Diepold Lab
@diepold-lab.bsky.social
110 followers 99 following 7 posts
Our group, the Department of Applied Biology at the Karlsruhe Institute of Technology, investigates bacterial secretion systems and virulence mechanisms to better understand their role in infection biology and engineer biotech and healthcare applications
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diepold-lab.bsky.social
T3SS activity comes at a cost—bacteria that use the system pay with reduced growth. We found how Yersinia balance costs and benefits: at higher densities, they actively suppress T3SS activity and adhesion, switching from colonization to replication and dissemination.
doi.org/10.1371/jour...
@kit.edu
Yersinia actively downregulates type III secretion and adhesion at higher cell densities
Author summary Bacteria can use the type III secretion system (T3SS), a molecular syringe-like device, to manipulate host cells by injecting effector proteins. Yersinia enterocolitica, a pathogenic ba...
doi.org
diepold-lab.bsky.social
We recently described how T3SS effectors reach the injectisome with a shuttle system. But what about their chaperones? With live microscopy, proximity labeling and functional assays, @keithpint.bsky.social showed the Yersinia chaperone SycH already hands over its cargo in the cytosol. bit.ly/47hq6rM
diepold-lab.bsky.social
This is the first of three manuscripts we’ve recently had accepted — more to come soon! 🚀
#Microbiology #InfectionBiology #SingleCell
diepold-lab.bsky.social
Using live-cell microscopy, we uncovered distinct bacterial subpopulations that primarily use certain combinations of these nanomachines:
• some prioritize motility & T3SS
• others shift to T6SS for antagonism
All tuned by the usual suspect: cyclic di-GMP.
That's how we think Pseudomonas aeruginosa uses the T3SS, H1-T6SS, and flagellum during infection.
diepold-lab.bsky.social
Our first accepted manuscript at my new lab (@kitkarlsruhe) is out in Communications Biology! 🎉
We show how Pseudomonas aeruginosa coordinates its virulence systems, T3SS, H1-T6SS, flagellum, at single-cell resolution.
🔗 www.nature.com/articles/s42...
@t3sss.bsky.social @NaturePortfolio.bsky.social
Reposted by Diepold Lab
simonahuwiler.bsky.social
🛠️Toolbox 🛠️ out to modulate gene expression & protein secretion in a predatory bacterium.
📑Preprint from my group below.
Many thanks to L. Mihajlovic @ljmihajlovic.bsky.social, L. Hofacker, F. Lindner, P. Jayakumar & A. Diepold @diepold-lab.bsky.social! #MicroSky #SyntheticBiology #PredatoryBacteria
diepold-lab.bsky.social
Hello world, our lab investigates bacterial secretion systems and virulence mechanisms to better understand their role in infection biology, and their application in biotech and healthcare.
Since October 2024, we are the Department of Applied Biology at the KIT
@kitkarlsruhe.bsky.social