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Defective Friend spleen focus-forming virus: interfering properties and isolation free from standard
Abstract:
Defective Friend spleen focus-forming virus (SFFV) is able to interfere with the ability of its naturally occurring leukemia-inducing helper virus (LLV-F) to induce XC plaque formation in several different strains of mouse embryo cells. This interference has been observed by using two different SFFV preparations, one contained in an NB-tropic stock of Friend virus (FV) complex, and the second present in a C57BL-adapted strain of FV complex containing an associated B-tropic LLV-F helper. The LLV-F in NB-tropic FV complex effectively induced XC plaques in C57BL/6 (Fv-1(bb); Fv-2(rr)) mouse embryo fibroblasts (MEF) only in the absence of coinfecting SFFV, indicating that Fv-2-associated resistance to SFFV-induced focus formation in vivo does not necessarily extend to the restriction of SFFV function(s) in vitro (i.e., in Fv-2(rr) C57BL MEF). SFFV interference appears to be an intracellular event since LLV-F can adsorb onto, penetrate, and rescue defective murine sarcoma virus (MSV) from transformed 3T3FL S(+)L(-) cells with equal efficiency in the presence and absence of SFFV. However, significantly fewer LLV-infected S(+)L(-) cells released LLV-F progeny if SFFV was present. These observations suggest that Friend SFFV may be classified as a defective, interfering (DI) particle. Further support for this conclusion has come from studies designed to investigate two physical properties of defective SFFV particles. SFFV layered onto a 0 to 20% sucrose sedimentation gradient was recovered as a symmetrical band of virus that sedimented more slowly than standard LLV-F particles. Pooled SFFV-containing gradient samples contained visualizable type C virus particles and occasionally small amounts of detectable LLV-F. In an attempt to determine the buoyant density of sedimentation gradient-purified SFFV, pooled SFFV samples were layered onto a 25 to 50% sucrose equilibrium density gradient and were centrifuged to equilibrium. Greater than 50% of the infectious SFFV originally layered onto this gradient was recovered and seen as a narrow symmetrical band with peak SFFV infectivity at a sucrose density of 1.14 g/ml. The observed difference between SFFV and LLV-F buoyant densities appears to be related to an inherent physical property of each virus. Mixtures of these two viruses express the buoyant density of that virus population which is in excess in fabricated FV complexes probably due to the formation of SFFV-LLV aggregates. Finally, gradient-purified SFFV failed to induce XC plaques in MEF and did not function to rescue MSV as expected since SFFV itself is replication defective.
Insights
Defective Friend spleen focus-forming virus (SFFV) acts as a defective, interfering (DI) particle, hindering leukemia-inducing helper virus (LLV-F) replication. Physical properties of SFFV, like slower sedimentation and lower buoyant density, support its classification as a DI particle.
Area of Science:
- Virology
- Molecular Biology
- Oncology
Background:
- Friend spleen focus-forming virus (SFFV) is a defective virus that requires a helper virus for replication.
- Leukemia-inducing helper virus (LLV-F) is the naturally occurring helper virus for SFFV.
- SFFV interferes with LLV-F's ability to induce XC plaque formation in mouse embryo cells.
Purpose of the Study:
- To investigate the mechanism of interference between defective SFFV and LLV-F.
- To determine if SFFV can be classified as a defective, interfering (DI) particle.
- To characterize the physical properties of SFFV particles.
Main Methods:
- Co-infection experiments with SFFV and LLV-F in mouse embryo fibroblasts (MEF).
- Assessment of LLV-F adsorption, penetration, and murine sarcoma virus (MSV) rescue.
- Analysis of SFFV and LLV-F physical properties using sucrose sedimentation and equilibrium density gradients.
Main Results:
- SFFV interferes with LLV-F-induced XC plaque formation, an intracellular event.
- SFFV-infected cells release fewer LLV-F progeny, suggesting DI particle behavior.
- SFFV exhibits slower sedimentation and a lower buoyant density (1.14 g/ml) compared to LLV-F.
Conclusions:
- Friend SFFV exhibits characteristics consistent with a defective, interfering (DI) particle.
- The physical properties of SFFV, including sedimentation rate and buoyant density, differentiate it from LLV-F.
- SFFV's interference mechanism and physical properties provide insights into viral evolution and pathogenesis.