DP00410_C011: IntegraseFASTA viewXML view

General information
DisProt:DP00410_C011
Name:Integrase
Synonym(s):POL_HV1N5
IN
HIV1 IN
cleavage product 11 of Gag-Pol polyprotein
First appeared in release:Release 5.3 (09/21/2010)
UniProt:P12497
UniGene: 
SwissProt: POL_HV1N5
TrEMBL:  
NCBI (GI): 6006964
Source organism:Human immunodeficiency virus type 1 (isolate NY5 group M subtype B)(HIV-1)
Sequence length:288
Percent disordered:5%
Homologues: 


Native sequence

        10         20         30         40         50         60
         |          |          |          |          |          |
FLDGIDKAQE EHEKYHSNWR AMASDFNLPP VVAKEIVASC DKCQLKGEAM HGQVDCSPGI - 60
WQLDCTHLEG KVILVAVHVA SGYIEAEVIP AETGQETAYF LLKLAGRWPV KTVHTDNGSN - 120
FTSTTVKAAC WWAGIKQEFG IPYNPQSQGV IESMNKELKK IIGQVRDQAE HLKTAVQMAV - 180
FIHNFKRKGG IGGYSAGERI VDIIATDIQT KELQKQITKI QNFRVYYRDS RDPVWKGPAK - 240
LLWKGEGAVV IQDNSDIKVV PRRKAKIIRD YGKQMAGDDC VASRQDED



Functional narrative    

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, Vpr 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, the PIC enters cell nucleus. This process is mediated through integrase and Vpr proteins, and allow the virus to infect a non dividing cell. This ability to enter the nucleus is specific of lentiviruses, other retroviruses cannot and rely on cell division to access cell chromosomes. 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 5'-ends are produced by integrase-catalyzed staggered cuts, 5 bp apart. A Y-shaped, gapped, recombination intermediate results, with the 5'-ends of the viral DNA strands and the 3' ends of target DNA strands remaining unjoined, flanking a gap of 5 bp. The last step is viral DNA integration into host chromosome. This involves host DNA repair synthesis in which the 5 bp gaps between the unjoined strands are filled in and then ligated. Since this process occurs at both cuts flanking the HIV genome, a 5 bp duplication of host DNA is produced at the ends of HIV-1 integration. Alternatively, Integrase may catalyze the excision of viral DNA just after strand transfer, this is termed disintegration. (UniProt) Integrase is a cleavage product 11 of Gag-Pol polyprotein, encompassing aa positions 1148-1435.

Region 1: 139-153

Map of ordered and disordered regions







Note: 'Mouse' over a region to see the start and stop residues. Click on a region to see detailed information.


Region 1
Type:Disordered - Extended
Name:Catalytic loop
Location:139 - 153
Length:15
Region sequence:

FGIPYNPQSQGVIES

Modification type: Native
PDB: 1BI4:C
Structural/functional type: Function arises from the disordered state
Functional classes: Modification site
Functional subclasses: Substrate/ligand binding
Detection methods:
  1. X-ray crystallography (pH: 7.5; DTT 7.5 mM; HEPES-HCl 50 mM; protein 0.13 mM; Sodium citrate 435 mM)

References:
  1. Maignan S, Guilloteau JP, Zhou-Liu Q, Clément-Mella C, Mikol V. "Crystal structures of the catalytic domain of HIV-1 integrase free and complexed with its metal cofactor: high level of similarity of the active site with other viral integrases." J. Mol. Biol.. 1998; 282(2): 359-68. PubMed: 9735293

Comments:
 



References

  1. Maignan S, Guilloteau JP, Zhou-Liu Q, Clément-Mella C, Mikol V. "Crystal structures of the catalytic domain of HIV-1 integrase free and complexed with its metal cofactor: high level of similarity of the active site with other viral integrases." J. Mol. Biol.. 1998; 282(2): 359-68. PubMed: 9735293



Comments


Sent for AV 9-20-10 PubMed: (9735293)



Previous entry DP00410 has been split into polyprotein (DP00410) and cleavage product DP00410_C011. Disorder is characterized on the cleavage product.


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