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This protein is divided in three main domains: the N-terminal, the central and the C-terminal domain.
This protein is divided in three main domains: the N-terminal, the central and the C-terminal domain.
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The '''N-terminal domain''' (1-49) presents a HHCC motif which is a '''pseudo zinc-finger''' complexing with zinc ions. The zinc ejection impedes the 3'-processing process and pertubs the integrase multimerisation<ref name="Carayon">PMID:20164093</ref>. Therefore the presence of this ion is necessary for the virus life cycle.
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The '''N-terminal domain''' (1-49) presents a HHCC motif which is a pseudo zinc-finger complexing with zinc ions. The zinc ejection impedes the 3'-processing process and pertubs the integrase multimerisation<ref name="Carayon">PMID:20164093</ref>. Therefore the presence of this ion is necessary for the virus life cycle.
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The '''central domain''' (50-213) which corresponds to the catalytic domain contains the <scene name='60/604477/Catalytic_triad/1'>catalytic triad</scene> by association of '''two Asp and one Glu''' residues that coordinate bivalent ions, Cd++ in this structure but Mg++ or Mn++ ''in vivo'' <ref name="Liao">PMID:21426159</ref>. There is also an analogy of structure with the transposase core domain and <scene name='60/604477/Residues_186-194/1'>residues 186-194</scene> help to interact with DNA by contact the major groove of viral and cellular DNA<ref name="Chen">PMID:10890912</ref>. This domain contains <scene name='60/604477/Structure/2'>residues</scene> between the 170-180 position involved in the packaging of the Uracil DNA glycosylase ('''UNG2''')<ref name="Zheng">PMID:23863879</ref> essential for the viral replication.
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The '''central domain''' (50-213) which corresponds to the catalytic domain contains the <scene name='60/604477/Catalytic_triad/1'>catalytic triad</scene> by association of two aspartates and one glutamate residues that coordinate bivalent ions, Cd++ in this structure but Mg++ or Mn++ ''in vivo'' <ref name="Liao">PMID:21426159</ref>. There is also an analogy of structure with the transposase core domain and <scene name='60/604477/Residues_186-194/1'>residues 186-194</scene> help to interact with DNA by contact the major groove of viral and cellular DNA<ref name="Chen">PMID:10890912</ref>. This domain contains <scene name='60/604477/Structure/2'>residues</scene> between the 170-180 position involved in the packaging of the Uracil DNA glycosylase ('''UNG2''')<ref name="Zheng">PMID:23863879</ref> essential for the viral replication.
The '''flexible elbow''' (195-220) is a 26-aa alpha-helix called <scene name='60/604477/Flexible_elbow/1'>alpha 6</scene> helix that links the C-ter domain to the catalytic core domain. It can be see like a flexible elbow because it offers conformation changes of the two previous domains during integration. Another property of this intermediary domain is the ability to contact the DNA phosphate backbone thanks to three main residues : K211, K215 and K219<ref name="Chen">PMID:10890912</ref>.
The '''flexible elbow''' (195-220) is a 26-aa alpha-helix called <scene name='60/604477/Flexible_elbow/1'>alpha 6</scene> helix that links the C-ter domain to the catalytic core domain. It can be see like a flexible elbow because it offers conformation changes of the two previous domains during integration. Another property of this intermediary domain is the ability to contact the DNA phosphate backbone thanks to three main residues : K211, K215 and K219<ref name="Chen">PMID:10890912</ref>.
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The '''C-terminale domain''' (214-288) is a domain composed of five beta-sheets. It allows the '''DNA binding''' in a non-specific manner, HIV-1 IN dimer-dimer contacts, has a tethering role for DNA during the integration process and is also involved in the stability of the complex with DNA<ref name="Tsuruyama">PMID:23341952</ref>.
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The '''C-terminale domain''' (214-288) is a domain composed of five beta-sheets. It allows the DNA binding in a non-specific manner, HIV-1 IN dimer-dimer contacts, has a tethering role for DNA during the integration process and is also involved in the stability of the complex with DNA<ref name="Tsuruyama">PMID:23341952</ref>.
The 3' processing reaction is mediated by integrase dimers formed at each viral DNA extremities. Further, these two dimers will form the integrase tetramer which is the active form for the concerted integration<ref name="Dells">PMID: 19091057</ref>.
The 3' processing reaction is mediated by integrase dimers formed at each viral DNA extremities. Further, these two dimers will form the integrase tetramer which is the active form for the concerted integration<ref name="Dells">PMID: 19091057</ref>.
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The recognition of the viral DNA, specifically the '''L'''ong-'''T'''erminal '''R'''epeat ('''LTR''') found at either end of proviral DNA, is an important step for the '''3' processing''' reaction. One of the key elements which performs the specific binding between the integrase and the cognate viral DNA is the <scene name='60/604477/Alpha4_helix/1'>alpha4 helix</scene> that is situated at the catalytic core surface<ref name="Hobaika">PMID:19808934</ref>.
The recognition of the viral DNA, specifically the '''L'''ong-'''T'''erminal '''R'''epeat ('''LTR''') found at either end of proviral DNA, is an important step for the '''3' processing''' reaction. One of the key elements which performs the specific binding between the integrase and the cognate viral DNA is the <scene name='60/604477/Alpha4_helix/1'>alpha4 helix</scene> that is situated at the catalytic core surface<ref name="Hobaika">PMID:19808934</ref>.
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In order to have a tight binding, the integrase-DNA interaction requires optimal number of contacts such as hydrogen bonds, van der Waals forces and ionic interactions between DNA elements (bases, phosphates and sugars) and amino acid chains. Among the alpha4 helix residues, <scene name='60/604477/Lys_residues_alpha4_helix/1'>Lys156 and Lys159</scene> have a main role in the specific binding of integrase to DNA by forming bidentate hydrogen bonds which are higher specific than single hydrogen bonds<ref name="Hobaika">PMID:19808934</ref>. Moreover, by being positively charged, the lysine side chain provides ionic interactions as well. In addition, Lys-rich sequence implicated in this specific interaction include these two lysines.
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In order to have a tight binding, the integrase-DNA interaction requires optimal number of contacts such as hydrogen bonds, van der Waals forces and ionic interactions between DNA elements (bases, phosphates and sugars) and amino acid chains. Among the alpha4 helix residues, <scene name='60/604477/Lys_residues_alpha4_helix/2'>Lys156 and Lys159</scene> have a main role in the specific binding of integrase to DNA by forming bidentate hydrogen bonds which are higher specific than single hydrogen bonds<ref name="Hobaika">PMID:19808934</ref>. Moreover, by being positively charged, the lysine side chain provides ionic interactions as well. In addition, Lys-rich sequence implicated in this specific interaction include these two lysines.
It has also be shown that <scene name='60/604477/Gln_alpha4_helix/1'>Gln148 residue</scene> contacts on adenine and cytosine of the 5' AC overhang in processed LTR<ref name="Hobaika">PMID:19808934</ref>.
It has also be shown that <scene name='60/604477/Gln_alpha4_helix/1'>Gln148 residue</scene> contacts on adenine and cytosine of the 5' AC overhang in processed LTR<ref name="Hobaika">PMID:19808934</ref>.
It also seems that there is a different sensitivity to the viral DNA sequence (LTR) depending on the presence of Mg++ or Mn++ suggesting that specific contacts between the integrase and the viral DNA extremity are more favored in a Mg++ containing environment<ref name="Carayon">PMID:20164093</ref>.
It also seems that there is a different sensitivity to the viral DNA sequence (LTR) depending on the presence of Mg++ or Mn++ suggesting that specific contacts between the integrase and the viral DNA extremity are more favored in a Mg++ containing environment<ref name="Carayon">PMID:20164093</ref>.

Revision as of 11:45, 9 January 2015

X-ray structure of the HIV-1 integrase catalytic core domain

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