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K M Takayama

Publications and source records attributed to K M Takayama.

3 recordsLinked to original sources

Antisense RNA-mediated inhibition of mouse hepatitis virus replication in L2 cells.

We have successfully used antisense RNA to inhibit replication of the mouse hepatitis virus (MHV) in a cell culture system. MHV is a single-stranded RNA virus of positive polarity. Mouse L2 cells were stably transfected with an antisense construct that targets regions of genes 5 and 6 of the virus. High levels of expression from this construct, which is under control of the human elongation factor 1 alpha promoter, were found. After infection of the antisense cell lines with MHV, replication of the virus was significantly reduced compared with control cells. In a viral plaque assay, smaller plaques were found in the antisense cell lines. In addition, up to a 92% inhibition in the number of viral particles produced in one antisense cell line could be seen. This inhibitory effect decreased at longer (> 16 hour) infection times. It was possible to both increase the amount of inhibition and prolong the inhibitory effect by reducing the multiplicity of infection. Our results suggest that antisense RNA may be an effective tool to slow down progression of MHV infection in mice.

Animals↗

Antisense RNA.

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Animals↗

Overproduction of an antisense RNA containing the oop RNA sequence of bacteriophage lambda induces clear plaque formation.

We have constructed an IPTG-inducible plasmid which overexpresses oop RNA sequences in Escherichia coli. Infection of these transformed E. coli cells (SB221/pOOP5) with lambda+ phage produced clear plaques, whereas lambda+ infection of cells transformed with the plasmid vector (SB221/pJDC406) or the plasmid expressing the oop RNA transcript in the other orientation (SB221/pOOP9) gave rise to turbid plaques characteristic of lambda+. Calculations of the percentage of infected cells forming lysogens show a 6-fold decrease in the absence of isopropyl beta-D-thiogalactoside (IPTG) and a 20-fold decrease in the presence of IPTG for SB221/pOOP5 as compared to both SB221/pJDC406 and SB221/pOOP9. We have thus shown that the overexpression of oop RNA favors the lytic mode of lambda development.

Bacteriophage lambda↗