Christian Beusch
Postdoctoral position at Department of Surgical Sciences; Thoracic Surgery
- E-mail:
- christian.beusch@uu.se
- Visiting address:
- Akademiska sjukhuset, ingång 50, 4 tr
751 85 UPPSALA - Postal address:
- Akademiska sjukhuset, ingång 50, 4 tr
751 85 UPPSALA
Publications
Recent publications
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Proteotoxic stress response drives T cell exhaustion and immune evasion
Part of Nature, p. 1025-1035, 2025
- DOI for Proteotoxic stress response drives T cell exhaustion and immune evasion
- Download full text (pdf) of Proteotoxic stress response drives T cell exhaustion and immune evasion
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Part of Journal of the American Chemical Society, p. 36097-36104, 2025
- DOI for Mechano-ID: Proximity Labeling of Mechanically Active Receptors Reveals the Mechanome and Tags Mechanically Active Cells
- Download full text (pdf) of Mechano-ID: Proximity Labeling of Mechanically Active Receptors Reveals the Mechanome and Tags Mechanically Active Cells
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SARS-CoV-2 nsp15 enhances viral virulence by subverting host antiviral defenses
Part of Proceedings of the National Academy of Sciences of the United States of America, 2025
- DOI for SARS-CoV-2 nsp15 enhances viral virulence by subverting host antiviral defenses
- Download full text (pdf) of SARS-CoV-2 nsp15 enhances viral virulence by subverting host antiviral defenses
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Global analysis of protein turnover dynamics in single cells
Part of Cell, 2025
- DOI for Global analysis of protein turnover dynamics in single cells
- Download full text (pdf) of Global analysis of protein turnover dynamics in single cells
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Part of Journal of the American Chemical Society, p. 5679-5692, 2025
- DOI for Acrolein-Mediated Conversion of Lysine to Electrophilic Heterocycles for Protein Diversification and Toxicity Profiling
- Download full text (pdf) of Acrolein-Mediated Conversion of Lysine to Electrophilic Heterocycles for Protein Diversification and Toxicity Profiling
All publications
Articles in journal
-
Proteotoxic stress response drives T cell exhaustion and immune evasion
Part of Nature, p. 1025-1035, 2025
- DOI for Proteotoxic stress response drives T cell exhaustion and immune evasion
- Download full text (pdf) of Proteotoxic stress response drives T cell exhaustion and immune evasion
-
Part of Journal of the American Chemical Society, p. 36097-36104, 2025
- DOI for Mechano-ID: Proximity Labeling of Mechanically Active Receptors Reveals the Mechanome and Tags Mechanically Active Cells
- Download full text (pdf) of Mechano-ID: Proximity Labeling of Mechanically Active Receptors Reveals the Mechanome and Tags Mechanically Active Cells
-
SARS-CoV-2 nsp15 enhances viral virulence by subverting host antiviral defenses
Part of Proceedings of the National Academy of Sciences of the United States of America, 2025
- DOI for SARS-CoV-2 nsp15 enhances viral virulence by subverting host antiviral defenses
- Download full text (pdf) of SARS-CoV-2 nsp15 enhances viral virulence by subverting host antiviral defenses
-
Global analysis of protein turnover dynamics in single cells
Part of Cell, 2025
- DOI for Global analysis of protein turnover dynamics in single cells
- Download full text (pdf) of Global analysis of protein turnover dynamics in single cells
-
Part of Journal of the American Chemical Society, p. 5679-5692, 2025
- DOI for Acrolein-Mediated Conversion of Lysine to Electrophilic Heterocycles for Protein Diversification and Toxicity Profiling
- Download full text (pdf) of Acrolein-Mediated Conversion of Lysine to Electrophilic Heterocycles for Protein Diversification and Toxicity Profiling
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Part of Communications Biology, 2025
- DOI for A multi-tissue longitudinal proteomics study to evaluate the suitability of post-mortem samples for pathophysiological research
- Download full text (pdf) of A multi-tissue longitudinal proteomics study to evaluate the suitability of post-mortem samples for pathophysiological research
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Copper(I)-nitrene platform for chemoproteomic profiling of methionine
Part of Nature Communications, 2024
- DOI for Copper(I)-nitrene platform for chemoproteomic profiling of methionine
- Download full text (pdf) of Copper(I)-nitrene platform for chemoproteomic profiling of methionine
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Part of Nature Immunology, 2024