Discovery of Rules for CRISPR Advances Metabolic Engineering

Research describes an aspect of the CRISPR/Cas9 gene-editing method, which makes use of dCas9, a disabled protein

Written byMary L. Martialay-Rensselaer Polytechnic Institute News Office
| 5 min read
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Discovery of rules that govern a variation of the CRISPR/Cas9 gene-editing method makes it possible to use living cells to manufacture valuable metabolic compounds like pharmaceuticals and nutraceuticals. Researchers at Rensselaer Polytechnic Institute (RPI) have developed new tools for controlling the signaling pathways in cells to manufacture compounds, dialing down production of unwanted compounds, and increasing production of valuable compounds.

The research, published in Nucleic Acids Research, describes an aspect of the CRISPR/Cas9 gene-editing method, which makes use of dCas9, a disabled protein. Specifically, the researchers describe how to vary a snippet of RNA to create multiple tools that use dCas9, each with the ability to block activity at a single site along complex multi-step signaling pathways, with no crosstalk.

Related Article: Microbiologists Advance CRISPR Research 

“CRISPR is one of the most powerful gene editing techniques available, but until now, we’ve only seen it used in healthcare. This is the first real metabolic engineering application to make high-value products using this gene editing approach,” said Mattheos Koffas, who led the research. “If you look ten years into the future, people might be controlling thousands of genes in an organism, producing quite valuable products.”

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