Novel Insights into Guide RNA 5'-Nucleoside/Tide Binding by Human Argonaute 2

Publication date

2016

Authors

Kalia, Munishikha
Willkomm, Sarah
Claussen, Jens Christian
Restle, Tobias
Bonvin, Alexandre M J JORCID 0000-0001-7369-1322ISNI 0000000396501354

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Document Type

Article
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Abstract

The human Argonaute 2 (hAgo2) protein is a key player of RNA interference (RNAi). Upon complex formation with small non-coding RNAs, the protein initially interacts with the 5'-end of a given guide RNA through multiple interactions within the MID domain. This interaction has been reported to show a strong bias for U and A over C and G at the 5'-position. Performing molecular dynamics simulations of binary hAgo2/OH-guide-RNA complexes, we show that hAgo2 is a highly flexible protein capable of binding to guide strands with all four possible 5'-bases. Especially, in the case of C and G this is associated with rather large individual conformational rearrangements affecting the MID, PAZ and even the N-terminal domains to different degrees. Moreover, a 5'-G induces domain motions in the protein, which trigger a previously unreported interaction between the 5'-base and the L2 linker domain. Combining our in silico analyses with biochemical studies of recombinant hAgo2, we find that, contrary to previous observations, hAgo2 is capable of functionally accommodating guide strands regardless of the 5'-base.

Keywords

RNAi, MD, enzyme kinetics, pre-steady-state kinetics, fluorescence spectroscopy

Citation

Kalia, M, Willkomm, S, Claussen, J C, Restle, T & Bonvin, A M J J 2016, 'Novel Insights into Guide RNA 5'-Nucleoside/Tide Binding by Human Argonaute 2', International Journal of Molecular Sciences, vol. 17, no. 1, 22. https://doi.org/10.3390/ijms17010022