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Quantitative cell biologist working on proteomics, organelle QC and CNS malignancies @bcchresearch.bsky.social. Quantify everything except my cat's chaos. She's orange. 🐈 Alumni: @harvardmed.bsky.social @monashuniversity.bsky.social @lmu.de
Felix Kraus









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Drp1 is "browsing" mitochondria to find constriction sites... love that!
3d
📣 new preprint multimodal atlas. Imaging + scRNA, 57M cells. 🧬🔬 Cells are complex dynamical systems — but most ways we measure them destroy them. We asked: how does live imaging compare to scRNA-seq, the field’s gold std? The answer surprised us 🧵 www.biorxiv.org/content/10.6...
Felix Kraus
11d
Interactome mapping has been stuck at a few hundred baits over months. HIP-MS changes the regime: ~10,000 pulldowns/week at 500 samples/day, fully automated. A new era for interactomics — and a precursor to high-throughput proteomics writ large. 📄 doi.org/10.64898/202...
3d
📢 We are looking for a Junior Group Leader to join us at @institutcurie.bsky.social! Having joined the department just over a year ago, I can honestly say that it is an exceptionally stimulating and supportive scientific environment, filled with outstanding colleagues — all in the heart of Paris.
Manu Leonetti
Homocysteine disrupts lysosomal function by V-ATPase inhibition. From Yang Yang, Qianjin Kong, Chaolian Liu, Mei Yang, Chonglin Yang and colleagues: rupress.org/jcb/article/... 📕 Part of #Lysosomes 2026: rupress.org/jcb/collecti...
A graph neural network framework enables individualized genetic risk prediction at the single-cell level go.nature.com/3H6pAlr rdcu.be/fmbnx
Although protein-protein interactions govern virtually all cellular processes, systematic interactome mapping by affinity enrichment mass spectrometry (AE-MS) is constrained by manual sample preparati...
doi.org
6d
HIP-MS: An ultra-high-throughput, sensitive, and versatile affinity enrichment platform for static and dynamic interactome profiling
The Collaborative Research Network is built on team science. A new Alzforum article highlights how CRN investigators are working across institutions and disciplines to advance #Parkinson’s disease research through shared tools, data, and expertise. Read more: bit.ly/4dj8ePI
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@julius-w.bsky.social @jclandoni.bsky.social @sulianamanley.bsky.social et al reveal that perinuclear #mitochondria form a source population, w/ biased anterograde transport spreading material to maintain network connectivity & balanced mitochondrial mass across the cell rupress.org/jcb/article/...
Wow! Researchers highlight clear ultrastructural differences between somatic & neuritic αSynpS129 pathology & they demonstrate the structural complexity & heterogeneity of Lewy pathology in postmortem brain from people with #Parkinsons www.nature.com/articles/s41...
I made a video summary of our recent paper on mitochondrial trafficking. 🔬🧫🧬Check out the paper here: doi.org/10.1083/jcb.... @jclandoni.bsky.social @sulianamanley.bsky.social @jcb.org youtu.be/Az8xzdO0nVU?... #mitochondria #imaging #fluorescence #organelle
Mann Lab
We present MitoScanner: a newly discovered step in mitochondrial division! 🔍✂️ Explore here the work by @office-garcia.bsky.social 📝 www.biophys.mpg.de/2921124/sear... #Mitochondria #CellBiology
A graph neural network framework enables individualized genetic risk prediction at the single-cell level.
go.nature.com
11d
Single-cell polygenic risk scores dissect cellular and molecular heterogeneity of complex human diseases - Nature Biotechnology
6d
6d
Video
Lara Krüger
3d
Journal of Cell Biology
Nature Biotechnology
YouTube video by Julius Winter
youtu.be
Mitochondrial trafficking to maintain network morphology
Proteins DRP1 and MID49 scan the mitochondrial outer membrane before division, revealing a previously unrecognized step in mitochondrial fission.
www.biophys.mpg.de
MitoScanner: Searching for the Right Place to Divide Mitochondria
Journal of Cell Biology
Aligning Science Across Parkinson's
Max Planck Institute of Biophysics
The Science of Parkinson's
Julius Winter