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Molecular dynamics simulations of Ago silencing complexes reveal a large repertoire of admissible 'seed-less' targets.


ABSTRACT: To better understand the recognition mechanism of RISC and the repertoire of guide-target interactions we introduced G:U wobbles and mismatches at various positions of the microRNA (miRNA) 'seed' region and performed all-atom molecular dynamics simulations of the resulting Ago-miRNA:mRNA ternary complexes. Our simulations reveal that many modifications, including combinations of multiple G:U wobbles and mismatches in the seed region, are admissible and result in only minor structural fluctuations that do not affect overall complex stability. These results are further supported by analyses of HITS-CLIP data. Lastly, introduction of disruptive mutations revealed a bending motion of the PAZ domain along the L1/L2 'hinge' and a subsequent opening of the nucleic-acid-binding channel. Our findings suggest that the spectrum of a miRNA's admissible targets is different from what is currently anticipated by the canonical seed-model. Moreover, they provide a likely explanation for the previously reported sequence-dependent regulation of unintended targeting by siRNAs.

SUBMITTER: Xia Z 

PROVIDER: S-EPMC3415692 | biostudies-literature | 2012

REPOSITORIES: biostudies-literature

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Molecular dynamics simulations of Ago silencing complexes reveal a large repertoire of admissible 'seed-less' targets.

Xia Zhen Z   Clark Peter P   Huynh Tien T   Loher Phillipe P   Zhao Yue Y   Chen Huang-Wen HW   Ren Pengyu P   Rigoutsos Isidore I   Zhou Ruhong R  

Scientific reports 20120810


To better understand the recognition mechanism of RISC and the repertoire of guide-target interactions we introduced G:U wobbles and mismatches at various positions of the microRNA (miRNA) 'seed' region and performed all-atom molecular dynamics simulations of the resulting Ago-miRNA:mRNA ternary complexes. Our simulations reveal that many modifications, including combinations of multiple G:U wobbles and mismatches in the seed region, are admissible and result in only minor structural fluctuation  ...[more]

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