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Uppsala University Uppsala University Department of Medical Biochemistry and Microbiology
Department of Medical Biochemistry and Microbiology
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Uppsala University Department of Medical ... Research groups Infection and immunity Punga Tanel Publications
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  • Research areas
  • Research groups
  • Professor Emeriti
  • Publications at IMBIM
  • Infrastructure
  • Education
  • Seminars
  • Contact
  • INTERNAL INFO

Publications

  • Next-Generation Sequencing Analysis of CpG Methylation of a Tumor Suppressor Gene SHP-1 Promoter in Stable Cell Lines and HCV-Positive Patients.

    Devi, P., Engdahl, K., Punga, T., Bergqvist, A. (2022). Viruses, . vol. 14 DOI
  • ZC3H11A loss of function enhances NF-κB signaling through defective IκBα protein expression.

    Darweesh, M., Younis, S., Hajikhezri, Z., Ali, A., Jin, C. et al. (2022). Frontiers in Immunology, . vol. 13 DOI
  • Next-Generation Sequencing Analysis of CpG Methylation of a Tumor Suppressor Gene SHP-1 Promoter in Stable Cell Lines and HCV-Positive Patients.

    Devi, P., Engdahl, K., Punga, T., Bergqvist, A. (2022). Viruses, . vol. 14 DOI
  • Structural Insights into Human Adenovirus Type 4 Virus-Associated RNA I.

    Bergquist, H., Inturi, R., Zain, R., Punga, T. (2022). International Journal of Molecular Sciences, . vol. 23 DOI
  • Activation of the Ca2+/NFAT pathway by assembly of hepatitis C virus core protein into nucleocapsid-like particles.

    Devi, P., Punga, T., Bergqvist, A. (2022). Viruses, vol. 14 DOI
  • Hepatitis C Virus Core Protein Down-Regulates Expression of Src-Homology 2 Domain Containing Protein Tyrosine Phosphatase by Modulating Promoter DNA Methylation.

    Devi, P., Ota, S., Punga, T., Bergqvist, A. (2021). Viruses, . vol. 13, ss. 2514-2514 DOI
  • Role of CCCH-Type Zinc Finger Proteins in Human Adenovirus Infections.

    Hajikhezri, Z., Darweesh, M., Akusjärvi, G., Punga, T. (2020). Viruses, vol. 12 DOI
  • Synthesis, Structure, and Function of Human Adenovirus Small Non-Coding RNAs.

    Punga, T., Darweesh, M., Akusjärvi, G. (2020). Viruses, . vol. 12 DOI
  • Estrogen Receptor, Inflammatory, and FOXO Transcription Factors Regulate Expression of Myasthenia Gravis-Associated Circulating microRNAs.

    Fiorillo, A., Heier, C., Huang, Y., Tully, C., Punga, T. et al. (2020). Frontiers in Immunology, . vol. 11 DOI
  • Circulating miRNAs as Potential Biomarkers in Myasthenia Gravis: Tools for Personalized Medicine.

    Sabre, L., Punga, T., Rostedt Punga, A. (2020). Frontiers in Immunology, . vol. 11 DOI
  • Adenovirus in the omics era - a multi-pronged strategy..

    Zhao, H., Punga, T., Pettersson, U. (2020). FEBS Letters, . vol. 594, ss. 1879-1890 DOI
  • In Situ Detection of Adenovirus DNA and mRNA in Individual Cells..

    Punga, T., Ciftci, S., Nilsson, M., Krzywkowski, T. (2018). Current protocols in microbiology, vol. 49 DOI
  • miR-1933-3p is upregulated in skeletal muscles of MuSK+ EAMG mice and affects Impa1 and Mrpl27.

    Bogatikov, E., Lindblad, I., Punga, T., Rostedt Punga, A. (2020). Neuroscience research, vol. 151, ss. 46-52 DOI
  • Cellular Zinc Finger Protein 622 Hinders Human Adenovirus Lytic Growth and Limits Binding of the Viral pVII Protein to Virus DNA.

    Mun, K., Punga, T. (2019). Journal of Virology, vol. 93 DOI
  • Thymectomy lowers the myasthenia gravis biomarker miR-150-5p.

    Molin, C., Sabre, L., Weis, C., Punga, T., Rostedt Punga, A. (2018). Neurology, vol. 5 DOI
  • Human Adenovirus Infection Causes Cellular E3 Ubiquitin Ligase MKRN1 Degradation Involving the Viral Core Protein pVII..

    Inturi, R., Mun, K., Singethan, K., Schreiner, S., Punga, T. (2018). Journal of Virology, vol. 92 DOI
  • Circulating microRNAs as potential biomarkers in myasthenia gravis patients..

    Rostedt Punga, A., Punga, T. (2018). Annals of the New York Academy of Sciences, vol. 1412, ss. 33-40 DOI
  • Simultaneous Single-Cell In Situ Analysis of Human Adenovirus Type 5 DNA and mRNA Expression Patterns in Lytic and Persistent Infection.

    Krzywkowski, T., Ciftci, S., Assadian, F., Nilsson, M., Punga, T. (2017). Journal of Virology, . vol. 91 DOI
  • Expression profile of Epstein-Barr virus and human adenovirus small RNAs in tonsillar B and T lymphocytes.

    Assadian, F., Kamel, W., Laurell, G., Svensson, C., Punga, T. et al. (2017). PLOS ONE, . vol. 12 DOI
  • The adenovirus L4-22K protein regulates transcription and RNA splicing via a sequence-specific single-stranded RNA binding.

    Lan, S., Kamel, W., Punga, T., Akusjärvi, G. (2017). Nucleic Acids Research, vol. 45, ss. 1731-1742 DOI
  • Clamping of RNA with PNA enables targeting of microRNA.

    Ghidini, A., Bergquist, H., Murtola, M., Punga, T., Zain, R. et al. (2016). Organic and biomolecular chemistry, vol. 14, ss. 5210-5213 DOI
  • Distribution and Molecular Characterization of Human Adenovirus and Epstein-Barr Virus Infections in Tonsillar Lymphocytes Isolated from Patients Diagnosed with Tonsillar Diseases.

    Assadian, F., Sandström, K., Bondeson, K., Laurell, G., Lidian, A. et al. (2016). PLOS ONE, vol. 11 DOI
  • Disease specific enrichment of circulating let-7 family microRNA in MuSK+ myasthenia gravis..

    Punga, T., Bartoccioni, E., Lewandowska, M., Damato, V., Evoli, A. et al. (2016). Journal of Neuroimmunology, vol. 292, ss. 21-26 DOI
  • Genome-Engineering Tools to Establish Accurate Reporter Cell Lines That Enable Identification of Therapeutic Strategies to Treat Friedreich's Ataxia.

    Villaseñor, R., Miraglia, L., Romero, A., Tu, B., Punga, T. et al. (2015). Journal of Biomolecular Screening, vol. 20, ss. 760-767 DOI
  • A suppressive effect of Sp1 recruitment to the first leader 5' splice site region on L4-22K-mediated activation of the adenovirus major late promoter.

    Lan, S., Östberg, S., Punga, T., Akusjärvi, G. (2015). Virus Research, vol. 210, ss. 133-140 DOI
  • Efficient Isolation Protocol for B and T Lymphocytes from Human Palatine Tonsils.

    Assadian, F., Sandström, K., Laurell, G., Svensson, C., Akusjärvi, G. et al. (2015). Journal of Visualized Experiments, vol. 105 DOI
  • Disease specific signature of circulating miR-150-5p and miR-21-5p in myasthenia gravis patients.

    Punga, A., Andersson, M., Alimohammadi, M., Punga, T. (2015). Journal of the Neurological Sciences, vol. 356, ss. 90-96 DOI
  • Complementation of the human adenovirus type 5 VA RNAI defect by the Vaccinia virus E3L protein and serotype-specific VA RNAIs.

    Inturi, R., Kamel, W., Akusjärvi, G., Punga, T. (2015). Virology, vol. 485, ss. 25-35 DOI
  • Opposite expression of CYP51A1 and its natural antisense transcript AluCYP51A1 in adenovirus type 37 infected retinal pigmented epithelial cells.

    Pickl, J., Kamel, W., Ciftci, S., Punga, T., Akusjärvi, G. (2015). FEBS Letters, vol. 589, ss. 1383-1388 DOI
  • Circulating miRNAs in myasthenia gravis: miR-150-5p as a new potential biomarker.

    Punga, T., Le Panse, R., Andersson, M., Truffault, F., Berrih-Aknin, S. et al. (2014). Annals of clinical and translational neurology, vol. 1, ss. 49-58 DOI
  • A splice variant of the human phosphohistidine phosphatase 1 (PHPT1) is degraded by the proteasome.

    Inturi, R., Wäneskog, M., Vlachakis, D., Ali, Y., Ek, P. et al. (2014). International Journal of Biochemistry and Cell Biology, . vol. 57, ss. 69-75 DOI
  • Small RNA Sequence Analysis of Adenovirus VA RNA-Derived MiRNAs Reveals an Unexpected Serotype-Specific Difference in Structure and Abundance.

    Kamel, W., Segerman, B., Punga, T., Akusjärvi, G. (2014). PLOS ONE, vol. 9, ss. e105746- DOI
  • Muscle-specific regulation of the mTOR signaling pathway in MuSK antibody seropositive (MuSK plus ) experimental autoimmune Myasthenia gravis (EAMG).

    Chauhan, M., Punga, T., Punga, A. (2013). Neuroscience research, vol. 77, ss. 102-109 DOI
  • Adenovirus Precursor pVII Protein Stability Is Regulated By Its Propeptide Sequence.

    Inturi, R., Thaduri, S., Punga, T. (2013). PLOS ONE, vol. 8, ss. e80617- DOI
  • Old and new functions for the adenovirus virus-associated RNAs.

    Punga, T., Kamel, W., Akusjarvi, G. (2013). Future Virology, vol. 8, ss. 343-356 DOI
  • Long intronic GAA repeats causing Friedreich ataxia impede transcription elongation.

    Punga, T., Bühler, M. (2010). EMBO Molecular Medicine, vol. 2, ss. 120-129 DOI
  • Dicer associates with chromatin to repress genome activity in Schizosaccharomyces pombe.

    Woolcock, K., Gaidatzis, D., Punga, T., Bühler, M. (2011). Nature Structural & Molecular Biology, vol. 18, ss. 94-99 DOI
  • The adenovirus VA RNA-derived miRNAs are not essential for lytic virus growth in tissue culture cells.

    Kamel, W., Segerman, B., Oberg, D., Punga, T., Akusjärvi, G. (2013). Nucleic Acids Research, vol. 41, ss. 4802-4812 DOI
  • Two Cellular Protein Kinases, DNA-PK and PKA, Phosphorylate the Adenoviral L4-33K Protein and Have Opposite Effects on L1 Alternative RNA Splicing.

    Törmänen Persson, H., Aksaas, A., Kvissel, A., Punga, T., Engström, Å. et al. (2012). PLOS ONE, ss. e31871- DOI
  • Novel genes in cell cycle control and lipid metabolism with dynamically regulated binding sites for sterol regulatory element-binding protein 1 and RNA polymerase II in HepG2 cells detected by chromatin immunoprecipitation with microarray detection.

    Motallebipour, M., Enroth, S., Punga, T., Ameur, A., Koch, C. et al. (2009). The FEBS Journal, vol. 276, ss. 1878-1890 DOI
  • Adenovirus 2 E1B-55K protein relieves p53-mediated transcriptional repression of the survivin and MAP4 promoters.

    Punga, T., Akusjärvi, G. (2003). FEBS Letters, vol. 552, ss. 214-218 DOI
  • Functional inactivation of the SR family of splicing factors during a vaccinia virus infection.

    Huang, T., Estmer Nilsson, C., Punga, T., Akusjärvi, G. (2002). EMBO Reports, vol. 3, ss. 1088-1093 DOI
  • The adenovirus-2 E1B-55K protein interacts with a mSin3A/histone deacetylase 1 complex.

    Punga, T., Akusjärvi, G. (2000). FEBS Letters, vol. 476, ss. 248-252 DOI
  • Hyperphosphorylation regulates the activity of SREBP1 during mitosis.

    Bengoechea-Alonso, M., Punga, T., Ericsson, J. (2005). Proceedings of the National Academy of Sciences of the United States of America, vol. 102, ss. 11681-11686 DOI
  • YY1 inhibits the activation of the p53 tumor suppressor in response to genotoxic stress.

    Grönroos, E., Terentiev, A., Punga, T., Ericsson, J. (2004). Proceedings of the National Academy of Sciences of the United States of America, vol. 101, ss. 12165-12170 DOI
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