Tom McLean

@tommclean.bsky.social

Structural Biochemist. Research Officer at WEHI. Future DECRA Fellow at Monash.

KorB functions as a CTP-dependent DNA-sliding clamp traveling a long genomic distance. Sliding KorB is captured and locked in place by a partner protein, KorA, forming a stable A-B complex at target promoters to repress transcription.

My second postdoc paper in @tunglejic.bsky.social lab and two of my favorite things in the lab combined: ParB and killing bacteria. Thanks to everyone who helped make this project possible!

Tung Le@tunglejic.bsky.social · 3mo ago

@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-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...

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

biorxiv.org

First results chapter from Kelly-Rose Tulley’s PhD is published. It was a great team effort to get this finished. This work supports previous results on S. coelicolor OrrA and suggests its function is highly conserved. #microsky #streptomyces 1/2

bioRxiv Microbiology@biorxiv-microbiol.bsky.social · 6mo ago

Defining the OrrA regulon and its role in development and antibiotic production in Streptomyces venezuelae NRRL B-65442 https://www.biorxiv.org/content/10.64898/2026.01.30.702861v1

Delighted to see the main work from my PhD finally published in @mbio.bsky.social! It all started with the observation that deleting the cutRS two-component system in S. venezuelae caused this amazing explorer phenotype in the presence of glucose. But what was going on?! (1/n)

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Our preprint is now published in PNAS! This came together thanks to a great collaboration with Antoine Hocher and a strong team effort from the Le Lab. Thank you to the reviewers and to everyone who helped improve it. I hope ParB aficionados will enjoy it. www.pnas.org/doi/10.1073/...

Versatile NTP recognition and domain fusions expand the functional repertoire of the ParB-CTPase fold beyond chromosome segregation | PNAS

Nucleotide triphosphate (NTP)-dependent molecular switches regulate essential cellular processes by cycling between active and inactive states thro...

pnas.org

When people celebrate the individual genius of folks in science, they should also mourn the collective loss of genius of folks who were actively discouraged or disadvantaged from a career in science because of the same person(s)

After 8 wonderful years in Norwich, 3 at UEA and 5 at the JIC it’s time to say goodbye. I will miss each and every amazing person I’ve had the pleasure of working with or meeting here. It truly is a fine city.

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"That telomere phages are so prevalent means that they are a selective force, one that we know little about. We now want to understand how the telomere-toxin is secreted and also understand how this ‘telocin’ wheedles its way into unsuspecting bacterial neighbors” www.science.org/doi/10.1126/...

Telomere bacteriophages are widespread and equip their bacterial hosts with potent interbacterial weapons

Klebsiella host strains infected with telomere phages can grow to be the dominant lineage in mixed populations.

science.org

Almost 8 years after starting this project finally happy to share the main research from my PhD! Couldn't have done it without the amazing help from @ainsley-beaton.bsky.social! We untangled a fascinating new redox sensor with the most extraordinary growth phenotype (I'm biased) in Streptomyces!

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Matt Hutchings@matthutchings.bsky.social · last yr.

Very happy to share this work led by @tommclean.bsky.social and @ainsley-beaton.bsky.social. The conserved Streptomyces sensor kinase CutS senses disulphide bond formation outside the cell. If it fails CutS activates CutR which switches on production of foldase HtrA3 www.biorxiv.org/content/10.1...