Reference: Kehayova PD and Liu DR (2007) In vivo evolution of an RNA-based transcriptional silencing domain in S. cerevisiae. Chem Biol 14(1):65-74

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Abstract


Starting from a random RNA library expressed in yeast cells, we evolved an RNA-based transcriptional silencing domain with potency comparable to that observed when Sir1, a known silencing protein, is localized to a promoter. Using secondary-structure predictions and site-directed mutagenesis, we dissected the functional domains of the most active evolved RNA transcriptional silencer. Observed RNA-based silencing was general, rather than gene specific, and the origin recognition complex was required for full activity of the evolved RNA. Using genetic studies, we demonstrated that the RNA-based silencer acts through a Sir protein-dependent mechanism. Our results highlight the value of evolving RNA libraries as probes of biological processes and suggest the possible existence of natural RNA-based, RNAi-independent gene silencers.

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Journal Article | Research Support, Non-U.S. Gov't
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Kehayova PD, Liu DR
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