Argonaute: Difference between revisions

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The majority of the RNA binding residues are located in the PIWI domain. The RNA molecule is bound in a conformation similar to DNA molecules in prokaryotic structures. The fact that the RNA bases 1 to 7 are well-defined in the electron density map hint at an uniform conformation of this region, perhaps forced by the protein. <scene name='Argonaute/Ago2-y529/5'>The 5' base of the RNA molecule interacts</scene> with Y529 through base-stacking, along with hydrogen bonds to this same tyrosine residue, K533, N545 and K566. <scene name='Argonaute/Ago2-water/4'>Water mediates a couple of hydrogen bonds</scene> between the 5' phosphate and K570, R812 and the carboxyl group of A859. As such, the majority of the interactions between Argonaute and the RNA molecule are electrostatic in nature, arising from hydrogen bonding and salt bridges to the phosphate backbone. Van der Waals interactions between the ribose sugar ring and protein residues also contribute to the overall stabilization of the interaction. Residues S220, R357, R714 and R761 of the MID domain, together with a part of the PIWI domain bind the bases 7-9 <ref name='ref1'/>.
The majority of the RNA binding residues are located in the PIWI domain. The RNA molecule is bound in a conformation similar to DNA molecules in prokaryotic structures. The fact that the RNA bases 1 to 7 are well-defined in the electron density map hint at an uniform conformation of this region, perhaps forced by the protein. <scene name='Argonaute/Ago2-y529/5'>The 5' base of the RNA molecule interacts</scene> with Y529 through base-stacking, along with hydrogen bonds to this same tyrosine residue, K533, N545 and K566. <scene name='Argonaute/Ago2-water/4'>Water mediates a couple of hydrogen bonds</scene> between the 5' phosphate and K570, R812 and the carboxyl group of A859. As such, the majority of the interactions between Argonaute and the RNA molecule are electrostatic in nature, arising from hydrogen bonding and salt bridges to the phosphate backbone. Van der Waals interactions between the ribose sugar ring and protein residues also contribute to the overall stabilization of the interaction. Residues S220, R357, R714 and R761 of the MID domain, together with a part of the PIWI domain bind the bases 7-9 <ref name='ref1'/>.
== 3D Structures of argonaute ==
[[Argonaute 3D structures]]
</StructureSection>
</StructureSection>
== 3D Structures of argonaute ==
== 3D Structures of argonaute ==
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**[[3luc]], [[3luk]] – hAGO2 MID domain <br />
**[[3luc]], [[3luk]] – hAGO2 MID domain <br />
**[[3lud]], [[3lug]], [[3luh]], [[3luj]], [[3qx8]], [[3qx9]] – hAGO2 MID domain + nucleotide<br />
**[[3lud]], [[3lug]], [[3luh]], [[3luj]], [[3qx8]], [[3qx9]] – hAGO2 MID domain + nucleotide<br />
**[[4w5n]], [[4w5q]], [[4w5r]], [[4w5t]], [[5js1]], [[4z4i]], [[4z4h]], [[4z4g]], [[4z4f]], [[4z4e]], [[4z4d]], [[4z4c]], [[4ola]],  [[5js2]], [[5wea]] – hAGO2 (mutant) + RNA <br />
**[[4w5n]], [[4w5q]], [[4w5r]], [[4w5t]], [[5js1]], [[4z4i]], [[4z4h]], [[4z4g]], [[4z4f]], [[4z4e]], [[4z4d]], [[4z4c]], [[4ola]],  [[5js2]], [[5wea]], [[6cbd]] – hAGO2 (mutant) + RNA <br />
**[[4olb]] - hAGO2 (mutant) + RNA + tryptophan<br />
**[[4olb]] - hAGO2 (mutant) + RNA + tryptophan<br />
**[[4f3t]], [[4w5o]], [[5t7b]] – hAGO2 + RNA <br />
**[[4f3t]], [[4w5o]], [[5t7b]] – hAGO2 + RNA <br />

Revision as of 08:21, 20 March 2019

X-ray structure of the entire human Argonaute2 protein complex with RNA (red) (PDB 4ola) at 2.3Å resolution

Drag the structure with the mouse to rotate

3D Structures of argonaute

Updated on 20-March-2019

External Resources

Uniprot: Q9UKV8

Wikipedia: Piwi Proteins

Wikipedia: Argonaute Proteins

Animation showing the function of Argonaute during RNA interference

References

Proteopedia Page Contributors and Editors (what is this?)

João Rodrigues, Michal Harel, Alexander Berchansky, Joel L. Sussman