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Journal of Virology, October 2000, p. 9802-9807, Vol. 74, No. 20
0022-538X/00/$04.00+0
Copyright © 2000, American Society for Microbiology. All rights reserved.

Replicon Vectors Derived from Sindbis Virus and Semliki Forest Virus That Establish Persistent Replication in Host Cells

Silvia Perri,* David A. Driver, Jason P. Gardner, Scott Sherrill, Barbara A. Belli, Thomas W. Dubensky Jr., and John M. Polo

Vaccines and Gene Therapy, Chiron Corporation, Emeryville, California 94608

Received 24 April 2000/Accepted 26 July 2000

Alphavirus replicon vectors are well suited for applications where transient, high-level expression of a heterologous gene is required. Replicon vector expression in cells leads to inhibition of host macromolecular synthesis, culminating in eventual cell death by an apoptotic mechanism. For many applications, including gene expression studies in cultured cells, a longer duration of transgene expression without resulting cytopathic effects is useful. Recently, noncytopathic Sindbis virus (SIN) variants were isolated in BHK cells, and the mutations responsible were mapped to the protease domain of nonstructural protein 2 (nsP2). We report here the isolation of additional variants of both SIN and Semliki Forest virus (SFV) replicons encoding the neomycin resistance gene that can establish persistent replication in BHK cells. The SIN and SFV variant replicons resulted from previously undescribed mutations within one of three discrete regions of the nsP2 gene. Differences among the panel of variants were observed in processing of the nonstructural polyprotein and in the ratios of subgenomic to genomic RNAs. Importantly, high-level expression of a heterologous gene was retained with most replicons. Finally, in contrast to previous studies, efficient packaging was obtained with several of the variant replicons. This work expands the utility of noncytopathic replicons and the understanding of how alphavirus replicons establish persistent replication in cultured cells.


* Corresponding author. Mailing address: Chiron Corporation, 4560 Horton St., MS 4.3, Emeryville, CA 94608. Phone: (510) 923-8144. Fax: (510) 923-2586. E-mail: silvia_perri{at}cc.chiron.com.


Journal of Virology, October 2000, p. 9802-9807, Vol. 74, No. 20
0022-538X/00/$04.00+0
Copyright © 2000, American Society for Microbiology. All rights reserved.



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