CoVDB Coronavirus Database (v3)   
Strain
Feline_HQ392469 (Region: Netherlands;  Strain: Feline coronavirus UU40, complete genome.;  Date: 22-Jan-08)
Gene
spike protein
Description
Annotated in NCBI,  spike protein
GenBank Accession
 

Sequence

CDS
ATGATATTGTTACTCTTTGCACTTCTTAGCACTGTCAGGTCTGAAGATGCTCCTCATGGTGTGACCATACCTCAATTTAACACGTCTTATAACAATGACAAGTTTGAACTTAATTTTTATAATTTCTTACAAACTTGGGATATACCACCAAACACAGAAACTATTCTTGGTGGCTATCTACCATATTGTGATACTGGTGTTAACTGTGGCTGGTACAACTTTGTGTACAGAACGAGTGTTGGGAACAATGGCAAATACTCTTACATAAACACAAAAAATTTGAACATACCGAATGTTCATGGCGTCTACTTCGACGTACGGGAACATGATTCTGATGGTGTGTGGGACACACGTGATAGAGTCGGCTTATTGATAGCTATACATGGCACCTCACATTATAGTCTGCTAATGGTTTTACAAGATGRTGTGGAGGAGAATCAACCTCACGTCGCTGTCAAAATCTGCCATTGGAAGCCAGGCAATATAAGTTCCTATCACCAGTTTAGCCTTAACCTAGGAGATGGAGGTCAATGTGTGTTCAATCAAAGATTTTCTTTGGATGTTAAACTCACTACCAATGACTTCTATGGATTCCAGTGGACTAACACGTATGTGGATATATACTTGGGAGGCACTATCACTAAAGTGTGGGTTGACAATGACTGGGATGTTGTTGAAGCTAGCATTTCCTATCACTGGAATAAGATTAACTATGGGTATTACATGCAATTTGTCAACCGCACCACTTATTATGCCTATAATAACACTGGTGGTTCAAATTATACGCATTTACAGTTAAGTGAGTGCCGTAGTGAGTATTGTGCTGGTTATGCTAAGAATGTCTTTGTGCCAGTTGACGGCAAAATACCAGAAAGCTTTACTTTCAGCAACTGGTTTTTGTTAACAGATAAATCCACTTTATTGCAAGGACGTGTTCTTAGTAGTCAACCAGTTTTTGTACAATGTCTTAGGCCTGTACCAACGTGGTCTAACAACAGTGCTGTGGTGCATTTTAATAATGATTCCTTCTGCCCTAAAGTTGCCGCAGACGTTTTGAGGTTCAATCTAAATTTTAGTGACATTGATGTTTATACAGATTCAAGTAACGATGATCAGTTGTATTTCACGTTTGAAGATAATACAACTGCATCTATAGCCTGTTATAGCAGTGCTAATGTTACTGATTTCCAGCCTGCAAATAACAGCATCTCTCATATCCCTTTTGGCAAAACTGCGCATTCTTATTACTGTTTTGCCAATTTCTCTCACTCTGTTGTGAGCAGGCAATTTTTGGGCATACTTCCACCAACTGTACGAGAATTTGCATTTGGTAGAGACGGCTCTATTTTTGTTAATGGTTACAAACATTTTATGTTACCACCTATTAAGAGTGTCAAATTCTCCATTAGCTCAGTTGAGCAGTATGGGTTTTGGACCATAGCCTATACCAATTATACAGATGTAATGGTGGATGTTAATGGCACTGGTATTACCAGATTGTTCTATTGTGACTCACCCATCAATAGAATTAAGTGTCAACAGCTGAAGCATGAATTACCAGATGGTTTTTACTCTGCTAGCATGCTTGTTAAAAAGGATCTACCTAAGACATTTGTAACCATGCCACAGTTTTATAACTGGATGAATGTCACATTACATGTTGTATTAAATGACACATTGAAACGGTATGACATCATTCTTGCTGAGGCTCCTGAGCTAGCATCACTTGCTGACATACACTTTGAAATAGCACAGGCGAATGGAAGTGTAGTGAATGTTACTAGTTTATGTGTTCAGACAAGACAGTTGGCTTTATTTTACAAGTACACTAGCCTGCAAGGTTTGTATACCTATTCCAATCTGGTGGAATTACAAAATTATGACTGCCCATTTTCGCCACAGCATTTTAATAATTATTTGCAGTTTGAAACTCTGTGTTTCGATGTGAACCCATCTGTGGCAGGTTGTAAGTGGTCACTCGTTCATGACACTACATGGCGTACACAATTTGCCACTATTACTCTGTCTTACAAAGACGGTGCTAAGATTACAACCATGCCGAAGGCGCAGCCGGGTTTTCAAGATATCTCCAATTTAGTAAAAGATGAATGCACTGATTACAATATTTATGGATTTCAGGGCACAGGCATTATTAGAAGTACCAACTCACGTTTAGTAGCTGGCCTTTACTACACATCTATTAGTGGTGACCTTCTCGCTTTTAAAAATAGTACTACTGGGGAAATTTTTACTGTAGTGCCATGTGATTTAACAGCACAAGCAGCTGTAATTAATGATGAGATAGTGGGAGCTATAACAGCCGTTAATCAAACTGATCTGTTTGCGTTTGTAAATCACACAAGTTCAAGAAGATCACGTAGGTCAACCGCAGATTCAGTAACTACCTACACTATGCCACAATTTTATTACATAACAAAGTGGAATAATGACACCTCGACTAATTGTACATCTGTCATTACTTACTCCTCTTTTGCAATCTGTAATACTGGTGAAATTAAATATGTTAATGTCACCCATGTTGAAATTATGGACGATAGTATAGGTGTTATTAAACCTGTTTCAACAGGTAACATAACTATACCCAAAAACTTCACAGTTGCAGTACAGGCTGAATATATTCAGATTCAAGTTAAGCCTGTTGTTGTGGATTGTGCTAGGTATGTTTGCAATGGCAATAGACATTGTCTCAACTTGCTAACACAATACACCTCGGCTTGTCAAACAATAGAAAATGCCCTTAATCTTGGTGCACGCCTCGAATCTTTAATGCTTAATGACATGATCACAGTTTCAGATCGTAGTCTGGAACTCGCAACTGTTGAAAAGTTTAATACTACTGTTTTAGGTGGTGAAAAGCTGGGTGGTTTTTATTTTGATGGTTTGAGAGACTTGTTACCACCTAGAGTAGGTAAACGGTCAGCTGTTGAAGATTTGTTGTTCAATAAGGTTGTAACTAGCGGTCTTGGCACTGTGGATGATGACTATAAAAAGTGTTCAGCTGGTACAGATGTGGCAGATTTAGTTTGTGCACAATATTACAATGGCATAATGGTTCTACCTGGCGTTGTAGATGATAATAAGATGGCCATGTACACTGCCTCTCTAATAGGAGGTATGGCTATGGGCTCTATTACATCTGCTGTGGCTGTCCCGTTCGCCATGCAAGTGCAAGCTAGGCTTAACTATGTTGCACTACAAACTGATGTTTTGCAGGAAAACCAGAAAATACTTGCTAATGCCTTTAATAACGCCATTGGTAATATCACATTAGCGCTTGGAAAAGTCTCTAATGCCATTACTACTATCTCAGATGGTTTTAACACCATGGCTTCAGCACTGACTAAGATTCAGAGTGTAGTTAATCAACAAGGTGAAGCGTTGAGTCAACTTACTAGTCAGTTACAGAAAAACTTCCAGGCTATTAGCAGTTCTATTGCCGAAATTTACAATAGACTGGAAAAGGTGGAAGCTGATGCTAATGTTGATCGTCTCATTACTGGTAGGTTAGCTGCACTTAATGCTTATGTGTCTCAAACTTTAACTCAGTATGCTGAAGTCAAGGCTAGTAGACAACTAGCAATGGAAAAAGTTAATGAGTGTGTGAAATCACAGTCGGATAGGTATGGTTTCTGTGGCAATGGAACACACCTATTCTCACTTGTCAATTCTGCACCTGATGGTTTGCTTTTCTTTCATACAGTTTTGCTTCCTATAGAGTGGGAAGAAGTGACGGCATGGTCAGGAATATGTGTTAATGACACATATGCTTATGTATTGAAAGATTTTGATTATTCTATTTTTAGCTATAACAATACGTATATGGTAACTCCTCGTAATATGTTTCAACCTAGAAAGCCTCAGATGAGTGATTTCGTGCAAATTACGAGCTGTGAAGTGACTTTTTTGAACACTACATATACAACATTTCAGGAGATTGTGATAGATTATATTGACATCAACAAGACTATCGCTGATATGCTTGAACAATACAATCCTAATTACACAACACCTGAGTTAGAGTTACAGCTGGAAATTTTTAATCAAACAAAGTTAAACCTCACTGTAGAGATAGACCAACTAGAACAGAGAGCTGACAACCTTACTACTATAGCGCATCAATTACAAGAGTACATTGACAATCTTAATAAGACTCTTGTTGACCTTGAATGGCTCAACAGGATTGAAACTTATGTAAAATGGCCTTGGTATGTGTGGCTACTAATCGGATTAGTGATAGTATTCTGCATACCATTGTTACTGTTTTGCTGTCTGAGTACTGGCTGTTGTGGGTGCTTTGGTTGTCTTGGAAGCTGTTGCAATTCTCTTTGTAGTAGACGACAATTTGAAAGTTATGAACCCATTGAAAAGGTTCACATTCATTAA
Protein
MILLLFALLSTVRSEDAPHGVTIPQFNTSYNNDKFELNFYNFLQTWDIPPNTETILGGYLPYCDTGVNCGWYNFVYRTSVGNNGKYSYINTKNLNIPNVHGVYFDVREHDSDGVWDTRDRVGLLIAIHGTSHYSLLMVLQDXVEENQPHVAVKICHWKPGNISSYHQFSLNLGDGGQCVFNQRFSLDVKLTTNDFYGFQWTNTYVDIYLGGTITKVWVDNDWDVVEASISYHWNKINYGYYMQFVNRTTYYAYNNTGGSNYTHLQLSECRSEYCAGYAKNVFVPVDGKIPESFTFSNWFLLTDKSTLLQGRVLSSQPVFVQCLRPVPTWSNNSAVVHFNNDSFCPKVAADVLRFNLNFSDIDVYTDSSNDDQLYFTFEDNTTASIACYSSANVTDFQPANNSISHIPFGKTAHSYYCFANFSHSVVSRQFLGILPPTVREFAFGRDGSIFVNGYKHFMLPPIKSVKFSISSVEQYGFWTIAYTNYTDVMVDVNGTGITRLFYCDSPINRIKCQQLKHELPDGFYSASMLVKKDLPKTFVTMPQFYNWMNVTLHVVLNDTLKRYDIILAEAPELASLADIHFEIAQANGSVVNVTSLCVQTRQLALFYKYTSLQGLYTYSNLVELQNYDCPFSPQHFNNYLQFETLCFDVNPSVAGCKWSLVHDTTWRTQFATITLSYKDGAKITTMPKAQPGFQDISNLVKDECTDYNIYGFQGTGIIRSTNSRLVAGLYYTSISGDLLAFKNSTTGEIFTVVPCDLTAQAAVINDEIVGAITAVNQTDLFAFVNHTSSRRSRRSTADSVTTYTMPQFYYITKWNNDTSTNCTSVITYSSFAICNTGEIKYVNVTHVEIMDDSIGVIKPVSTGNITIPKNFTVAVQAEYIQIQVKPVVVDCARYVCNGNRHCLNLLTQYTSACQTIENALNLGARLESLMLNDMITVSDRSLELATVEKFNTTVLGGEKLGGFYFDGLRDLLPPRVGKRSAVEDLLFNKVVTSGLGTVDDDYKKCSAGTDVADLVCAQYYNGIMVLPGVVDDNKMAMYTASLIGGMAMGSITSAVAVPFAMQVQARLNYVALQTDVLQENQKILANAFNNAIGNITLALGKVSNAITTISDGFNTMASALTKIQSVVNQQGEALSQLTSQLQKNFQAISSSIAEIYNRLEKVEADANVDRLITGRLAALNAYVSQTLTQYAEVKASRQLAMEKVNECVKSQSDRYGFCGNGTHLFSLVNSAPDGLLFFHTVLLPIEWEEVTAWSGICVNDTYAYVLKDFDYSIFSYNNTYMVTPRNMFQPRKPQMSDFVQITSCEVTFLNTTYTTFQEIVIDYIDINKTIADMLEQYNPNYTTPELELQLEIFNQTKLNLTVEIDQLEQRADNLTTIAHQLQEYIDNLNKTLVDLEWLNRIETYVKWPWYVWLLIGLVIVFCIPLLLFCCLSTGCCGCFGCLGSCCNSLCSRRQFESYEPIEKVHIH

Summary

Uniprot
Pfam
PF01600   Corona_S1
PF01601   Corona_S2
Interpro
IPR002551   Corona_S1
IPR002552   Corona_S2
ProteinModelPortal
PDB
6JX7     E-value=0.0     Score=2603     Identity=90.02%     Cov(Q)=94.96%     Cov(P)=94.89%

Ontologies

Subcellular Location

From MSLVP
Single-Pass Membrane

Topology

Length:
1467
Number of predicted TMHs:
1
Exp number of AAs in TMHs:
29.12006
Exp number, first 60 AAs:
0.00011
Total prob of N-in:
0.00003
outside
1  -  1408
TMhelix
1409  -  1431
inside
1432  -  1467
 
 
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