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Updated: Apr 8, 2026

Identification of Nucleolar Factors During HIV-1 Replication Through Rev Immunoprecipitation and Mass Spectrometry
Published on: June 26, 2019
Nuclear matrix protein Matrin 3 is a regulator of ZAP-mediated retroviral restriction
Angela Erazo1, Stephen P Goff2,3
1Department of Biochemistry and Molecular Biophysics, Howard Hughes Medical Institute, Columbia University, New York, NY, 10032, USA. ae2371@cumc.columbia.edu.
Background:
Matrin 3 is a nuclear matrix protein involved in multiple nuclear processes. In HIV-1 infection, Matrin 3 serves as a Rev cofactor important for the cytoplasmic accumulation of HIV-1 transcripts. ZAP is a potent host restriction factor of multiple viruses including retroviruses HIV-1 and MoMuLV. In this study we sought to further characterize Matrin 3 functions in the regulation of HIV gene expression.
Results:
Here we describe a function for Matrin 3 as a negative regulator of the ZAP-mediated restriction of retroviruses. Mass spectrometry analysis of Matrin 3-associated proteins uncovered interactions with proteins of the ZAP degradation complex, DDX17 and EXOSC3. Coimmunoprecipitation studies confirmed Matrin 3 associations with DDX17, EXOSC3 and ZAP, in a largely RNA-dependent manner, indicating that RNA is mediating the Matrin 3 interactions with these components of the ZAP degradation complex. Silencing Matrin 3 expression caused a remarkably enhanced ZAP-driven inhibition of HIV-1 and MoMuLV luciferase reporter viruses. This effect was shared with additional nuclear matrix proteins. ZAP targets multiply-spliced HIV-1 transcripts, but in the context of Matrin 3 suppression, this ZAP restriction was broadened to unspliced and multiply-spliced RNAs.
Conclusions:
Here we reveal an unprecedented role for a nuclear matrix protein, Matrin 3, in the regulation of ZAP's antiretroviral activity. Suppressing Matrin 3 powers a heightened and broader ZAP restriction of HIV-1 gene expression. This study suggests that this ZAP regulatory mechanism is shared with additional nuclear matrix proteins.
Insights
Matrin 3 negatively regulates ZAP
Area of Science:
- Virology
- Molecular Biology
- Cell Biology
Background:
- Matrin 3 is a nuclear matrix protein involved in nuclear processes and HIV-1 infection.
- Matrin 3 acts as a Rev cofactor, aiding HIV-1 transcript accumulation in the cytoplasm.
- Zinc-finger antiviral protein (ZAP) is a host restriction factor against retroviruses like HIV-1 and MoMuLV.
Purpose of the Study:
- To investigate the role of Matrin 3 in regulating HIV gene expression.
- To further characterize Matrin 3's functions in the context of viral restriction.
Main Methods:
- Mass spectrometry to identify Matrin 3-associated proteins.
- Coimmunoprecipitation studies to confirm protein interactions.
- Silencing Matrin 3 expression to assess its impact on ZAP-mediated viral restriction.
- Use of luciferase reporter viruses for HIV-1 and MoMuLV.
Main Results:
- Matrin 3 functions as a negative regulator of ZAP-mediated retroviral restriction.
- Matrin 3 interacts with components of the ZAP degradation complex, including DDX17 and EXOSC3, in an RNA-dependent manner.
- Silencing Matrin 3 significantly enhances ZAP's inhibition of HIV-1 and MoMuLV.
- Matrin 3 suppression broadens ZAP's targeting from multiply-spliced to unspliced HIV-1 transcripts.
Conclusions:
- Matrin 3 plays a novel role in regulating ZAP's antiretroviral activity.
- Reduced Matrin 3 levels potentiate and broaden ZAP-mediated restriction of HIV-1.
- This ZAP regulatory mechanism may involve other nuclear matrix proteins.
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