ASFVdb The African Swine Fever Virus Database
Strain
Zambia_LIV_1983 (Region: Zambia;  Strain: LIV_5_40;  Date: 1983)
Gene
pK421R
Description
Annotated in NCBI,  K421R
GenBank Accession
Full name
Uncharacterized protein K421R       + More
 

Sequence

CDS
ATGTACACGCATGTTGTTGTTGTCGGAATACCTGTAGCCTCAGCGGCCCTCTACGTGCAAAAAGATACGGATCGCTACTTGGACGTGCTATCAACCATCGAAAACTTTATTTACCAACACAAATGCATCATATCAGGGGAAAGCGCCCACCTACTTTTTTTACAAAAAAATATTTATCTTTACGAATTTTACTCCAACAATGTGGCGGAGCACAGCAAGGCTTTGGCGACCCTGCTTTACAAACTTGTTCCGGAATACCTCACTCGTCACAGTACTCATCACCAAGATTCCCAACCATTGGTATGTGTTTATCGTACATCAGCGAGAATTTGTGCGCCTATATGCCATCCCGGCAGTTATACAACACTTACCGATTCCCATTTTACCCTTCTATTGCACCAGCGCACTCACCCAGCAAGAATTGTTTTGTTTACGACCTGTACTGCAGTTATTACAAATATATTCCAAGCTCTGTATCCCCAACTTTGTCGAGGAATGGCCTACGTTGCTCGACTACGAAAAAAGCATGCGGATGTTATTTTTACAACAGTTTCCGCAAAGATTGGAAATGTCGGGCGGGAAGAAGGAGGAGGAAAAGCAGGAAAGTATCATTACAAAAATATTACTACAAATGGTTTCTACCCGTCAGCGAATCGTTGTTGGGGGTTACATACAAAAAAACCTGTACAACCATGTACTCAAGAATACAAATCGTTTACAGCTTATTACGAGCTTACATATTTATGTAGAAAAAGATATCATCCAGCAATTTTGTGTTTCAAATGGACTGTAGATCAAAATACGTATCAACAATCCGCTCTTGCCTACAAATCCGGAATTACGGCGTTTGTCTATTTATTTTATTGTTGTTGTTCAGTCATATCTATTACTACATATGTACAACACGGGAAGCTATGTGCTACTGCCTACAAATCAGATATACTCGCTTGTTGGCAGCTTTTTATTACGAACACCCTTCGTGCAAGCGCGATTTTTGTTGGTACAGATCTGGGTGCTTATGCTTATTGCGCAGCAAACTACAAAGGACACCAAAAAAATATTACAATTTTTTATATATCAATATGCAATGCTTATGTATACTCCTTGGCCCAGTATGGAGGCCCTTTTTCCCTCAAGCAGTACAAGATATTTACGCAACTATGTACACCCTATCGCGCTCATATACTGGGCACAACTCAAATTACAAAGAATACCGCCTTTTTATCCCGGAAAGCCGGATGCAGAATCATGTTAAGCCGATTGAAAAATCATGTTACGCTGGTTGCAAAATCATGTTATGCCGGTTGCAATACTCTTTGTATTATTATCATTGGCCGCCCGCATTTCGTGTTGCAATACGATGGAAGAGCGACGGCTATCTACCATGCCGATATCGGCCTGGACATCACAGTTCATGCACTTGTACATGGGATGTCTCGCGTTATACATGGCACACAGTTTCTACAGATGTACGAGATGCAGCCATCTGTGTCGTCGTGCGATTTTTCTATGTTGGTTTGCATGGCGCCCTGCGCCGTATGCACCCAATGCTCCATTTCTCCCAGACGAAGACCTCCGTGCGATCGTTTGCCGTCCAACGGCTGGCCTGTGTGGGCATCCGTGGGCCCATACCTTGCAACGGCGTATCGGTCATCCAGCACAAATTTTTGCAGGCGCTGGTGTTACGTCGGTCCTATGCAGATGGCCGCATCAAAGTACTCGCCGGTCTGGCCGTTGCACATTTTTTGGCATCCATTGCAGCGTACACCTTCTTGCGCCAGTCTTTCTGCAAGAAGCTGCACGTTATTACGTACGAATGCGGTGCCGTCTGTTACCACCCCCTGTACAGCATTTGCTACACCAACCGTGGTTTCTATCATTTGTCCGTTGGTCATTCGGGAGGGATGTGTGTGGGGGTTTACAATGTGGTCGGGCTGCAGTCCGTCCTCTGTGTACGGCATGTCTGTACTGGGCAGGGCCAGCGCCGCAATGCCCTTGTTCCCGCTGCGAGAACTCATCTTGTCGCCTATATTGTGTTTTCTTTCATACCGCAAGCGCATGTGGCCAAAGATCTCGTCATTACGCCCATGGGGACGCATCACAGCATCCACGACGGCCGGCTCATCGAAGCCGTACATGTCAGACCGGTCGATGTATTTGTTGTGTTCGTCTTTTTCGCCCCGTATTTTGGCCACTTTTCCTATGTTGTTGTCGCCCTTTTTGTCTACTGTTCCCACGGGCACAAACCCATCTACAAGCTTTTCGTATTTGGCACCAGGCTTATGTTTTTTGGTGTTTATACGGTCGGGCTTTCCAAACGACTCTATATCGCTTTCTATTTCTACTTTTTCTTCTCGGTACAAGGTGCCGGCAAAGCCGCCCCTGTCAATATACGATTGCGACACGATCACAGAGTCCTCCTGTTTGTACCCGCCGTACATCATATACGCCACAATGGTATTACGCCCGTTGGGTATGTCATACTTATGTGCTATGGTCTTTACAAGCGGCATTTCATTGTACAACTGGAAGAAACGGTTCATGTCGACACGATATGGCCAGCTATACCAATACCAGCCCCCCGTTTGTCGGCCTTGGTTTGTTTCATACGTATCACGCGCAGGTTGGGTACAGTTTGCGTACGGGGACACTACGGCGGCAAGGCCCAAAATACCTTGGGGCACGTCCACGTGTGTGCAACGACGCGTTACATCATGTTTGTACTTGCGTACCTCGATGTTGGAGAAGGCAACAAGACAGTTTTCCGCTTCTTCGGGGGTATTGTACTCACAGATGCCCTGCGCTACGAGATCTTCAAGTGTATGCGTTCCGGCTACAATGTCTTTTGCCATTTGTGTCGTATATCGCGTATTTTGTATGCAAGGGATTTTATGTTTTTCCCAGTCTTTATCGCCTTTTTTTCTGGCTTCTGCGGCCTTGTACCAGGCTTGTTTGTATTTTTCAATATTATTATCTACAATGTGTACGGGGCGGGTCAGCCTGCCGACGTCCAACCAGAATTCTACTTCGTCTACCATGCTATCCCAGTACATGGTGGTATGGGGATGCACAATCTTGCCCTCACGGCGAAGCATTCTATACCGCTGTGCAAGCTCAAAGGCGTTGGTGCAGCAGCCAATCCATTCTCCATTGTTATATACGCGCGCTACGCCCTTTCGTACAATGTCCTTGTTGGAAACATCGGCTATCTGTTGCATGGCCGGATCTGTTACAAGGCGTTGTTTTATCGAAAGTACTTCTCCAGCGGTACAGACATTGGCGGTATTGGCTATCTGTTTGGACATACCTACTTTTTCACCAGTATCGGCTGTCTGGGCTACGCAGATGTATCCAGGATATGTTGCGTGCACGCGACGCATCATGTCAGCCCTTTCTGTTTGTTTGGATGCGTTGGTGGTGTTATGTGTATTTACCGTACGCAACGCTGCAATCGTGTTTATTATATTTTTTCTTTCCAAACTTTGTGTACATACTCTGTTTACAATGGGGCGCTGTCGCACCATGTTGGTTTTATTTCCTGCAATGTTACACTGTTCCATACTGCGATTGTGTTCGGAGGCGGTATTTTTTGCTATACCGGCAGAAAATGCCTCGATATTGTTTCGCTGGGTATGCTCCTCAAAGGCTGTTTGTTTATGTACTTCTTTGCACCCATTGTTGTTGGGTGCTATCACGGATGTACTACAAATACCCTTATACGCCTTACCAAGCGATACCCCTGTGCCGTGCACTCGCTTGGTGCGATATCTATCACGGTCCGTGGGTGGAAACACATTCATATTGCCAAGAAGTATTTTATGCATATGCAGGCCTACAAAGCGTACTTTTCGTACACGTGTATCTGCGGTTTGGCCCATGTGTGGCAGCAATATTTTGTCTACAATACTACGTTGTCTTTCATTCAAGTATTGTACCGCATTTTCATCGCTTTTGTACGCAGATGGGTTTGTGTCAAATTTGGAAACCTTCTCAGATACAAACTGGATATTTTTTTCTCGGTTCAGCTCGTGTTGGACCGGTTGCAATATGGGGTCTACAACATGCATGGATTTTTCCAGAATTTCTATCATGTACGTATTCACAGGGGAGTTGGATTCCAGATCGAATACCACTTGCTCAATGTTGCTGTCATCGCCTGTCATTCCAAACATGCGAAAGATGTGTTACCAAGGTATGCGAAGTTTTGTGCACTTGGTGCTATTGTTTTCAATGGTATTGGCGCCGGTGGTCATGTACCGTATATTATTTTGTGTGCTATTTTCGAAGGCACCTCCTGGTTGTGTGTTATACTCGCCGCGAATGTTTTCATTATTCCCTTGTTGCATGGTATGGTATTGGATGTGCAGCGTGTTATACCGGATGTTTTCTATGCGGTCTACGACCCATTCCCCACCTCGGGCTATATACTACCCGCCGGGTTCATTACGGTCTTCTCCTATTTCTTTTTTTGCGGTTTTTGTTACGTGTTGTGTGTGGCAGCGGTTGCTGCCCCGCATGTTGGGAAATGTGGACACCTGCAATGGAGGAATACTTGCTCGTTTTACCTCCTGCCGACCATTGCTGTACTGCGCCGTTACAATATCCTCGGCGGCTACATTATCAGGGCCCGAATACGAAAGGCCACACAGGCGTGCCTTATTACGTACTATATTTATCTTGTTTCCCTGCGAATACTTTCGATGTTGCGGGCGTTCAATGTTCACATCTGTATACTTATATTGGATCTGCACCGATTCCCGAAGCTTATCTATTTCAGTATGGTCGCGTTGGTCTTTATACGTATTATCCACGTTATACATTTGTTTTACAATTTGCGGAATTCCATTGTCCATATGTTCGTCAAAGCTTTTGTTGTTATACCCTATCAATCCGGTACAGTTTACTGCGGCGGAGATATACCTCAGCATATCAGCCTCTGTATGCTCCTCATTATCCACGGTTTCAATGGGGCCGTACGTTATTTGCGGCCGCAAGGGTTCCATGTTTATGAAGTACTACATTAATATTCAGTTATTCTTTAAAATAAATCTTTATTTATAA
Protein
MYTHVVVVGIPVASAALYVQKDTDRYLDVLSTIENFIYQHKCIISGESAHLLFLQKNIYLYEFYSNNVAEHSKALATLLYKLVPEYLTRHSTHHQDSQPLVCVYRTSARICAPICHPGSYTTLTDSHFTLLLHQRTHPARIVLFTTCTAVITNIFQALYPQLCRGMAYVARLRKKHADVIFTTVSAKIGNVGREEGGGKAGKYHYKNITTNGFYPSANRCWGLHTKKPVQPCTQEYKSFTAYYELTYLCRKRYHPAILCFKWTVDQNTYQQSALAYKSGITAFVYLFYCCCSVISITTYVQHGKLCATAYKSDILACWQLFITNTLRASAIFVGTDLGAYAYCAANYKGHQKNITIFYISICNAYVYSLAQYGGPFSLKQYKIFTQLCTPYRAHILGTTQITKNTAFLSRKAGCRIMLSRLKNHVTLVAKSCYAGCNTLCIIIIGRPHFVLQYDGRATAIYHADIGLDITVHALVHGMSRVIHGTQFLQMYEMQPSVSSCDFSMLVCMAPCAVCTQCSISPRRRPPCDRLPSNGWPVWASVGPYLATAYRSSSTNFCRRWCYVGPMQMAASKYSPVWPLHIFWHPLQRTPSCASLSARSCTLLRTNAVPSVTTPCTAFATPTVVSIICPLVIREGCVWGFTMWSGCSPSSVYGMSVLGRASAAMPLFPLRELILSPILCFLSYRKRMWPKISSLRPWGRITASTTAGSSKPYMSDRSMYLLCSSFSPRILATFPMLLSPFLSTVPTGTNPSTSFSYLAPGLCFLVFIRSGFPNDSISLSISTFSSRYKVPAKPPLSIYDCDTITESSCLYPPYIIYATMVLRPLGMSYLCAMVFTSGISLYNWKKRFMSTRYGQLYQYQPPVCRPWFVSYVSRAGWVQFAYGDTTAARPKIPWGTSTCVQRRVTSCLYLRTSMLEKATRQFSASSGVLYSQMPCATRSSSVCVPATMSFAICVVYRVFCMQGILCFSQSLSPFFLASAALYQACLYFSILLSTMCTGRVSLPTSNQNSTSSTMLSQYMVVWGCTILPSRRSILYRCASSKALVQQPIHSPLLYTRATPFRTMSLLETSAICCMAGSVTRRCFIESTSPAVQTLAVLAICLDIPTFSPVSAVWATQMYPGYVACTRRIMSALSVCLDALVVLCVFTVRNAAIVFIIFFLSKLCVHTLFTMGRCRTMLVLFPAMLHCSILRLCSEAVFFAIPAENASILFRWVCSSKAVCLCTSLHPLLLGAITDVLQIPLYALPSDTPVPCTRLVRYLSRSVGGNTFILPRSILCICRPTKRTFRTRVSAVWPMCGSNILSTILRCLSFKYCTAFSSLLYADGFVSNLETFSDTNWIFFSRFSSCWTGCNMGSTTCMDFSRISIMYVFTGELDSRSNTTCSMLLSSPVIPNMRKMCYQGMRSFVHLVLLFSMVLAPVVMYRILFCVLFSKAPPGCVLYSPRMFSLFPCCMVWYWMCSVLYRMFSMRSTTHSPPRAIYYPPGSLRSSPISFFAVFVTCCVWQRLLPRMLGNVDTCNGGILARFTSCRPLLYCAVTISSAATLSGPEYERPHRRALLRTIFILFPCEYFRCCGRSMFTSVYLYWICTDSRSLSISVWSRWSLYVLSTLYICFTICGIPLSICSSKLLLLYPINPVQFTAAEIYLSISASVCSSLSTVSMGPYVICGRKGSMFMKYYINIQLFFKINLYLX

Summary

Similarity
Belongs to the asfivirus K421R family.
Keywords
Complete proteome   Reference proteome  
Feature
chain  Uncharacterized protein K421R
PDB
2C2N     E-value=3.23136,     Score=76

Ontologies

KEGG

Subcellular Location

From MSLVP
Capsid

Topology

Length:
1687
Number of predicted TMHs:
13
Exp number of AAs in TMHs:
319.095820000001
Exp number, first 60 AAs:
3.53776
Total prob of N-in:
0.33499
Length:
1686
Number of predicted TMHs:
13
Exp number of AAs in TMHs:
319.00058
Exp number, first 60 AAs:
3.53776
Total prob of N-in:
0.33499
outside
1  -  140
TMhelix
141  -  163
inside
164  -  277
TMhelix
278  -  300
outside
301  -  319
TMhelix
320  -  342
inside
343  -  353
TMhelix
354  -  376
outside
377  -  823
TMhelix
824  -  843
inside
844  -  937
TMhelix
938  -  960
outside
961  -  969
TMhelix
970  -  992
inside
993  -  1088
TMhelix
1089  -  1111
outside
1112  -  1136
TMhelix
1137  -  1159
inside
1160  -  1400
TMhelix
1401  -  1423
outside
1424  -  1437
TMhelix
1438  -  1460
inside
1461  -  1596
TMhelix
1597  -  1619
outside
1620  -  1638
TMhelix
1639  -  1661
inside
1662  -  1687
outside
1  -  140
TMhelix
141  -  163
inside
164  -  277
TMhelix
278  -  300
outside
301  -  319
TMhelix
320  -  342
inside
343  -  353
TMhelix
354  -  376
outside
377  -  823
TMhelix
824  -  843
inside
844  -  937
TMhelix
938  -  960
outside
961  -  969
TMhelix
970  -  992
inside
993  -  1088
TMhelix
1089  -  1111
outside
1112  -  1136
TMhelix
1137  -  1159
inside
1160  -  1400
TMhelix
1401  -  1423
outside
1424  -  1437
TMhelix
1438  -  1460
inside
1461  -  1596
TMhelix
1597  -  1619
outside
1620  -  1638
TMhelix
1639  -  1661
inside
1662  -  1686
 
 

Population Genetic Test Statistics

Pi
0.0356249
Theta
0.0455105
Tajima's D
-0.9327246
CLR
0.012551
Interpretation
No evidence of Selection

Multiple alignment of Orthologues

 
 

Gene Tree

 
 

Orthologous in Strains

Strain Availability Status Gene
Spain_BA71_1971    
China_AnhuiXCGQ_2018    
China_ASFV-SY18_2018    
Poland_Pol16_20186_o7_2016-2017    
Poland_Pol16_20538_o9_2016-2017    
Poland_Pol16_20540_o10_2016-2017    
Poland_Pol16_29413_o23_2016-2017    
Poland_Pol17_03029_C201_2016-2017    
Poland_Pol17_04461_C210_2016-2017    
Poland_Pol17_05838_C220_2016-2017    
Poland_ASFV_POL_Podlaskie_2015    
Uganda_R8_2015    
Uganda_R7_2015    
Uganda_R25_2015    
Uganda_N10_2015    
Uganda_R35_2015    
Estonia_2014    
Italy_26544_OG10_2010    
Italy_47_Ss_2008_2008    
Portugal_OURT_88.3_1988    
Spain_E75_1975    
Russia_Georgia_2007    
Kenya_Tk1_2005    
Kenya_Bus_2006    
Russia_Odintsovo_2014    
Portugal_L60_1960    
Portugal_NHV_1968    
Russia_Kashino_2013    
Benin_1997    
South_Africa_KNP_Pretorisuskop_1996    
South_Africa_MGR_Mkuzi_1979    
Malawi_Lil_1983    
Kenya_1950    
Namibia_Warthog_1980    
South_Africa_Warmbaths_1987    
Malawi_Tengani_1962    
China_HLJ_2018    
China_LN_2018    
China_wbBS01_2018    
Ukraine_Kyiv_2014    
Belgium_Etalle_wb_2018    
Lithuania_LT14_2014    
South_Africa_1985 Protein
QGM12714.1
South_Africa_2_2008 Protein
QGM12714.1
Zambia_LIV_1983 Protein
Protein
QGM12714.1
QGM12714.1
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