CoVDB Coronavirus Database (v3)   
Strain
Porcine_KX834351 (Region: Viet Nam;  Strain: Porcine deltacoronavirus strain PDCoV/Swine/Vietnam/HaNoi6/2015, complete genome.;  Date: 10-Oct-15)
Gene
polyprotein 1b
Description
Annotated in NCBI,  polyprotein 1b
GenBank Accession
 

Sequence

CDS
ACGGGTTCTAGTGACGCCCGGCTAGAACCCCTGCAGCCTGGAACTCAACCAGATGCTGTAAAAAGGGCCTTCCATGTGCATAATGATACCACCTCTGGTATATTCTTAAGCACAAAATCTAACTGCGCTCGGTTTAAAACCACACGCAGTGCCCTGCCTTTACCTAACAAGGGAGAGGTTGAATTGTACTTTGTTACTAAGCAGTGTGCAGCTAAAGTCTTCGAAATTGAGGAGGAATGCTACAACGCTCTTAGTACAGAGCTTTATACTACTGATGATACATTTGGTGTCCTTGCCAAAACTGAGTTCTTCAAGTTTGACAAGATACCTAATGTCAATCGCCAGTATTTGACTAAATATACACTCCTGGATTTGGCTTATGCCTTACGTCATTTGTCAACATCTAAGGATGTTATTCAAGAAATCTTGATCACCATGTGCGGCACCCCTGAAGATTGGTTTGGGGAAAATTGGTTTGATCCAATTGAGAACCCATCCTTTTACAAGGAGTTCCATAAACTTGGAGATATTCTTAACCGCTGTGTTCTTAATGCCAATAAGTTTGCTAGTGCCTGTATAGACGCTGGTCTTGTTGGCATATTAACACCCGACAATCAAGACCTCCTGGGTCAGATCTATGACTTTGGAGATTTTATTATTACACAACCAGGTAATGGGTGTGTGGATCTAGCATCTTATTATTCTTATTTAATGCCCATTATGTCCATGACTCACATGTTAAAGTGTGAGTGTATGGATAGTGATGGCAACCCACTTGAGTATGATGGCTTCCAGTATGACTTCACTGATTTCAAGCTTGGCTTGTTCGAGAAGTATTTTAAGTACTGGGACCGTCCTTACCATCCTAACACTGTTGAATGTCCAGATGACCGCTGTGTATTGCACTGCGCGAACTTCAATGTTTTGTTCGCTATGTGTATACCTAATACGGCATTTGGCAATCTTTGTTCAAGAGCCACTGTTGATGGCCACCTTGTGGTCCAGACAGTGGGTGTACACTTGAAAGAACTTGGTATAGTCCTTAACCAGGACGTTACCACGCACATGGCAAATATTAATCTAAACACTCTATTGCGATTGGTAGGTGATCCCACCACCATTGCAAGTGTCTCAGACAAGTGTGTAGATTTAAGAACTCCTTGTCAGACCTTGGCTACTATGTCTAGCGGGATTGCTAAACAGTCAGTCAAGCCCGGGCATTTTAATCAACATTTCTACAAGCATTTGCTTGATAGTAACCTATTAGACCAACTTGGAATAGACATTCGCCACTTCTACTATATGCAAGATGGTGAAGCGGCTATCACAGACTACAGCTACTACAGGTATAATACCCCCACGATGGTGGATATCAAGATGTTCTTATTTTGCCTTGAGGTGGCAGATAAGTACCTTGAGCCCTACGAAGGTGGATGTATTAATGCACAGTCAGTTGTGGTCTCTAATTTGGACAAGTCAGCGGGCTACCCCTTTAACAAGCTAGGTAAAGCTCGTAACTATTACGACATGACTCATGCCGAGCAAAATCAACTGTTTGAGTATACAAAACGTAATGTTTTGCCTACACTCACTCAGATGAACCTTAAGTATGCAATTTCAGCCAAGGATCGTGCTCGCACTGTTGCAGGAGTGTCTATAATTAGCACCATGACTAACAGGCAGTACCATCAAAAGATGCTGAAATCTATTTCACTTGCACGCAATCAGACCATCGTGATTGGAACAACCAAATTCTATGGTGGTTGGGACAACATGTTACGACGACTGATGTGTAATATCAATAATCCCATTTTAGTGGGTTGGGATTACCCTAAGTGTGATCGTTCTATGCCAAACATGCTGCGCATTGCCGCTTCGTGCTTGCTAGCACGAAAACACACCTGCTGTAACCAAAGCCAGCGATTCTATCGTTTGGCTAATGAATGTTGCCAAGTACTATCAGAAGTTGTAGTCTCTGGTAACAACCTCTATGTAAAACCAGGTGGCACTAGCAGTGGTGATGCAACCACAGCTTACGCCAACTCGGTCTTTAACATTTTACAGGTGGTTTCTGCTAATGTAGCCACCTTTTTATCAACTTCTACCACGACACATCTTAATAAAGACATTGCGGACTTGCATCGTAGTCTTTATGAAGATATTTATCGTGGTGACTCTAATGATATCACCGTCATCAATAGATTCTACCAGCATCTCCAAAGTTACTTTGGACTTATGATATTGTCTGATGATGGTGTCGCATGTATAGACTCAGTCGTTGCAAAGGCTGGAGCTGTTGCTGACCTTGATGGTTTCCGAGACATTTTGTTTTACCAAAACAATGTTTATATGGCAGACTCAAAGTGTTGGACAGAAACTGACATGAATGTTGGCCCTCATGAATTTTGTTCACAGCATACTGTGTTAGCAGAGCATGATGGTAAACCTTACTACTTACCTTACCCAGATGTCTCTCGCATTCTGGGTGCATGCATCTTTGTGGATGACGTTAACAAGGCTGACCCCGTTCAGAACCTTGAACGTTACATCTCACTTGCAATTGATGCATATCCTCTCACCAAGGTTGACCCTATTAAGGGTAAAGTCTTCTATTTGTTACTAGATTACATACGTGTTCTTGCTCAGGAGTTACAGGACGGTATCCTTGATGCCTTCCAATCACTCACTGACATGTCGTATGTAAATAACTTTATGAATGAGGCCTTTTATGCTCAGATGTATGAGCAAAGTCCTACACTACAGGCCAGCGGTGTTTGTGTGGTGTGTAATTCACCCACTATACTGCGCTGTGGTGATTGCATTCGTCGACCACTACTTTGTTGCGTCTGTGCCTACCAGCATGTTACGCATACTACACATAAACGTATCATTGCTATCAACAACTACATCTGTAGTGTTGAGAATTGCAATGAGGACAATGTTGAAAAACTTTTCATTTCTGGCACTGCGATTTATTGTGAGAATCACAAACCCACGCTGTGCATACCCATTGTAGCTAATGGTTCTGTTTTTGGTATCTATCGCCACACTGCCCGTGGTAGTGATGACATAGACCTCTTTAACGAGCTTGCTACATCTAACTATGACACTATTGAACCTTATCAGAAGGCCAATCGTGCACCTTTATCACTTATGCTCTTCGCTGCTGAGACCATTAAGGCACTCGAGGAGTCTATCAAGAAGTCATATGCTACCGCAACTGTCAAGGATGTGTATGACCAACGCTTCATTAAACTTCTATGGGAACAGGGTAAAAAGCCGCCACCCATAACGAAGAACCACATTTTCACTGGCTACCATTTTAACAAGAATGGAAAAACCCAAGTTGGTGATTACATTCTTGCTAAAACAGATGGCAGTGACACTTATACTTACAGAGGAACATCTACCTACAAACTTCAAACGGGTGATGTTCTAGTCTTAATGGCACATGTTGTCACACCACTCTCAGCACCCCCAGTGCTAACGCAGACAACATATGTCAGAAAATCACTTTTACCTGACTCTGTTGGTGCGTCTTATTATGTGCAACATTTTAAGTCATATAATGAGATAGCTATGCAGAGGGTTACAACAGTATTAGGCCCACCAGGCACAGGTAAGTCAACCTTTGCTATTGGTTTGGCTAAGTACTTTCCTAGTGCACGTATTTGCTACACTGCGTCTTCGCATGCAGCAATCGATGCACTCTGTGAAAAAGCTTTCAAGACAATACCTGTAGGTCAATGCAGTCGTATCGTACCCACACGTACAACTGTTGAGTGCTTTCAGGAGTTTGTCGTAAATAACACAACTGCACAGTATATCTTCTCGACTATCAATGCCTTACCTGACATTAAGTGTGACATTGTAGTTGTAGATGAGGTTTCTATGTTGACCAATTATGAGCTCTCCTCTGTGAATGCTCGTTTGGTTTACAACCACATTGTGTATGTTGGTGATCCTTATCAGTTACCTTCACCTAGAACTATGCTTACGTCTGGCCAGCTTTCGCCAGCTGACTATAACGTAGTTACTGATATAATGGTACATGCAGGAGCGGATGTTATGCTCGACATGTGCTACAGATGCCCACGTGAAATCGTTGAGACAGTGTCTAAACTTGTCTACGATAATAAACTAAAAGCGGCGAAACCGAACTCAAGACAGTGTTACAAAACCATTGTGAACTTTGGTCCTGGAGACGTTGCTCATGAGGGACAATCTGCCTACAACGAAGCACAGTTGCGTTTCGCACTCGCATTTAGACAACAAAAGCGGTGGGATAACGTGACGTTCATATCTCCATATAATGCTATGAATGTGAAAGCATCCTTAGCAGGTTTCTCTACTCAAACCGTTGACTCTTCTCAAGGTTCTGAGTATGATTATGTTATCTTTTGCGTGACCACTGACTCAGCACACGCACTTAACATGGCTCGTTTGAACGTTGCCCTTACACGCGCAAAGATAGGTATCCTTGTGGTGTTTAGGCAGGCAAACGAACTTTACAATAGTTTGCAGTTTGAATCTATTGATTCACAGCTACAGTCGAGTGTTGAGAAAAGCCTCACACCACTGTTTAAGCGCTGCGGCTATGAGTATAATGGCGTCCATCCAGCTCATGCTTTGACCTGGCATGATTGTGGTGCAGAGTACCGCTGTGAGGAGCCACTTGCTAAATTAGTAGGAGTCGCCGATGGCACTCTTATATCATATAAAACCCTAGTATCCACACTTGGGTTTCTTCCATCACTTAAAATTGATGCATATCATAATATGTTCCTAACACGTGACGCGTGTCGCACCTATGTTCAGAGTTGGATCGGCATAGATGTTGAAGCAGCACACGCCATAAAACCTAACACTGGGACTAACCTGCCATTACAAATAGGTTTTAGCACCGGAAAGAATTTTTCAGTTACTCCAGAGGGAATTTGGGTAAACGAGCACGGATCTTGCACTGAGCCCGTCCCTGCCAAAATACCTCCTGGAGAACAATTTCGTCACCTTAAGAAGGACATGCGCCAGGCGCGTCCTTGGAAGGTTGTTCGACGTGAGATTGCTACTCATATTGCTGAGGTAGCTCCCCACACTGATTATATATGCTTTGTCACTTGGGCTCACCAGCTTGAGCTAGCGACAATGCGCTACTTTCTCAAACTAGGTATGGAAGAGAAATGCTTTTGTGGCAGACGGGCTTGTTTCACTAATGGAACTGAGTTCGCTTGCAAAGCACATCATTCTCTCACCATTCCACAATGTGATTATGTGTACAATCCATTCCTCATCGACGTGGCTACGTGGGGATTCTCGGGACGGCTTTCCACCAACCATGACGCGGTATGCACATATCATGCTAATGCCCATGTTGCATCAGCTGATGCAATCATGACGGTATGCTTAGCTATCCATGAATTGTTCAGTACTGTTGACTGGAACCTTGAATTTCCAGTAACTGCTGAGCAATCACAACTTAACAAGGCCTGTCGCTTAGTACAGGCAAATTATTTAAATATATTACTCACTACAACCAAGGCCACGGTGGTTCATGATATTGGTAACCCAAAAGGTATCCCTATCGTGCGCAAACCTGGTGTTAAATATCACTTCTATGATCAAGCACCCATTGTCAAACACGTTCAAAAACTAAAGTACAAGCCAGAGATGGAGGCCCGTTTCACCGATGGTTTGACTATGTTTTGGAATTGTAATGTTGACACATACCCTGCTAATGCTCTTGTGTGCCGTTACGACACTCATCGGCAGAAGCATTTAATTGGACCTAATGGTTCAGCACTATATGTTAATAAGCATGCTTTTCTCACCCCTGAGATGCATACTTATGCTACACATAAACTCAACTTGGCTCCACTCATCTACTACTCCACCACAGATTGTAGTAGTGAACAGCCTATTGTTGTTACCTACAGAGATTGTGTCACCCGGTGCAATACTGGAAAAACTCTCTGTCCAAATCATGCTCTTGAATACCAAGAGTTTATCAATGCATATAATCTCATGGCTCGCCATGGATTTAATGTTTATATACCACGCAATGTCAACGTCTACAACTGTTGGCTTACTTTCACTAATCTCCAAAACCTTGAAAACTTAGCTTACAACTGTTATTATAAAAACTGCAACGCTCACGCTGATGGGCAGCTTGATGTAGTTATTAATAATAATGCTGTATATGCTAAGGTCGACAATAATCTTGTCAAACTTTTCGACAACCGCACTAACTTACCTGTCTCAGTGGCTTTTGAACATTACACTAACAGGCATACCCGTTCACTGCCAACTACACAGCTGTTATCTGGTTTAGGCGTAACCGCCACCAGAAATTTCACTGTGTGGTTTGACAATGATACAATTTTCCAATACACTATTAATGTATCTACGTATACTGACATCGACCCTAGTACCCATGTTGTCCTTTGTGATGATAGGTACGGAACAGATTGGAGTCAGTTTAACCAACTTCCTAATGCAGTATTCCTCACCAAAACTAAGGTGAAGAAAACAGAACCGTTTGTTTGTACAGCACTGACCCTAAATGGCCTCGCCATTGACGGTGAAGAGCTATACATCTATGTACGCTATAACAATCAACTGACCACATTTGCTACTACTTGTACACAGGGTAGAAATGTTGAGCAGTTTATACCTAAAACACCTATGGAAAGAGACTTCCTTGAGATGTCTCAACAGTCCTTCATTCAACAATATCAATTGCAGGACCTGGGTGTTGAACACATTATCTATGGTGATGATTCCAGTCCAGTCATTGGCGGAACTCACACACTTATCTCACTAGTTAAAAACAAGTTTGAACATCAGCTTGTCAACCATGTTTACAACCCAGTCCAGAACTGTGTTGTTACCTCACCTAATGCAAGCTCCAAGAACGTTTGCACTGTTCTTGATGTTCTTCTTGATGATTACATTGACATCATAAGACAAGCACATGCCAGTTACACAAGTAAATCTAAAGTATTCACTGTGTCAATTGACAACCAACAAATTAGATTCATGCTTTGGCATGATGAGCAAGTCAAGACTTGCTACCCAATCTTACAGTCACTTACCAATGGTTACCAGATGCCATCTGTGTACAAAACATTGGTTACTGACTTACAACCAGCTGACATCCCTAATTATCATTCCTACACCCCCCGGGTGCCTGGAGTAGTTAAGAATGTTATCAAGTACCGCCAACTTTTCAACTATATAGTTAAAAAGGATAGGTTGGCAGTACCACACAATATGACTGTATTACACCTCGGAGCTGCGTCTGCACTAGGTACAGCACCAGGTTCTTCAGTCATAAAACAAATGTTTCCTGAAGGAACTGTTCTTATTGACCTTGATATAAGAGAGTTCACTTCAGACGCTAACCAAATAATAGTTACAGACTACAGAACTTACATGCCACCACACCACGTAGACGTCATATTTTCTGACCTCTACTGTTGTGATGACATACACTTCTTTGATAACCTAATAAGGATAGTTAAGGAGAGGCTTGCCCTCGGTGGTTCTATCTTTGTTAAGATAACTGAACATTCATTCTCATCCGAACTTTACTCACTCGCGGGTTGGTTCGATGACTATCAATTATTTTGCACAGCAGTCAATGCCTCGTCTTCAGAAGCATTTCTATGCTGTTTTAATTATTTGGGGCATGCTAAGGAAAACATTAATGGTTTTAACTTACATGCTTCCTACACTCAATGGCGCAATGAAATAGCGTTGACACCAACCTATTCTCCTTTAGCGGACAACCCGGCTACGGCCTGTAAGCTAAAAGCAACGCCTATTATTTCGGCTCGTGAGTTAGAGAAGAAGCCTATTCTTCGCTATCTTGTTGCATCAGGACGCCTTCTTGTGAGGCCACCAGAATGCAGAGAGCTCTATTGA
Protein
TGSSDARLEPLQPGTQPDAVKRAFHVHNDTTSGIFLSTKSNCARFKTTRSALPLPNKGEVELYFVTKQCAAKVFEIEEECYNALSTELYTTDDTFGVLAKTEFFKFDKIPNVNRQYLTKYTLLDLAYALRHLSTSKDVIQEILITMCGTPEDWFGENWFDPIENPSFYKEFHKLGDILNRCVLNANKFASACIDAGLVGILTPDNQDLLGQIYDFGDFIITQPGNGCVDLASYYSYLMPIMSMTHMLKCECMDSDGNPLEYDGFQYDFTDFKLGLFEKYFKYWDRPYHPNTVECPDDRCVLHCANFNVLFAMCIPNTAFGNLCSRATVDGHLVVQTVGVHLKELGIVLNQDVTTHMANINLNTLLRLVGDPTTIASVSDKCVDLRTPCQTLATMSSGIAKQSVKPGHFNQHFYKHLLDSNLLDQLGIDIRHFYYMQDGEAAITDYSYYRYNTPTMVDIKMFLFCLEVADKYLEPYEGGCINAQSVVVSNLDKSAGYPFNKLGKARNYYDMTHAEQNQLFEYTKRNVLPTLTQMNLKYAISAKDRARTVAGVSIISTMTNRQYHQKMLKSISLARNQTIVIGTTKFYGGWDNMLRRLMCNINNPILVGWDYPKCDRSMPNMLRIAASCLLARKHTCCNQSQRFYRLANECCQVLSEVVVSGNNLYVKPGGTSSGDATTAYANSVFNILQVVSANVATFLSTSTTTHLNKDIADLHRSLYEDIYRGDSNDITVINRFYQHLQSYFGLMILSDDGVACIDSVVAKAGAVADLDGFRDILFYQNNVYMADSKCWTETDMNVGPHEFCSQHTVLAEHDGKPYYLPYPDVSRILGACIFVDDVNKADPVQNLERYISLAIDAYPLTKVDPIKGKVFYLLLDYIRVLAQELQDGILDAFQSLTDMSYVNNFMNEAFYAQMYEQSPTLQASGVCVVCNSPTILRCGDCIRRPLLCCVCAYQHVTHTTHKRIIAINNYICSVENCNEDNVEKLFISGTAIYCENHKPTLCIPIVANGSVFGIYRHTARGSDDIDLFNELATSNYDTIEPYQKANRAPLSLMLFAAETIKALEESIKKSYATATVKDVYDQRFIKLLWEQGKKPPPITKNHIFTGYHFNKNGKTQVGDYILAKTDGSDTYTYRGTSTYKLQTGDVLVLMAHVVTPLSAPPVLTQTTYVRKSLLPDSVGASYYVQHFKSYNEIAMQRVTTVLGPPGTGKSTFAIGLAKYFPSARICYTASSHAAIDALCEKAFKTIPVGQCSRIVPTRTTVECFQEFVVNNTTAQYIFSTINALPDIKCDIVVVDEVSMLTNYELSSVNARLVYNHIVYVGDPYQLPSPRTMLTSGQLSPADYNVVTDIMVHAGADVMLDMCYRCPREIVETVSKLVYDNKLKAAKPNSRQCYKTIVNFGPGDVAHEGQSAYNEAQLRFALAFRQQKRWDNVTFISPYNAMNVKASLAGFSTQTVDSSQGSEYDYVIFCVTTDSAHALNMARLNVALTRAKIGILVVFRQANELYNSLQFESIDSQLQSSVEKSLTPLFKRCGYEYNGVHPAHALTWHDCGAEYRCEEPLAKLVGVADGTLISYKTLVSTLGFLPSLKIDAYHNMFLTRDACRTYVQSWIGIDVEAAHAIKPNTGTNLPLQIGFSTGKNFSVTPEGIWVNEHGSCTEPVPAKIPPGEQFRHLKKDMRQARPWKVVRREIATHIAEVAPHTDYICFVTWAHQLELATMRYFLKLGMEEKCFCGRRACFTNGTEFACKAHHSLTIPQCDYVYNPFLIDVATWGFSGRLSTNHDAVCTYHANAHVASADAIMTVCLAIHELFSTVDWNLEFPVTAEQSQLNKACRLVQANYLNILLTTTKATVVHDIGNPKGIPIVRKPGVKYHFYDQAPIVKHVQKLKYKPEMEARFTDGLTMFWNCNVDTYPANALVCRYDTHRQKHLIGPNGSALYVNKHAFLTPEMHTYATHKLNLAPLIYYSTTDCSSEQPIVVTYRDCVTRCNTGKTLCPNHALEYQEFINAYNLMARHGFNVYIPRNVNVYNCWLTFTNLQNLENLAYNCYYKNCNAHADGQLDVVINNNAVYAKVDNNLVKLFDNRTNLPVSVAFEHYTNRHTRSLPTTQLLSGLGVTATRNFTVWFDNDTIFQYTINVSTYTDIDPSTHVVLCDDRYGTDWSQFNQLPNAVFLTKTKVKKTEPFVCTALTLNGLAIDGEELYIYVRYNNQLTTFATTCTQGRNVEQFIPKTPMERDFLEMSQQSFIQQYQLQDLGVEHIIYGDDSSPVIGGTHTLISLVKNKFEHQLVNHVYNPVQNCVVTSPNASSKNVCTVLDVLLDDYIDIIRQAHASYTSKSKVFTVSIDNQQIRFMLWHDEQVKTCYPILQSLTNGYQMPSVYKTLVTDLQPADIPNYHSYTPRVPGVVKNVIKYRQLFNYIVKKDRLAVPHNMTVLHLGAASALGTAPGSSVIKQMFPEGTVLIDLDIREFTSDANQIIVTDYRTYMPPHHVDVIFSDLYCCDDIHFFDNLIRIVKERLALGGSIFVKITEHSFSSELYSLAGWFDDYQLFCTAVNASSSEAFLCCFNYLGHAKENINGFNLHASYTQWRNEIALTPTYSPLADNPATACKLKATPIISARELEKKPILRYLVASGRLLVRPPECRELY

Summary

Catalytic Activity
ATP + H2O = ADP + H(+) + phosphate
a ribonucleoside 5'-triphosphate + RNA(n) = diphosphate + RNA(n+1)
Similarity
Belongs to the coronaviruses polyprotein 1ab family.
Uniprot
Pfam
PF08717   nsp8
PF01661   Macro
PF06471   NSP11
PF06478   Corona_RPol_N
PF16348   Corona_NSP4_C
PF05409   Peptidase_C30
PF08715   Viral_protease
PF06460   NSP16
PF01443   Viral_helicase1
PF00680   RdRP_1
PF08710   nsp9
PF09401   NSP10
Interpro
IPR036499   NSP9_sf
IPR018995   RNA_synth_NSP10_coronavirus
IPR027351   (+)RNA_virus_helicase_core_dom
IPR007094   RNA-dir_pol_PSvirus
IPR029063   SAM-dependent_MTases
IPR037230   NSP8_sf
IPR038123   NSP4_C_sf
IPR042515   Nsp15_N
IPR027417   P-loop_NTPase
IPR002589   Macro_dom
IPR009461   Coronavirus_NSP16
IPR014827   Viral_protease
IPR014822   NSP9
IPR009003   Peptidase_S1_PA
IPR014829   NSP8
IPR037227   EndoU-like
IPR036333   NSP10_sf
IPR001205   RNA-dir_pol_C
IPR027352   CV_ZBD
IPR008740   Peptidase_C30
IPR009466   NSP11
IPR009469   RNA_pol_N_coronovir
IPR032505   Corona_NSP4_C
SUPFAM
SSF144246   SSF144246
SSF101816   SSF101816
SSF52540   SSF52540
SSF143076   SSF143076
SSF50494   SSF50494
SSF142877   SSF142877
SSF53335   SSF53335
Gene 3D
ProteinModelPortal
PDB
6NUS     E-value=0.0     Score= 920     Identity=50.86%     Cov(Q)=35.08%     Cov(P)=96.96%

Ontologies

Subcellular Location

From MSLVP
Capsid
From Uniprot
Host cytoplasm  
Host perinuclear region  
Host endoplasmic reticulum  
Host membrane  

Topology

Length:
2640
Number of predicted TMHs:
0
Exp number of AAs in TMHs:
0.02359
Exp number, first 60 AAs:
0
Total prob of N-in:
0.00033
outside
1  -  2640
 
 
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