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Biomedical subjects

Masaru Tsunemi

Publications and source records attributed to Masaru Tsunemi.

2 recordsLinked to original sources

Functional gene discovery using hybrid ribozyme libraries.

Hybrid ribozymes that couple the cleavage activity of hammerhead ribozymes with the unwinding activity of RNA helicases are powerful tools in the study of cell genetics and pharmaceutical drug development. They are useful for targeting a specific gene as well as screening functional genes to show phenotypic alterations. By randomizing the binding arms within the ribozymes, we can create a library of ribozymes that are capable of cleaving any mRNA. After introducing the library into cells and recovering the sequence information of ribozymes that alter the cell phenotype of interest, genes that are responsible for the specific phenotype can be identified. This chapter describes a method known as the gene-discovery system to identify novel functional genes related to a specific phenotype. Our gene-discovery system should be a powerful tool for post-genome research.

Base Sequence↗

A functional gene discovery in cell differentiation by hybrid ribozyme and siRNA libraries.

Recently, we developed a gene discovery system that can identify functional genes using a randomized hybrid ribozyme library. In this system, inhibition of the expression of a particular gene by active ribozymes was reflected by a change in a particular phenotype, the method allowed the identification of functional genes. In the case of identification of functional genes for apoptosis pathways, we identified many pro-apoptotic genes in TNF-alpha and Fas-mediated apoptosis pathways. In this study, we tried to identify the functional genes that are necessary for the retinoic acid (RA)-induced cell differentiation using randomized ribozyme and siRNA libraries. We succeeded to identify the several differentiation factors. Therefore, our gene discovery system based on randomized ribozyme and siRNA libraries are high potential to identify the differentiation and undifferentiation factors in the post genome era.

Cell Differentiation↗