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Updated: May 6, 2026

Merkel Cell Polyomavirus Infection and Detection
Published on: February 7, 2019
Promyelocytic leukemia protein is a cell-intrinsic factor inhibiting parvovirus DNA replication
Angela M Mitchell1, Matthew L Hirsch, Chengwen Li
1Gene Therapy Center, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, USA.
Abstract:
Tripartite motif proteins are important viral restriction factors and affect processes ranging from uncoating to transcription to immune signaling. Specifically, the promyelocytic leukemia protein (TRIM19; also called PML) is a viral restriction factor inhibiting processes from uncoating to transcription to cell survival. Here we investigated PML's effect on adeno-associated virus (AAV), a parvovirus used for gene delivery. Although dependovirus (AAV) and autonomous parvovirus (minute virus of mice) replication centers can colocalize with PML, PML's functional effect on parvoviruses is unknown. Using PML knockout mice, we determined that PML knockout enhances recombinant AAV2 (rAAV2) transduction at a range of vector doses in both male and female mice. In fact, male and female PML knockout mice exhibited up to 56-fold and 28-fold increases in transduction, respectively. PML inhibited several rAAV serotypes, suggesting a conserved mechanism, and organ specificity correlated with PML expression. Mechanistically, PML inhibited rAAV second-strand DNA synthesis, precluding inhibition of self-complementary rAAV, and did not affect the prior steps in transduction. Furthermore, we confirmed the effect of human PML on rAAV transduction through small interfering RNA (siRNA)-mediated knockdown in HuH7 cells and determined that the highest level of inhibition was due to effects of PML isoform II (PMLII). Overexpression of PMLII resulted in inhibition of second-strand synthesis, vector production, and genome replication. Moreover, wild-type AAV2 production and infectivity were also inhibited by PMLII, demonstrating a PML interaction with wild-type AAV. These data have important implications for AAV-mediated gene therapy. Additionally, PMLII inhibition of AAV second-strand synthesis and replication, which are processes necessary for all parvoviruses, suggests implications for replication of other parvoviruses.
Insights
Promyelocytic leukemia protein (PML) restricts adeno-associated virus (AAV) gene therapy vectors. Removing PML significantly boosts AAV transduction, impacting gene therapy applications and parvovirus replication.
Area of Science:
- Virology
- Molecular Biology
- Gene Therapy
Background:
- Tripartite motif proteins, including promyelocytic leukemia protein (PML), function as viral restriction factors.
- PML is known to inhibit viral processes like uncoating, transcription, and immune signaling.
- The specific impact of PML on parvoviruses, such as adeno-associated virus (AAV), remained largely unknown.
Purpose of the Study:
- To investigate the functional effect of PML on adeno-associated virus (AAV) transduction and replication.
- To elucidate the mechanism by which PML influences AAV infection.
- To assess the implications of PML's role for AAV-based gene therapy and other parvoviruses.
Main Methods:
- Utilized PML knockout mice to assess recombinant AAV2 (rAAV2) transduction efficiency.
- Tested multiple rAAV serotypes and employed small interfering RNA (siRNA)-mediated knockdown of human PML in HuH7 cells.
- Analyzed the impact of PML isoforms, particularly PML isoform II (PMLII), on viral DNA synthesis and replication.
Main Results:
- PML knockout mice showed significantly enhanced rAAV2 transduction (up to 56-fold in males, 28-fold in females).
- PML inhibited multiple rAAV serotypes, with organ specificity correlating to PML expression.
- PML specifically inhibited AAV second-strand DNA synthesis, not earlier transduction steps, and PMLII was identified as a key inhibitor.
Conclusions:
- PML acts as a restriction factor for AAV, inhibiting second-strand DNA synthesis and replication.
- The findings have significant implications for optimizing AAV gene therapy vector design and delivery.
- PML's inhibitory mechanism on AAV suggests broader implications for the replication of other parvoviruses.
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