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123 results on '"Messner, Christoph B."'

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1. Natural proteome diversity links aneuploidy tolerance to protein turnover

3. The proteomic landscape of genome-wide genetic perturbations

4. Cell-cell metabolite exchange creates a pro-survival metabolic environment that extends lifespan

5. Microbial communities form rich extracellular metabolomes that foster metabolic interactions and promote drug tolerance

6. A time-resolved proteomic and prognostic map of COVID-19

7. Ultra-High-Throughput Clinical Proteomics Reveals Classifiers of COVID-19 Infection

8. Cellular control of protein levels: A systems biology perspective

9. Persistent complement dysregulation with signs of thromboinflammation in active Long Covid

14. Oxonium ion scanning mass spectrometry for large-scale plasma glycoproteomics

15. The proteomic landscape of genome-wide genetic perturbations

16. Oxonium ion scanning mass spectrometry for large-scale plasma glycoproteomics

17. Mass spectrometry‐based high‐throughput proteomics and its role in biomedical studies and systems biology

18. Inorganic sulfur fixation via a new homocysteine synthase allows yeast cells to cooperatively compensate for methionine auxotrophy

23. OxoScan-MS: Oxonium ion scanning mass spectrometry facilitates plasma glycoproteomics in large scale

24. The Proteomic Landscape of Genome-Wide Genetic Perturbations

26. The natural diversity of the yeast proteome reveals chromosome-wide dosage compensation in aneuploids

27. Inorganic sulfur fixation via a new homocysteine synthase allows yeast cells to cooperatively compensate for methionine auxotrophy

28. Cell-cell metabolite exchange creates a pro-survival metabolic environment that extends lifespan

29. A proteomic survival predictor for COVID-19 patients in intensive care

31. A time-resolved proteomic and prognostic map of COVID-19

33. A time-resolved proteomic and prognostic map of COVID-19

34. Ultra-fast proteomics with Scanning SWATH

35. Clinical classifiers of COVID-19 infection from novel ultra-high-throughput proteomics

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