Invention Grant
US07985575B2 Single protein production in living cells facilitated by a messenger RNA interferase
有权
由信使RNA干扰酶促进活细胞中的单一蛋白质生成
- Patent Title: Single protein production in living cells facilitated by a messenger RNA interferase
- Patent Title (中): 由信使RNA干扰酶促进活细胞中的单一蛋白质生成
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Application No.: US11750314Application Date: 2007-05-17
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Publication No.: US07985575B2Publication Date: 2011-07-26
- Inventor: Masayori Inouye , Junjie Zhang , Motoo Suzuki
- Applicant: Masayori Inouye , Junjie Zhang , Motoo Suzuki
- Applicant Address: US NJ Somerset
- Assignee: University of Medicine and Dentistry of New Jersey
- Current Assignee: University of Medicine and Dentistry of New Jersey
- Current Assignee Address: US NJ Somerset
- Agency: Lowenstein Sandler PC
- Main IPC: C12N1/21
- IPC: C12N1/21

Abstract:
The present invention describes a single-protein production (SPP) system in living E. coli cells that exploits the unique properties of an mRNA interferase, for example, MazF, a bacterial toxin that is a single stranded RNA- and ACA-specific endoribonuclease, which efficiently and selectively degrades all cellular mRNAs in vivo, resulting in a precipitous drop in total protein synthesis. Concomitant expression of MazF and a target gene engineered to encode an ACA-less mRNA results in sustained and high-level (up to 90%) target expression in the virtual absence of background cellular protein synthesis. Remarkably, target synthesis continues for at least 4 days, indicating that cells retain transcriptional and translational competence despite their growth arrest. SPP technology works well for yeast and human proteins, even a bacterial integral membrane protein. This novel system enables unparalleled signal to noise ratios that should dramatically simplify structural and functional studies of previously intractable but biologically important proteins. The present invention also provides an optimized condensed single protein production system.
Public/Granted literature
- US20100035346A1 SINGLE PROTEIN PRODUCTION IN LIVING CELLS FACILITATED BY A MESSENGER RNA INTERFERASE Public/Granted day:2010-02-11
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