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mosorio91.bsky.social

@mosorio91.bsky.social
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Tung Le @tunglejic.bsky.social · 07/05/2026
@biorxiv-microbiol.bsky.social Who knew ParB-CTPase fold can kill!!! A protein fold best known for segregating chromosomes…can be transformed into a potent antibacterial toxin in some plant and animal pathogens. www.biorxiv.org/content/10.6...
biorxiv.org
Repurposing a chromosome segregation ParB-CTPase fold into an ATPase toxin for contact-dependent growth inhibition in plant and animal pathogens
Bacterial competition drives the evolution of antibacterial mechanisms, yet how new activities arise remains poorly understood. A major route to innovation is the reuse of pre-existing genetic systems, whereby conserved protein modules are repurposed in new biological contexts to generate new capabilities. Here, we show that the ParB-CTPase fold, a conserved nucleotide-binding module best known for its role in chromosome segregation, can be functionally repurposed as an antibacterial toxin. We identify ToxB, a ParB-like domain embedded within the polymorphic toxin region of contact-dependent inhibition systems and show that it functions as a potent antibacterial effector. Structural and biochemical analyses reveal that ToxB retains the core architecture of the ParB-CTPase fold but lacks DNA-binding capability and preferentially binds ATP. This shift in nucleotide specificity underpins a distinct mode of action, in which ATP binding and hydrolysis trigger rapid nucleoid compaction, chromosome segregation defects, oxidative stress, cell chaining, and ultimately cell lysis. ToxB also exhibits toxic activity in plant cells, suggesting that it targets conserved cellular processes. Together, these findings provide direct experimental evidence that the ParB-NTPase fold is biologically versatile and can be repurposed for biological roles fundamentally distinct from its ancestral function in DNA segregation. ### Competing Interest Statement The authors have declared no competing interest. Wellcome Trust, https://ror.org/029chgv08, 221776/Z/2/Z, 227755/Z/23/Z Biotechnology and Biological Sciences Research Council, https://ror.org/00cwqg982, BB/X01097X/1 Diamond Light Source, MX32728
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Reposted by @mosorio91.bsky.social
Alexis Verger 🧬🧫🧪 @alexis-verger.cpesr.fr · 09/02/2026
Look at this 🙂 #CryoEM Structural basis for CTCF-mediated chromatin organization by @lucas.farnunglab.com @voslab.org www.biorxiv.org/content/10.6...
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Reposted by @mosorio91.bsky.social
Harvard Med Cell Biology @harvardcellbio.bsky.social · 09/02/2026
Exciting work from @lucas.farnunglab.com & @voslab.org report structures of CTCF-nucleosome complexes, revealing that CTCF dimers promote oligomerization of nucleosomes into defined higher-order assemblies involving specific histone-histone and CTCF-CTCF interactions. www.biorxiv.org/content/10.6...
biorxiv.org
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mosorio91.bsky.social @mosorio91.bsky.social · 09/02/2026
Happy to share part of my postdoctoral work at the @lucas.farnunglab.com lab. Great collaboration with @voslab.org and @andersshansen.bsky.social. “Structural basis for CTCF-mediated chromatin organization” www.biorxiv.org/content/10.6...
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mosorio91.bsky.social @mosorio91.bsky.social · 26/11/2025
It was an honor to participate in this event. I had the opportunity to present my postdoctoral work and interact with the exceptional scientific community at the Helmholtz Munich.
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Reposted by @mosorio91.bsky.social
Max-Planck-Gesellschaft @maxplanck.de · 15/09/2025
Early-career researchers: want to run your own lab? 🌟Max Planck Research Groups offer 6+ years, up to €2.7M in funding, open-topic freedom, team support & tenure-track opportunities. Intrigued? 😃Apply by Oct 14, 2025! www.mpg.de/max-planck-r...
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mosorio91.bsky.social @mosorio91.bsky.social · 29/09/2025
The final version of our ParA-ParB paper is online. Thanks to the reviewers for their input and to all the authors for their hard work. www.nature.com/articles/s41...
nature.com
Molecular basis of ParA ATPase activation by the CTPase ParB during bacterial chromosome segregation - Nature Communications
ParABS systems partition chromosomal DNA and low-copy plasmids in bacteria. Here, the authors elucidate the mode of interaction between ParA and ParB and clarify how ParB stimulates the ATPase activity of ParA to drive the segregation process.
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Lucas Farnung @lucas.farnunglab.com · 04/09/2025
Martin Filipovski successfully defended his PhD thesis today! Congrats, Dr. Filipovski.
The Farnung Lab celebrates Martin Filipovski's thesis defense.
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mosorio91.bsky.social @mosorio91.bsky.social · 03/04/2025
I can only recommend @thanbichlerlab.bsky.social as a mentor. You’ll do great science in a friendly environment with great colleagues and live in beautiful Marburg. Apply now!
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Reposted by @mosorio91.bsky.social
Martin Thanbichler @thanbichlerlab.bsky.social · 18/03/2025
Interested in the bacterial ParABS DNA segregation system? Then have a look at our latest preprint... 🧬 Thanks to the Hennig and Bange groups for the great collaboration! doi.org/10.1101/2025...
doi.org
Molecular basis of ParA ATPase activation by the CTPase ParB during bacterial chromosome segregation
DNA segregation by bacterial ParABS systems is mediated by transient tethering interactions between nucleoid-bound dimers of the ATPase ParA and centromere (parS)-associated complexes of the clamp-for...
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mosorio91.bsky.social @mosorio91.bsky.social · 15/03/2025
I’m very happy to share our latest work on the ParABS system. We investigated the dynamic interaction between the ATPase ParA and the CTPase ParB mediating chromosome segregation in Myxococcus xanthus. I would like to thank all the people involved.
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