SGID Silkworm Genome Informatics Database
Gene
KWMTBOMO16270  Validated by peptides from experiments
Pre Gene Modal
BGIBMGA013893
Annotation
PREDICTED:_uncharacterized_protein_LOC101743290_[Bombyx_mori]
Location in the cell
Nuclear   Reliability : 1.169 PlasmaMembrane   Reliability : 1.742
 

Sequence

CDS
ATGAAGAGGTTCGATATCGACTTCAAGGGCGTCGAGCAAGACATACACGGAACTTGCAACGTCGACTACTCCGTCCGGGGCCAAGAAGACACCAGCCTCATTCTGGTGAAGAGACGGGATCTATCAGAGTGCACGAACCGATATAAATACATGTCAATACTGCAGACAGTCAGATACGACTTTCAGAGCAAATTTCAAACATGGCCCGTTTTGAAATCTGAAAGCAAATGTCGCATATCGATCGACCATCACGTTTACAAAGCGGTGAATTGTCGAGAGAGGCACCTCTTCGAACCGTTCTCGGGCAAGAACTCCGGAGCTATGACCACAGTGGTACAGGACTTGGTGCTTATTAGTGAGATCAATAAGAGCGACTTTCAAATAATCGCTGCTGCACCTAAGACTTGGGCCGAGATACACAAGCGTTCTAATTTGCTACACCACCACACTACGTATATAGGAGACGACAGCGTAGGTCTAAGGAATGCCAGGGAATTGCTCAAGTTATTATGCTTAGTGAAAGAGACGGGCGACGAGAACTCGCAGCCGAGCGTGGATGTGAACATGGACAGCAGCTCGACTGTGGGGCTGTGGGGTCGGTTCGTGCGCGCCGCCCGACCCTTGGACTTCCCCTCGCTCTCGCAGCTGCTGGCTCGAGCTCCCACCATGTGTGAGATAGCCACAAAACACATGCTGGACGCTCTACCGTACATCGCCAGCACCGGCTCAGTGGAGCTCATCAAAAACATGATAACAGAGGCCGCTATCGACACCGAGACCAGACACGAGTGGCTAATGTCCATGGCAATGATACCGAGACCGAAGCTATCGATGTTGGAGAGTATGTTGGAATTGATCAAAAAATACAAGAACGATAAGGTGGTTAGTTTCACGGTCTCATCAATGGTCCACTCCTACTGCAAGCACAGCGGAAAGTCGTTGCGCGAATGCTGCGAGGAGGAAACGCCGAATAAGATTTTAGAAATATTCCAAAATATAGTGAAGGAGATATCTAAGAAAGGTGCGATCAAGACCCGACAAGATAGGGATAATATCGTGATAGCAATAAAGGCTCTCGGTAACATCGGTGGTTTCAAACTAGAATTCGCCGATGTATTGATGAGTATCATTGGCGACTCCTATCTGCCTGTACCCATACGATTGACGGCCATCGACGCGTTCAGGAGGACGCCTTGTGCGGAAACACGCGAATATTTCTTGGAGACGTACCGCGAGGACTTCGTGAACATCGAGGTCCGTATAGCTTCTTACATCCAGGTGATGCGCTGCCCGGACCTGACCACCGTGAGGACGATATTCCACGCGCTGCGCCACGAGCCGGTTAACCAGGCGGCCACATTCGTGTGGAGTCACCTGAAAAACCTGGGCCAGTCGTCTCTCCCGTCCAGGGTGGAGATCCAGGGTCTGCTGTCCGGGAACACCATGCCGCAGCTAGAGGACAGCCCCGACTTCAGAATGTTCTCGAAGAACTACGAGCAGAGCGTTTTCTTCGACCAATACAACGCTGGTGGAAACTACGAAGCCAATGTGGTGTTCTCACCGGACTCTTACATCCCAAGGTCGCTGTCGCTCAATCTGACTGTCGATATGTTTGGCGAGTCGATCAACCTTTTCGAGATGAAGGCCCGCGCCGAAGGCTTCGAATCGTACTTCGAGAACTACTTCAGCCGAAACGGACCGTTCAGCAAGAGCAATATCATGGAAAAGATCAACAGCATGCGTTTCGCGCGTTCACTAAACGACACTGAGGACGTGAGAAGCAAGATCGACGACTTGGGCTACGAGAACGAAGCTCTCAAACACAGGCTCCCCCTGGCTGAGCTCGGGATCAAGGTCTTCGGTAACGAGATATCGTACTGGAGCGCCGAGGGCGACGACGAGATACGCAAGTCTCTGGCCAGGCTGAACCCGGAGTTGAGGATCATGGAGATCTTGTCCGGAAAGGAAATTTCGTACAACAAAGCATCGTTGTTCTTGGACACGACTTACTCGGTGCCGACCGGATGCGGTTTGCCTTTGAACATGAATTTAATGGGAACGAGCTACGTCAACACTAGGATGTCGGGTACAGTCGAGTACAAAAATTCGCGATCCGGTAACTTGGACTTCGAGGGGAAACTGAGGCCGAGTGTGGCGGTAAACGTGGCTGCCACCATGAGCGTCGTGGCTGGAGGGCTCAGCTCGAGCGGGATCCGCGTCAACTGGCGCCTGTACACCGCCACCGCGGTCGAAGCCCGGCTCTCCGTGCGCGGCCTGGGGCTGCTTAGACTGCACCTCTCCCTGCCCATCGACAAGCAAGAGATCTTTGCCGCCAAGTCGGAATTGATCATACTACACGGCGACAAAGAAATACAGCAAGGTGGATTGAACAAGAACAGAATAGAACAGAATACTTGCAGTTGGTCAACTTTTGACAACGCTGTAGGGATTAAAGTATGCGCTTCCTATCAGTTCCCAAACATGACAAATTTAAGAGACGCACCATACTTCCTAATGAGTGGACCGGCCAAATACATTCTGTCCTTAGAAAAAGCCGATCCGTCAGCTAAAACGTATGCCCTTGAATACAAGTGGGATAGGAATAGTACAAATGACGTCATAAGTTTCTCATTCGATACTCCTGATAGTCAAGAAAAGCGAATGATTAATGCAGCTTTAAGCTTATCGAACACGTCGAGTACGGCGGTGCTGTCGTTCCAGTCGGCCAAAAGCACATTAAAAGCTCAGGCCCTGTACAGGAACCAGCAATACGATAAGTCGTTGGAGGCGAGTTTGGACGTGGACGGGCGGAAACAGTTCGACACTAAGATGTCGGTGAAGCGTTACAACATCAAGAACGGCTACGTTTGGATACCGAACGCGTACTGGGTCGTCGACAACGATCGCGTCGCAGAACTTTCTGGCGTCTTCAAAGTCAAATCTAAAGGCGGCGTGTCCCAGTGCGACATAACAGTGGACTTCCAAACGAAACAGCTGGCCAGTCGCCTCACTGGCTACTACATACTGAACGGCCCCACGCACGGCGCCAACCTCAGACTTGACTACCGGTTCAACAAGAACTCGAACCAGACGATCAAAATGGAGGGCCTATTCACGGAGAAAGCGGCCGGTTACAGACACGACATTTACGCGGAAGTCGAAATGCAATTCACCGCCTATCCCGTATACAATTTTTATTCCGTCTTCAAGAACGTTAAAACTCAAAGTCACGTCGACATTGGCTTCAACGTGAGCTCGTCGAAGAAAGAGAAGGAAGATCCATCGTTTGTACTGAAGTTCATTCGAGTGGATAAGCCCAATGGGGTTAAAATCGACACTGGACTCAATTTACGCCGACCGAAGACTATCGATGTTAAATTTCAATTCGAAGGGATCGGACCGAAGTATACGACTTTAGCGCTTTTGAACTTCAATCCCAAATCAAGAGAGATACTCGTATCGGGATACCTGTTCCTACCCCCCGGGGCTCAACTGTATCTGGACTCTGAATTGAACATGACCCTGCCCACGCTGCATCCTTGCAACATCAAAACGAAAGTTCACGAGAAACAACCTAATGAATACCAGGTGAATTCTGTTGGCATATGGTTCACGGGCGTCGACTTCAATGTAGACGCCTTATACCAGGACCAATCCAAGACCAACATGGCGTCGCATCGTCTGAAAGCGATGATAAACAGCAACCACTTCAAGAACATAGCCGTCGACGGGCGATTCACTCAGGACAACCGACAAGTCACTTTTATAGGAGTGGGTGAATACAACGGAGACATCTACAGAACTCTAATACGTCACGTCGTGCTGTCGGAACAGAATTTCACGACGTACGCCGAATTGGACGTTAATGAGAAGGCATACAGTTTCGATTTGAATGCCGATTTGAACAACAACACAAGCGTCAATCTGGACATACACATCGACGACTTAAGGGACGTCCAGATCTCGTACCACCGCTGGCTGTACGATCACCAGAAGCGGCTGAGCGTGGCCGTGAACTGGGACGCTAACCGGAACCCATCTCAGAAGGTCAGCGTCGACGTGCAGCTCGACAACAAGGGTCCCTGGCACCACGCCGCCCACCTGTCCCTGTACTACCCGGGCAGGATGGTTACCGGCGAACTCGAGGTCCTGCTCAGAGATTGGTTCTGTCAATGGCACGTCCGCATGGGCTGGGCTCACGACGCCAACATCCTGTGGAGGGTGAAGATGTACTCCGAAGCGAAGAATGAGACTGTCTACGCGCTGCTGTCCAGCCTGAGCACGCCCTTCAACGGCTGGAGGGACACCAGCTTCAACGTTATGTGGCGCTACCACGACAACCTCCAGGCCATCAACGGTAGCATGAACTGGCAAGAAGACTACCTATCCTTCAACCTGCTGGCCGACTATCTGTTCAAAACGAACGAATTTTACGGGGAAATAAACGCGGTCGTGAACTCGACTATACCGACGCTACCCAAAGCGGCCGCCATCGCCAAGCACAGAGTTATCTGGAAGAAGAGTGCCGACACGTTGCTAAGTTTTCAGTATAACGAAGAAGGTAAACTTATGATCAATTCGTCGTGGACCCTCGACAAGGGAGAGAAGCAGACCAACGTCACCGGTCGGGTCACACTGCTCACGCCCTTCCAAGGCTACACAAAGGGCTTCCTCCGCACCGAATTCCTATTTGGACACAAACGCGACATCCACGGAATCACGTATCTGGACCTAGAGGAGAAAGTCCTGAAAATATACGTAAACGGTCACATGAAGAGGATCACGAACTGCATGCTGGTAGTCAACGTGACCAGCCCCACCACGGAAATATCGCAGACGACGGCCAGGTTCGGCTTCGTTGAAGCGGACAGGCATTTGGTCGCTATTGTGGTCACACCAAATACTACCACCGGTATCGAAGTTTTCTTGAAACTCCTGTCGCTGCAAGATTTCCACGTATTTGGGCACGTCGCACTCCCCATACAGTACTTGAACAGAGCCATGGTCACCGCGAAGAGAGCCCCGCAAGAGGTCGATTTCCGAGTGGGATGGAACAAGATGGACTTTGGTTTCACCGCAATATGGCACTGGAGGGCGATCGTCGATTTTGTATATTTATACAAACTTTACACACCGTTGGAGGGTTTCGAAGAGAACGGATTGGTATTCAAGAACATTTACGGCAACGGACTGGACACAGAACTATCGATTCGTCTGTCCAAACACAAGTTCGGCATAGCGATCCTGCTAAAGGACAACGGCAAGGGCTTAGTGGACGTCCTAAAGGACAAGATTCAAAACAAATTCGACATGAACTCCGACGTGTTCTTGGAAGACTTCGACACGACCGCCAGGGTGGTGGTCGACACTCTGTACTACCCAACGATAACATTCCACTCGCACATCACTAAGTTTGTGGGGCCGGAGGAGGAGGAGATCGTCCAGGCAAACGCAACGCTTCATCTACCGGATAAACCGCCTATCGTCTTAACCGACGTATTCGTACTAGAGACGTACACGACAATGAGGAACACGCTCAACCTGATAACTCCATTCGAGGCCGTCAGAGAATTAAAGTCCCTGTACACGGTGGACATCATCCTGGGCGAGAGGTTCAACGTCACTTGCCTGGTCCTGCTCTACAACGGAACATACTGGCACGAGATATCATACAAGATATATTACGAGTTCGAGGAGGGCGAGGACGCGACGTACCGCTCGTACGTGGCGTCGGTCGGTATAGCGACGCCGCTAGCCGTGCTGCCCGCGCTCGAGAGCCGCGTGTCGGCCAGGCTCGAGGACGCGCTGTGGAAGATGTCCGCGGACATATCCATGCCCTCCTTCACCATCAACGCGCTGGCGAACCTTGAGCTGGACGACCCGTTCGTGGAGACTTCGGGAAGTTTGAATTTAACATCCGTCTACTTAGAGGACTACTTCATCAAAATGGAATTCAAGAAGGATTTGTCTGACGTCGAGAACATGATCGCTGGTGGGATACAGATCCAGCAGGGCGATCAGAATAATTACCTATTCGCAGACGCGATATGGGGTCCGCCCCCCCAACGTCACGTCCGCTTCAAGTCCCGTTTCGCGCTGCCCCCGGTGCTGGCGCCGTCCGAGCTGAGCTTCTTGTACGGCGAGGCGCAGACCGGCCGCTCCCTGACCGTGGACTTCAGCATCGAGAACGCCACGTACTCGCTGAAGGGAGACCAGCGCCCCACCTCCTTGAGCGTGGCGATGAGCACGCCCCACAGAGGCTTCAGGGCCATGAAAGTGATAGGAGAGTTCCAGGACGATGACGTAGTTGGCTCAATTGTGACCGATGCGAAGGAATACAGTATCACCGGGAAGGTGCTGAGTCGAAATCCTTTAGATCTATCTCTGTCACTCGTGCCGAAAGGACAAGGCGACACGATCAATGCCCGTATCAAATTGGAATCCACAAACACGGCTCGGACTATAACGGCGCATATCAACGGTCCTGTAGTCTGCACGGTGTTCGCCAGAGCTGAAATAGTGGACGCTTACAGCGATATCAACTTTAAGGTCAGCCTCCCAAAAAATAAGAACAAAGAGATATACTTCAAGTCCCGGGTGGATCACTACCCTGGACTTCGGAAGGTGGTCAGTGTGCAGGCCGCCACGCCCCTCGAGAAACTCAGTTTTCTGAAGGCAGACACGGATTTCGTTTTTGGCCCTAAAACTGGATACTTGATTTGTAAGTTCGACTTCCCCGACATGAAGGGCGCGGGAGACTTGAAATGGAGCTTCCTACTAAACGACTTGTTTATCAAGGGGTTAGGACATCAGAACGTACAGGACATACAGAAGAGCGTTGACCTGGATATCTACTACGGCAACCGGACCGGTGCCGATCACCTGCCCAGAACCGACGCTGGCTTCAGAATGGACCTGGATCACATATGGCAGTAA
Protein
MKRFDIDFKGVEQDIHGTCNVDYSVRGQEDTSLILVKRRDLSECTNRYKYMSILQTVRYDFQSKFQTWPVLKSESKCRISIDHHVYKAVNCRERHLFEPFSGKNSGAMTTVVQDLVLISEINKSDFQIIAAAPKTWAEIHKRSNLLHHHTTYIGDDSVGLRNARELLKLLCLVKETGDENSQPSVDVNMDSSSTVGLWGRFVRAARPLDFPSLSQLLARAPTMCEIATKHMLDALPYIASTGSVELIKNMITEAAIDTETRHEWLMSMAMIPRPKLSMLESMLELIKKYKNDKVVSFTVSSMVHSYCKHSGKSLRECCEEETPNKILEIFQNIVKEISKKGAIKTRQDRDNIVIAIKALGNIGGFKLEFADVLMSIIGDSYLPVPIRLTAIDAFRRTPCAETREYFLETYREDFVNIEVRIASYIQVMRCPDLTTVRTIFHALRHEPVNQAATFVWSHLKNLGQSSLPSRVEIQGLLSGNTMPQLEDSPDFRMFSKNYEQSVFFDQYNAGGNYEANVVFSPDSYIPRSLSLNLTVDMFGESINLFEMKARAEGFESYFENYFSRNGPFSKSNIMEKINSMRFARSLNDTEDVRSKIDDLGYENEALKHRLPLAELGIKVFGNEISYWSAEGDDEIRKSLARLNPELRIMEILSGKEISYNKASLFLDTTYSVPTGCGLPLNMNLMGTSYVNTRMSGTVEYKNSRSGNLDFEGKLRPSVAVNVAATMSVVAGGLSSSGIRVNWRLYTATAVEARLSVRGLGLLRLHLSLPIDKQEIFAAKSELIILHGDKEIQQGGLNKNRIEQNTCSWSTFDNAVGIKVCASYQFPNMTNLRDAPYFLMSGPAKYILSLEKADPSAKTYALEYKWDRNSTNDVISFSFDTPDSQEKRMINAALSLSNTSSTAVLSFQSAKSTLKAQALYRNQQYDKSLEASLDVDGRKQFDTKMSVKRYNIKNGYVWIPNAYWVVDNDRVAELSGVFKVKSKGGVSQCDITVDFQTKQLASRLTGYYILNGPTHGANLRLDYRFNKNSNQTIKMEGLFTEKAAGYRHDIYAEVEMQFTAYPVYNFYSVFKNVKTQSHVDIGFNVSSSKKEKEDPSFVLKFIRVDKPNGVKIDTGLNLRRPKTIDVKFQFEGIGPKYTTLALLNFNPKSREILVSGYLFLPPGAQLYLDSELNMTLPTLHPCNIKTKVHEKQPNEYQVNSVGIWFTGVDFNVDALYQDQSKTNMASHRLKAMINSNHFKNIAVDGRFTQDNRQVTFIGVGEYNGDIYRTLIRHVVLSEQNFTTYAELDVNEKAYSFDLNADLNNNTSVNLDIHIDDLRDVQISYHRWLYDHQKRLSVAVNWDANRNPSQKVSVDVQLDNKGPWHHAAHLSLYYPGRMVTGELEVLLRDWFCQWHVRMGWAHDANILWRVKMYSEAKNETVYALLSSLSTPFNGWRDTSFNVMWRYHDNLQAINGSMNWQEDYLSFNLLADYLFKTNEFYGEINAVVNSTIPTLPKAAAIAKHRVIWKKSADTLLSFQYNEEGKLMINSSWTLDKGEKQTNVTGRVTLLTPFQGYTKGFLRTEFLFGHKRDIHGITYLDLEEKVLKIYVNGHMKRITNCMLVVNVTSPTTEISQTTARFGFVEADRHLVAIVVTPNTTTGIEVFLKLLSLQDFHVFGHVALPIQYLNRAMVTAKRAPQEVDFRVGWNKMDFGFTAIWHWRAIVDFVYLYKLYTPLEGFEENGLVFKNIYGNGLDTELSIRLSKHKFGIAILLKDNGKGLVDVLKDKIQNKFDMNSDVFLEDFDTTARVVVDTLYYPTITFHSHITKFVGPEEEEIVQANATLHLPDKPPIVLTDVFVLETYTTMRNTLNLITPFEAVRELKSLYTVDIILGERFNVTCLVLLYNGTYWHEISYKIYYEFEEGEDATYRSYVASVGIATPLAVLPALESRVSARLEDALWKMSADISMPSFTINALANLELDDPFVETSGSLNLTSVYLEDYFIKMEFKKDLSDVENMIAGGIQIQQGDQNNYLFADAIWGPPPQRHVRFKSRFALPPVLAPSELSFLYGEAQTGRSLTVDFSIENATYSLKGDQRPTSLSVAMSTPHRGFRAMKVIGEFQDDDVVGSIVTDAKEYSITGKVLSRNPLDLSLSLVPKGQGDTINARIKLESTNTARTITAHINGPVVCTVFARAEIVDAYSDINFKVSLPKNKNKEIYFKSRVDHYPGLRKVVSVQAATPLEKLSFLKADTDFVFGPKTGYLICKFDFPDMKGAGDLKWSFLLNDLFIKGLGHQNVQDIQKSVDLDIYYGNRTGADHLPRTDAGFRMDLDHIWQ

Summary

EMBL
AB700597    BAN58736.1    KQ459588    KPI97760.1    AGBW02010140    OWR49093.1    + More
KK852702    KDR18107.1    KQ971307    KYB29704.1    KYB29705.1    KYB29706.1    DS232030    EDS32540.1    GEZM01055232    JAV73080.1    AJVK01006586    AJVK01006587    CH477322    EAT43600.1    AJWK01000125    GANO01004605    JAB55266.1    UFQS01002770    UFQT01002770    SSX14646.1    SSX34043.1    CH916368    EDW03099.1    CH940654    EDW57850.2    CH963857    EDW76449.2    APGK01039050    KB740967    ENN76770.1    AE014134    AAS64667.2    UFQS01000034    UFQT01000034    SSW97913.1    SSX18299.1    CM002910    KMY89297.1    ATLV01013476    KE524860    KFB38034.1    AXCN02000729    KA645059    KA645060    AFP59689.1    CH954177    EDV58387.2    CP012523    ALC39054.1    CM000157    EDW88665.2    CH933807    EDW12226.1    JRES01000209    KNC33266.1    ADMH02001599    ETN61902.1    CH902624    EDV33038.1    KPU74268.1    APCN01000637    AAAB01008944    GBYB01005798    GBYB01005801    JAG75565.1    JAG75568.1    KQ434954    KZC12617.1    APCN01000636    AXCM01000090    JXJN01023868    JXJN01020958    CCAG010010262    KK107488    EZA49996.1    EAU76735.2    FX985636    BBF97967.1    GL451753    EFN78662.1    PYGN01000261    PSN49824.1    KQ435794    KOX73997.1    GL888291    EGI63145.1    KQ976474    KYM83950.1    ADTU01004889    ADTU01004890    KQ976948    KYN06912.1    KZ288356    PBC27179.1    KQ759866    OAD62482.1    KQ982656    KYQ52727.1    QOIP01000012    RLU15967.1    KQ980791    KYN13149.1    CVRI01000047    CRK98565.1    KQ981856    KYN34717.1    GBHO01021322    JAG22282.1    ABLF02025947    ABLF02025948    ABLF02025950    ABLF02025951    ABLF02025952    ABLF02025953    ABLF02041568    ABLF02064823    ABLF02065793    GECU01026051    JAS81655.1    GGMS01016261    MBY85464.1    GBXI01005068    JAD09224.1    GBXI01015134    JAC99157.1    GDHF01022632    JAI29682.1   
Pfam
PF06448   DUF1081        + More
PF00094   VWD
PF09172   DUF1943
PF01347   Vitellogenin_N
PF03360   Glyco_transf_43
PF08742   C8
Interpro
IPR001747   Lipid_transpt_N        + More
IPR011030   Lipovitellin_superhlx_dom       
IPR001846   VWF_type-D       
IPR015819   Lipid_transp_b-sht_shell       
IPR015816   Vitellinogen_b-sht_N       
IPR015255   Vitellinogen_open_b-sht       
IPR009454   Lipid_transpt_open_b-sht       
IPR002035   VWF_A       
IPR036465   vWFA_dom_sf       
IPR015817   Vitellinogen_open_b-sht_sub1       
IPR005027   Glyco_trans_43       
IPR029044   Nucleotide-diphossugar_trans       
IPR014853   Unchr_dom_Cys-rich       
SUPFAM
SSF48431   SSF48431        + More
SSF56968   SSF56968       
SSF53300   SSF53300       
SSF53448   SSF53448       
PDB
1LSH     E-value=3.91077e-14,     Score=197

Ontologies

Topology

Length:
2311
Number of predicted TMHs:
0
Exp number of AAs in TMHs:
0.0288499999999999
Exp number, first 60 AAs:
0
Total prob of N-in:
0.00027
outside
1  -  2311
 
 

Population Genetic Test Statistics

Pi
221.354142
Theta
177.936352
Tajima's D
0.79911
CLR
1.171315
CSRT
0.599370031498425
Interpretation
Uncertain
Peptides ×
Source Sequence Identity Evalue
24402669 NMITEAAIDTETR 96.30 1e-12
24402669 VFGAPKPIVK 100.00 7e-07
24402669 NGVIMVQANSAFNHYIK 100.00 9e-07
26822097 SEIIIIHGDKEIQQGGINK 100.00 2e-06
25044914 IEQISPFPYDQVK 100.00 2e-06
24402669 IEQNIQIFDFSITPEEFNIIK 100.00 2e-06
28467696 IEQISPFPYDQVK 100.00 2e-06
26822097 IKIESTNTAR 100.00 8e-06
24402669 VIGATGAYTR 100.00 8e-06
29197581 DGDAIIKPCK 100.00 8e-06
24402669 TISYTDPEKR 100.00 1e-05
26822097 IIEIFQNIVK 100.00 0.007
24402669 AEFFDPDKWADIFVK 100.00 0.007
28467696 AEGDYRDNYSPGWK 100.00 0.007
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