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Absolute quantification of microbial proteomes at different states by directed mass spectrometry
Authors:Johan Malmström  Henry Lam  Manfred Claassen  David Campbell  Ruedi Aebersold
Institution:1. Department of Biology, Institute of Molecular Systems Biology, ETH Zurich, , Zurich, Switzerland;2. BiognoSYS AG, c/o IMSB ETH Zurich, , Zurich, Switzerland;3. Department of Chemical and Biomolecular Engineering, Hong Kong University of Science and Technology, , Hong Kong, China;4. Department of Computer Science, ETH Zurich, , Zurich, Switzerland;5. Institute for Systems Biology, , Seattle, WA, USA;6. Center for Systems Physiology and Metabolic Diseases, , Zurich, Switzerland;7. Department of Science, University of Zurich, , Zurich, Switzerland
Abstract:Over the past decade, liquid chromatography coupled with tandem mass spectrometry (LC–MS/MS) has evolved into the main proteome discovery technology. Up to several thousand proteins can now be reliably identified from a sample and the relative abundance of the identified proteins can be determined across samples. However, the remeasurement of substantially similar proteomes, for example those generated by perturbation experiments in systems biology, at high reproducibility and throughput remains challenging. Here, we apply a directed MS strategy to detect and quantify sets of pre‐determined peptides in tryptic digests of cells of the human pathogen Leptospira interrogans at 25 different states. We show that in a single LC–MS/MS experiment around 5000 peptides, covering 1680 L. interrogans proteins, can be consistently detected and their absolute expression levels estimated, revealing new insights about the proteome changes involved in pathogenic progression and antibiotic defense of L. interrogans. This is the first study that describes the absolute quantitative behavior of any proteome over multiple states, and represents the most comprehensive proteome abundance pattern comparison for any organism to date.
Keywords:absolute quantification  directed mass spectrometry  Leptospira interrogans  microbiology  proteomics
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