTCGGATTCAGGGAGGGCCGCTCGACCATCGACGCGGTGATGCGCGTGCGTGCCCTCTCTGATGAGGCTGTCGGCCAGGGCGGGGTTGCACTGGCGGTGTCCCTTGACATCGCCAACGCGTTCAACACCTTGCCCTGGTCGGTGATCGCAGGGGCGCTGGAGTATCACGGTGTCCCTGCGTATCTCCGTCGGCTGATCGGGTCCTACCTCGAGGACAGGTCGGTCGTGTGCACCGGGCACGGTGGGGCGGTGCTCCGCTTCCCCGTCCAGCGCGGTGTTCCACAGGGGTCGGTCCTTGGCCCTCTCTTGTGGAACATCGGCTACGACTGGGTCCTGCGTAGCGCCCTAAGTGCTCCTCTTCCGGGTCTGAGCGTAGTTTGTTACGCGGACGACACTTTGGTCGTGGCCCGGGGGAGGGACTTGCGAGAGTCTGCCCGTCTTTCCTGTGCGGGGGTGGCCTTCGTCATCGGCAGGATCCGAAGGCTGGGTCTGGAGGTGGCGCTCGATAAATCCCAGGCCCTGTTGTTTCACGGGGCCCGGAGAGCGCCGCCTCAGGGGGCCCACCTCGTGATCGGAGGCGTTCGCGTCGAGATCGAGGCAACCGGGTTGCGGTACCTCGGTCTCGTACTGGACGGTCGTTGGAGCTTCCGCGCTCACTTTGAAAGATTAGGTCCCCGACTGATGGCGGCTGCCGGCTCGCTGAGTCGGCTGTTGCCGAACGTCGGGGGGCCTGACTTGGTGGTGCGCCGCCTCTACACGGGGGTGGTGCGGTCGATGGCACTGTACGGGGCTCCCGTGTGGTGCCACGCCCTGACCCGCGACAACGTTGCGGCGTTGCGACGTCCGCAGCGCGCGATTGCGGTCAGGGCGGTTCGTGGATACCGCACCGTCTCGTTTGAGGCGGCGTGCGTGCTAGCTGGGACGCCTCCCTGGGACCTGGAAGCGGAGGCGCTCGCTGCGGATTACGCGTGGCGATGCGATCTCCGCTCCAGGGGGGAGCCGCGTCCCGGGGCGGCGGAAGTTCGAGCGCGGAAGCTTCAATCTCGGCGTGCCGTGCTCGAGGCGTGGTCTCGCCGCCTGGCGGACCCCGCCTACGGGCGACGGACCGTCGAGGCGATCCGCCCGGTCCTCTCGGAATGGGTGAATCGCGACCGAGGACGTCTCACCTTCCGGGCGACACAGGTGCTCACGGGACACGGCTGTTTCGGTCGCTACCTGCACCTCGTCGCCCGGAGGGAGCCGACGCCGAAGTGCCACCACTGCAGTGGCTGCAACGAGGACACGGCGGAGCACACGCTCGCGTACTGCCCCGCTTTCGTGGAGCAGCGCCGCGTCCTCGTTGCAAATATAGGACCGGACTTGTCGCTTCCGACCGTCGTGGCTACGATGCTCGGCAGCGACGAGTCCTGGCAGGCGATGCTCGACTTCTGCGAGTCCACCATCTCGCAGAAGGAGGCGGCGGAACGGGAGAGGGAGAGCTCTTCTTCCCTCTCGGCGCCGTGCCGCCGCCGTCGAGCCGGGGTTCGGAGGAGGGCGTTTGTCCAGCTCCAGCCCCTATGA
Protein
MDNCKEKLPQEGTSRSAGGESLRASEQSEARSPSYSGGGNNCQDVGGGSTNRERERIPFVQPERCDSALSLRSTRSSARGYASSGRESPLFLQDSVGRSISRNQAEPRTRRKRKTVQRPATTAPSDSSEVEPAPAKFMAVEEGPVNVVVCSAMERSQELRLTYSIPAATPSVRTDAPRCRTAERTREGEVERLTRSLMEIDPDDPGGKFHVLKEIVSSVASKSGSLKGTYVRALKCVAATLEVYLEAFLQRTSTEEVANLRSQLERLHSENGELRMESVRAREELTDMRVTLDGVVGCQSNLTIPQPPLEDILQEKDKEIEELKRQITILEARTSKVERARPLLAHERPAPMSSSRGTVAAPAPSKATVTKVGAAPATRALANLAAPVKSASRRVHAQPARPPTAAPAPLQPAKAGSGRSRAKQKKGLNAAKQAQTPQPRPLPSAPSNMNEAWTTVVRRGGRKTQTSLDPRPVLVAAAPQTMGREAARTKKKGRKSRKPRAPRSAAVVLELLPAAKEKGFTYGEVMARARCSVDVDAIGVEGGIRVRHTANGARLLECPGADSGAAADRLAARLREVLPDPEVVRIERPVKMAEIKVTGLDECATQMEVAAAIASQGNCALAQVKVGELRSCYSGAFTVWARCPVQAATLLATPPQGRPADSPGRLRVGWVIAHVQLQEARPWRCLRCFGTGHGLAKCPSAVDRSGLCFRCCQPGHKAASCTAATPHCVLCDAAKRRADHRAGGPACLSAPSSTKRRRGGKKKKKSEEEPAACETAGPSVPAAAVGPQGGTEDEGAMDDLLVHTMAEWFIDIAIVAEPYFVPSDREDSWAGDVDGSVAIVMRQSAALPPLGMVARGSGGSVATCVRWNGESHVDVSFASPSAARRVCGWRVLEGAETLSDHRFVRFELSVSTSLNAPAEDARGEEELPRSAPRSFPRWALKRLNKVLAVEAATVAAWAPMPARLVDVELEAEWFRGTMRRVCDAAMPRVSGRAPRGGAYWWTPEIALLREECVRARRRSARHRRRRLRDADFAEVATRLHADCRQKQEALRRAIGEAKSQSMKTLLETLDQDPWGRPYQTVRKKLRPWALPVTERLQPQQLREIVSGLFPRMERGFEPPSMGAPPRSSVSGDAPAEVVPPSISEEEIRAAVSRMRRKDAAPGPDGVHGRVWDLAFGALGDRLVRLYEACLESGRFPKQWKTGRLVLLRKEGRPADSPAGYRPIVLLDEAGKLLERVVAARIVQHLTGVGPDLSAEQFGFREGRSTIDAVMRVRALSDEAVGQGGVALAVSLDIANAFNTLPWSVIAGALEYHGVPAYLRRLIGSYLEDRSVVCTGHGGAVLRFPVQRGVPQGSVLGPLLWNIGYDWVLRSALSAPLPGLSVVCYADDTLVVARGRDLRESARLSCAGVAFVIGRIRRLGLEVALDKSQALLFHGARRAPPQGAHLVIGGVRVEIEATGLRYLGLVLDGRWSFRAHFERLGPRLMAAAGSLSRLLPNVGGPDLVVRRLYTGVVRSMALYGAPVWCHALTRDNVAALRRPQRAIAVRAVRGYRTVSFEAACVLAGTPPWDLEAEALAADYAWRCDLRSRGEPRPGAAEVRARKLQSRRAVLEAWSRRLADPAYGRRTVEAIRPVLSEWVNRDRGRLTFRATQVLTGHGCFGRYLHLVARREPTPKCHHCSGCNEDTAEHTLAYCPAFVEQRRVLVANIGPDLSLPTVVATMLGSDESWQAMLDFCESTISQKEAAERERESSSSLSAPCRRRRAGVRRRAFVQLQPL

Summary

Pfam
PF01421   Reprolysin        + More
PF14529   Exo_endo_phos_2
PF00078   RVT_1
Interpro
IPR000477   RT_dom        + More
IPR024079   MetalloPept_cat_dom_sf       
IPR005135   Endo/exonuclease/phosphatase       
IPR036691   Endo/exonu/phosph_ase_sf       
IPR001590   Peptidase_M12B       
IPR001878   Znf_CCHC       
IPR036875   Znf_CCHC_sf       
SUPFAM
SSF56219   SSF56219        + More
SSF57756   SSF57756       
Gene 3D
PDB
6AR3     E-value=4.30934e-05,     Score=118

Ontologies

Topology

Length:
1775
Number of predicted TMHs:
0
Exp number of AAs in TMHs:
0.01196
Exp number, first 60 AAs:
0
Total prob of N-in:
0.00003
outside
1  -  1775
 
 

Population Genetic Test Statistics

Pi
0
Theta
0
Tajima's D
0
CLR
113.984127
CSRT
0
Interpretation
Uncertain

Multiple alignment of Orthologues

 
 

Gene Tree

 
 
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