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Isolation of Cognate RNA-protein Complexes from Cells Using Oligonucleotide-directed Elution
Published on: January 16, 2017
The Gag cleavage product, p12, is a functional constituent of the murine leukemia virus pre-integration complex
Adi Prizan-Ravid1, Efrat Elis, Nihay Laham-Karam
1Department of Cell Research and Immunology, The George S Wise Faculty of Life Sciences, Tel Aviv University, Tel Aviv, Israel.
Abstract:
The p12 protein is a cleavage product of the Gag precursor of the murine leukemia virus (MLV). Specific mutations in p12 have been described that affect early stages of infection, rendering the virus replication-defective. Such mutants showed normal generation of genomic DNA but no formation of circular forms, which are markers of nuclear entry by the viral DNA. This suggested that p12 may function in early stages of infection but the precise mechanism of p12 action is not known. To address the function and follow the intracellular localization of the wt p12 protein, we generated tagged p12 proteins in the context of a replication-competent virus, which allowed for the detection of p12 at early stages of infection by immunofluorescence. p12 was found to be distributed to discrete puncta, indicative of macromolecular complexes. These complexes were localized to the cytoplasm early after infection, and thereafter accumulated adjacent to mitotic chromosomes. This chromosomal accumulation was impaired for p12 proteins with a mutation that rendered the virus integration-defective. Immunofluorescence demonstrated that intracellular p12 complexes co-localized with capsid, a known constituent of the MLV pre-integration complex (PIC), and immunofluorescence combined with fluorescent in situ hybridization (FISH) revealed co-localization of the p12 proteins with the incoming reverse transcribed viral DNA. Interactions of p12 with the capsid and with the viral DNA were also demonstrated by co-immunoprecipitation. These results imply that p12 proteins are components of the MLV PIC. Furthermore, a large excess of wt PICs did not rescue the defect in integration of PICs derived from mutant p12 particles, demonstrating that p12 exerts its function as part of this complex. Altogether, these results imply that p12 proteins are constituent of the MLV PIC and function in directing the PIC from the cytoplasm towards integration.
Insights
Murine leukemia virus (MLV) p12 protein is crucial for viral DNA integration. This study reveals p12 forms complexes with viral DNA and capsid, directing the pre-integration complex (PIC) for successful nuclear entry and integration.
Area of Science:
- Virology
- Molecular Biology
- Cellular Biology
Background:
- The p12 protein, a murine leukemia virus (MLV) cleavage product, is implicated in early viral infection stages.
- Mutations in p12 lead to replication defects, specifically hindering nuclear entry of viral DNA, but its precise role remains unclear.
Purpose of the Study:
- To elucidate the function and intracellular localization of the wild-type (wt) p12 protein during MLV infection.
- To determine if p12 is a component of the MLV pre-integration complex (PIC).
Main Methods:
- Generated tagged p12 proteins in replication-competent MLV for immunofluorescence detection.
- Utilized immunofluorescence, co-immunoprecipitation, and FISH to track p12 localization and interactions.
- Assessed the impact of p12 mutations on viral DNA integration.
Main Results:
- Tagged p12 localized to cytoplasmic puncta and accumulated near mitotic chromosomes, dependent on viral integration competence.
- p12 complexes co-localized with capsid and viral DNA, indicating PIC association.
- p12 interactions with capsid and viral DNA were confirmed via co-immunoprecipitation.
Conclusions:
- p12 protein is a constituent of the MLV pre-integration complex (PIC).
- p12 functions within the PIC to facilitate the transport of viral DNA from the cytoplasm towards integration.
- p12's role is essential and exerted as part of the PIC complex.
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