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Persistent infections in L cells with temperature-sensitive mutants of reovirus
Abstract:
Serial passage of reovirus temperature-sensitive (ts) mutant C(447) produced by passage 9 (P9) a heavily defective population of virus from which the double-stranded RNA genomic segments L(1), L(3), and M(1) were largely missing. Viral cores obtained from this P9 population were heterogeneous with respect to buoyant density in CsCl gradients, suggesting that particles were present with different combinations of deleted segments. Similar observations were made with the E(320) ts mutant of reovirus. By serial passage P15, 90% of the E(320) viral population was defective and the major missing genomic segments were L(1) and L(3). Persistent infections were readily established in monolayer cultures of L cells with P9 of C(447) virus and P15 of E(320) virus and in Vero cells with P9 of C(447) virus. Under similar conditions persistent infections could not be initiated with defective-free populations of C(447) or E(320) viruses. The greater the capacity of defective virus in the population to interfere with viral growth, the more readily persistent infection was initiated. During their maintenance persistently infected cells were subcultured approximately twice a week. More than 80% of the cells continuously produced virus. By subculture 6 the original ts infectious viral component had been replaced by a small-plaque mutant with a ts(+) phenotype. Defective virus was always present in the carrier cells. In addition to the more commonly observed defectives whose cores banded at approximately rho = 1.40 to 1.415 g/ml in CsCl gradients, a new class of defective core was seen banding in the region of 1.34 to 1.36 g/ml. This latter particle, which has not been thoroughly characterized as yet, is termed "light defective." Persistently infected cells underwent periodic crises during their maintenance, during which the cultures partially lysed and then rapidly grew to confluence. Crises corresponded to a burst of infectious virus from the cells and a relatively low concentration of light defectives. During quiescent periods the concentration of light defectives amounted to as much as 98% of the total viral population. The function of light defectives is not yet clear, but it seems essential to assign major importance to defective virus in maintaining persistent infections in this system.
Insights
Serial passage of reovirus mutants generated defective virus populations crucial for establishing persistent infections in cell cultures. These defective reoviruses, including a novel "light defective" type, are essential for maintaining long-term viral presence.
Area of Science:
- Virology
- Molecular Biology
- Cell Biology
Background:
- Reovirus temperature-sensitive (ts) mutants can generate defective viral populations upon serial passage.
- Defective reoviruses are characterized by the absence of specific double-stranded RNA genomic segments.
- The role of defective reoviruses in persistent infections is not fully understood.
Purpose of the Study:
- To investigate the generation and characteristics of defective reovirus populations.
- To determine the role of defective reoviruses in establishing and maintaining persistent infections in cell cultures.
- To characterize novel forms of defective reovirus particles.
Main Methods:
- Serial passage of reovirus ts mutants (C(447) and E(320)) in cell cultures.
- Analysis of viral genomic segments using techniques like CsCl density gradients.
- Initiation and maintenance of persistent infections in L and Vero cells.
- Monitoring viral production and phenotypic changes in persistently infected cells.
Main Results:
- Serial passage of reovirus ts mutants resulted in heavily defective viral populations with missing genomic segments (L1, L3, M1).
- Defective reovirus populations readily established persistent infections, unlike defective-free counterparts.
- Persistently infected cells continuously produced virus and underwent periodic crises, with a shift from ts to ts(+) phenotype.
- A novel class of "light defective" reovirus particles was identified, comprising up to 98% of the viral population during quiescent periods.
Conclusions:
- Defective reovirus particles are essential for initiating and maintaining persistent infections.
- The emergence of defective reovirus, including "light defectives," plays a critical role in the dynamics of persistent viral infections.
- Further characterization of "light defective" reovirus is necessary to elucidate its precise function in persistent infections.