viHumans
Reviewed
Homo Sapiens (Human) [TaxID: 9606]
Gag-pol
♦Gag-Pol polyprotein (Pr180gag-pol) [Cleaved into: Matrix protein p15 (MA)
♦ RNA-binding phosphoprotein p12 (pp12)
♦ Capsid protein p30 (CA)
♦ Nucleocapsid protein p10 (NC-pol)
♦ Protease p14 (PR) (EC 3.4.23.-)
♦ Reverse transcriptase/ribonuclease H p80 (RT) (EC 2.7.7.49) (EC 2.7.7.7) (EC 3.1.26.4)
♦ Integrase p46 (IN) (EC 2.7.7.-) (EC 3.1.-.-)]
Xenotropic MuLV-related Virus (isolate VP35) (XMRV)
Viruses> Retro-transcribing Viruses> Retroviridae> Orthoretrovirinae> Gammaretrovirus> Unclassified Gammaretrovirus> Murine Leukemia-related Retroviruses> XMRV-related Viruses> Xenotropic MuLV-related Virus> Xenotropic MuLV-related Virus (isolate VP35) (XMRV)
Not Available
Various pathway(s) in which protein is involved
Not Available
Not Available
MGQTVTTPLSLTLQHWGDVQRIASNQSVDVKKRRWVTFCSAEWPTFNVGWPQDGTFNLGVISQVKSRVFCPGPHGHPDQVPYIVTWEALAYDPPPWVKPF
VSPKPPPLPTAPVLPPGPSAQPPSRSALYPALTLSIKSKPPKPQVLPDSGGPLIDLLTEDPPPYGVQPSSSARENNEEEAATTSEVSPPSPMVSRLRGRR
DPPAADSTTSQAFPLRMGGDGQLQYWPFSSSDLYNWKNNNPSFSEDPGKLTALIESVLITHQPTWDDCQQLLGTLLTGEEKQRVLLEAGKAVRGNDGRPT
QLPNEVNAAFPLERPDWDYTTTEGRNHLVLYRQLLLAGLQNAGRSPTNLAKVKGITQGPNESPSAFLERLKEAYRRYTPYDPEDPGQETNVSMSFIWQSA
PDIGRKLERLEDLKSKTLGDLVREAEKIFNKRETPEEREERIRREIEEKEERRRAEDEQRERERDRRRHREMSKLLATVVIGQRQDRQGGERRRPQLDKD
QCAYCKEKGHWAKDCPKKPRGPRGPRPQTSLLTLGDXGGQGQEPPPEPRITLKVGGQPVTFLVDTGAQHSVLTQNPGPLSDKSAWVQGATGGKRYRWTTD
RKVHLATGKVTHSFLHVPDCPYPLLGRDLLTKLKAQIHFEGSGAQVVGPMGQPLQVLTLNIENKYRLHETSKEPDVPLGSTWLSDFPQAWAETGGMGLAV
RQAPLIIPLKATSTPVSIKQYPMSQEARLGIKPHIQRLLDQGILVPCQSPWNTPLLPVKKPGTNDYRPVQDLREVNKRVEDIHPTVPNPYNLLSGLPPSH
QWYTVLDLKDAFFCLRLHPTSQPLFAFEWRDPEMGISGQLTWTRLPQGFKNSPTLFDEALHRDLADFRIQHPDLILLQYVDDLLLAATSEQDCQRGTRAL
LQTLGNLGYRASAKKAQICQKQVKYLGYLLKEGQRWLTEARKETVMGQPTPKTPRQLREFLGTAGFCRLWIPGFAEMAAPLYPLTKTGTLFNWGPDQQKA
YQEIKQALLTAPALGLPDLTKPFELFVDEKQGYAKGVLTQKLGPWRRPVAYLSKKLDPVAAGWPPCLRMVAAIAVLTKDAGKLTMGQPLVILAPHAVEAL
VKQPPDRWLSNARMTHYQAMLLDTDRVQFGPVVALNPATLLPLPEKEAPHDCLEILAETHGTRPDLTDQPIPDADYTWYTDGSSFLQEGQRRAGAAVTTE
TEVIWARALPAGTSAQRAELIALTQALKMAEGKKLNVYTDSRYAFATAHVHGEIYRRRGLLTSEGREIKNKNEILALLKALFLPKRLSIIHCPGHQKGNS
AEARGNRMADQAAREAAMKAVLETSTLLIEDSTPYTPPHFHYTETDLKRLRELGATYNQTKGYWVLQGKPVMPDQSVFELLDSLHRLTHPSPQKMKALLD
REESPYYMLNRDRTIQYVTETCTACAQVNASKAKIGAGVRVRGHRPGTHWEVDFTEVKPGLYGYKYLLVFVDTFSGWVEAFPTKRETAKVVTKKLLEDIF
PRFGMPQVLGSDNGPAFASQVSQSVADLLGIDWKLHCAYRPQSSGQVERMNRTIKETLTKLTLASGTRDWVLLLPLALYRARNTPGPHGLTPYEILYGAP
PPLVNFHDPEMSKLTNSPSLQAHLQALQAVQQEVWKPLAAAYQDQLDQPVIPHPFRVGDAVWVRRHQTKNLEPRWKGPYTVLLTTPTALKVDGISAWIHA
AHVKAATTPPAGTAWKVQRSQNPLKIRLTRGAP
1733
Not Available
Not Available
21-03-2006
Evidence at protein level
Amino Acid Count % Frequency Amino Acid Count % Frequency
Alanine (A) Leucine (L)
Arginine (R) Lysine (K)
Asparagine (N) Methionine (M)
Aspartic Acid (D) Phenylalanine (F)
Cysteine (C) Proline (P)
Glutamine (Q) Serine (S)
Glutamic Acid (E) Threonine (T)
Glycine (G) Tryptophan (W)
Histidine (H) Tyrosine (Y)
Isoleucine (I) Valine (V)
% Number of Residues in Helices % Number of Residues in Strands % Number of Residues in Coils
♦Matrix protein p15 targets Gag and gag-pol polyproteins to the plasma membrane via a multipartite membrane binding signal, that includes its myristoylated N-terminus. Also mediates nuclear localization of the preintegration complex (By similarity).
♦ Capsid protein p30 forms the spherical core of the virion that encapsulates the genomic RNA-nucleocapsid complex.
♦ Nucleocapsid protein p10 is involved in the packaging and encapsidation of two copies of the genome. Binds with high affinity to conserved UCUG elements within the packaging signal, located near the 5'-end of the genome. This binding is dependent on genome dimerization (By similarity).
♦ The aspartyl protease mediates proteolytic cleavages of Gag and Gag-Pol polyproteins during or shortly after the release of the virion from the plasma membrane. Cleavages take place as an ordered, step-wise cascade to yield mature proteins. This process is called maturation. Displays maximal activity during the budding process just prior to particle release from the cell.
♦ Reverse transcriptase/ribonuclease H is a multifunctional enzyme that converts the viral dimeric RNA genome into dsDNA in the cytoplasm, shortly after virus entry into the cell. This enzyme displays a DNA polymerase activity that can copy either DNA or RNA templates, and a ribonuclease H (RNase H) activity that cleaves the RNA strand of RNA-DNA heteroduplexes in a partially processive 3' to 5' endonucleasic mode. Conversion of viral genomic RNA into dsDNA requires many steps. A tRNA binds to the primer-binding site (PBS) situated at the 5' end of the viral RNA. RT uses the 3' end of the tRNA primer to perform a short round of RNA-dependent minus-strand DNA synthesis. The reading proceeds through the U5 region and ends after the repeated (R) region which is present at both ends of viral RNA. The portion of the RNA-DNA heteroduplex is digested by the RNase H, resulting in a ssDNA product attached to the tRNA primer. This ssDNA/tRNA hybridizes with the identical R region situated at the 3' end of viral RNA. This template exchange, known as minus-strand DNA strong stop transfer, can be either intra- or intermolecular. RT uses the 3' end of this newly synthesized short ssDNA to perform the RNA-dependent minus-strand DNA synthesis of the whole template. RNase H digests the RNA template except for a polypurine tract (PPT) situated at the 5' end of the genome. It is not clear if both polymerase and RNase H activities are simultaneous. RNase H probably can proceed both in a polymerase-dependent (RNA cut into small fragments by the same RT performing DNA synthesis) and a polymerase-independent mode (cleavage of remaining RNA fragments by free RTs). Secondly, RT performs DNA-directed plus-strand DNA synthesis using the PPT that has not been removed by RNase H as primers. PPT and tRNA primers are then removed by RNase H. The 3' and 5' ssDNA PBS regions hybridize to form a circular dsDNA intermediate. Strand displacement synthesis by RT to the PBS and PPT ends produces a blunt ended, linear dsDNA copy of the viral genome that includes long terminal repeats (LTRs) at both ends (By similarity).
♦ Integrase catalyzes viral DNA integration into the host chromosome, by performing a series of DNA cutting and joining reactions. This enzyme activity takes place after virion entry into a cell and reverse transcription of the RNA genome in dsDNA. The first step in the integration process is 3' processing. This step requires a complex comprising the viral genome, matrix protein and integrase. This complex is called the pre-integration complex (PIC). The integrase protein removes 2 nucleotides from each 3' end of the viral DNA, leaving recessed CA OH's at the 3' ends. In the second step that requires cell division, the PIC enters cell nucleus. In the third step, termed strand transfer, the integrase protein joins the previously processed 3' ends to the 5' ends of strands of target cellular DNA at the site of integration. The last step is viral DNA integration into host chromosome (By similarity).
♦ Gag-Pol polyprotein plays a role in budding and is processed by the viral protease during virion maturation outside the cell. During budding, it recruits, in a PPXY-dependent or independent manner, Nedd4-like ubiquitin ligases that conjugate ubiquitin molecules to Gag, or to Gag binding host factors. Interaction with HECT ubiquitin ligases probably link the viral protein to the host ESCRT pathway and facilitate release (By similarity).
3.4.23.-  ,   2.7.7.49  ,   2.7.7.7  ,   3.1.26.4  ,   2.7.7.-  ,   3.1.-.-  
GO:0003677  ;   GO:0003723  ;   GO:0003887  ;   GO:0003964  ;   GO:0004190  ;  
GO:0004523  ;   GO:0006310  ;   GO:0008270  ;   GO:0015074  ;   GO:0016020  ;  
GO:0019013  ;   GO:0019068  ;   GO:0020002  ;   GO:0039660  ;   GO:0044826  ;  
GO:0046718  ;   GO:0075713  
♦ Gag-Pol polyprotein: Host cell membrane
♦ Lipid-anchor .
♦ Matrix protein p15: Virion .
♦ Capsid protein p30: Virion .
♦ Nucleocapsid protein p10: Virion .
♦DOMAIN 559 629 Peptidase A2.
♦ DOMAIN 739 930 Reverse transcriptase.
♦ DOMAIN 1172 1318 RNase H.
♦ DOMAIN 1442 1600 Integrase catalytic.
MOTIF 109 112 PTAP/PSAP motif.; MOTIF 128 132 LYPX(n)L motif.; MOTIF 161 164 PPXY motif.
X-ray crystallography (3)
3V1O  3V1Q  3V1R  
♦ACT_SITE 564 564 Protease
♦ shared with dimeric partner.
Protein couldn't be modeled using I-Tasser and Raptor X because of length constraints of the software.
Not Available
Virtual screening has been performed using RASPD
  • Million Molecules

Best 20 Hit molecules

    Not Available