Controlling Mammalian Gene Expression by Allosteric Hepatitis Delta Virus Ribozymes

Yoko Nomura, Linlin Zhou, Anh Miu, Yohei Yokobayashi

ACS Synthetic Biology · 2013 · 89 citations · 22 references

DOIFull text

Open access

Abstract

We engineered small molecule responsive allosteric ribozymes based on the genomic hepatitis delta virus (HDV) ribozyme by replacing the P4-L4 stem-loop with an RNA aptamer through a connector stem. When embedded in the 3' untranslated region of a reporter gene mRNA, these RNA devices enabled regulation of cis-gene expression by theophylline and guanine by up to 29.5-fold in mammalian cell culture. Furthermore, a NOR logic gate device was constructed by placing two engineered ribozymes in tandem, demonstrating the modularity of the RNA devices. The significant improvement in the regulatory dynamic range (ON/OFF ratio) of the RNA devices based on the HDV ribozyme should provide new opportunities for practical applications.

References

22