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How mass spectrometry innovation propels biological discovery

WATCH ON DEMAND

Thermo Fisher Scientific

Accurate, quantitative, high-throughput multi-omics measurements can fill longstanding gaps in basic biochemistry and elucidate confounding disease processes.

This webcast will highlight how new methodologies using mass spectrometry enable deep proteome sequencing and population-scale biological discovery.

In recent work with a human cell library of CRISPR-mediated gene knockout, simultaneous measurements of proteins and metabolites identify a mutation in a gene that underlies a previously unresolved mitochondrial disorder.

Advances in deep proteome sequencing are particularly important for the discovery and quantitative comparison of all unique proteoforms – including those that arise from alternative splicing events and single nucleotide polymorphisms (SNPs). With this methodology, over one million unique human peptides from 17,717 protein groups can be identified, with a median sequence coverage of nearly 80 percent. Multi-omics analyses from these data provide large-scale evidence that most alternatively spliced isoforms are translated.

Further improvements with the novel Thermo Scientific Orbitrap Astral mass spectrometer enable detection of nearly 100,000 unique phosphorylation sites within only 12 hours of analysis, measurement of a near-complete human proteome in under one hour, and provide a route to routine deep proteome sequencing.

Learn how to:

• Study biological systems using multi-omics approaches

• Perform deep proteome sequencing using mass spectrometry

• Apply novel mass spectrometry technology to solve biological questions

Unable to join the live event? Watch on demand. Register now to ensure that you receive information on how to gain access after the live event.

This webcast has been produced by Thermo Fisher Scientific, who retails sole responsibility for content. About this content.

Speaker

Josh Coon, Professor, University of Wisconsin Madison

Josh Coon

Josh is a professor of chemistry and biomolecular chemistry and the Thomas and Margaret Pyle Chair at the University of Wisconsin-Madison and an affiliate of the Morgridge Institute for Research. His research focuses on instrument development with a focus on mass spectrometry and its application to proteomics to measure biological systems.

Moderator

Jayshan Carpen, Nature Research Custom Media

Moderator Jayshan Carpen

Jayshan is Head of Publishing for Springer Nature and oversees the custom multimedia unit. Previously he ran science events at the Royal Institution of Great Britain. He received his PhD from the University of Surrey, UK in Neurogenetics. His doctoral thesis focused on identifying polymorphisms associated with diurnal preference and circadian sleep disorders.

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