Rhys Grinter

@rhyswg.bsky.social

Lab head at the University of Melbourne. Studying the structure and biochemistry of microbial membrane proteins and metalloenzymes.

💊 We are excited to share our preprint that describes an inhibitor of the widespread and highly conserved Two-Partner Secretion (TPS) system that is critical for Gram-negative pathogens to export a multitude of diverse virulence factors. (1/6) www.biorxiv.org/content/10.6...

First inhibitor of a bacterial two-partner secretion system.

Two-partner secretion system transporter proteins (TpsB) are widely conserved across Gram-negative pathogens. TpsB family proteins secrete exoprotein virulence factors that perform a myriad of functions such as adhesion and immune modulation. Despite their incredible importance in bacterial infectious disease, TpsB inhibitors have not yet been discovered. Here, we describe a potent inhibitor of FhaC, a TpsB protein produced by Bordetella spp . FhaC secretes the exoprotein FhaB that is essential for the establishment of whooping cough. We designed a peptide called P1 that we predicted would prevent substrate binding and lock FhaC in a secretion-inactive state. Simulations and biochemical assays supported our hypothesis and identified interactions important for P1 binding to FhaC. Strikingly, we observed that the peptide strongly inhibited FhaB secretion from clinical isolates and broadly reduced correlates of virulence. Together, this work provides a strong case for further development of a novel class of anti-TpsB anti-virulence compounds. ### Competing Interest Statement The authors have declared no competing interest. National Institute of Allergy and Infectious Diseases, R21AI180112

biorxiv.org

⁉️The ARC has delayed outcomes of ALL grants 1–4 months & increased scheduled outcome windows from 2 weeks to 3 months! This reverses 4 years of progress in providing greater certainty & ability to plan for researchers, their families & unis. Their excuse? Security checks under new ARC legislation👇

Black text on white background. Screenshot of ARC’s Network Message regarding delays to grant announcements because of new security arrangements.

Check out our preprint in which we determine how a class of potent protein antibiotics specifically kill P. aeruginosa without a need to enter the cell. doi.org/10.1101/2025... This is work from my PhD in the lab of @rhyswg.bsky.social and many collaborators who contributed amazing data!

A Protein Antibiotic Inhibits the BAM Complex to Kill Without Cell Entry

Many antibiotics are ineffective against Gram-negative pathogens such as Pseudomonas aeruginosa because they cannot penetrate the bacterial outer membrane. Here, we show that protein antibiotics calle...

doi.org

The outer membrane of Gram-negative bacteria blocks many antibiotics. Our latest work reveals that L-type pyocins bypass this barrier by inactivating the BAM complex, killing Pseudomonas aeruginosa without entering the cell, providing a new blueprint for beating antibiotic resistance.

A Protein Antibiotic Inhibits the BAM Complex to Kill Without Cell Entry

Many antibiotics are ineffective against Gram-negative pathogens such as Pseudomonas aeruginosa because they cannot penetrate the bacterial outer membrane. Here, we show that protein antibiotics calle...

biorxiv.org

1/3 Electricity from air! In the top journal Nano Energy today, we report the first fuel cell that makes power from air alone. We achieved this by using the enzyme Huc to oxidize ambient hydrogen. This results in a continuous low-level power from air and higher outputs with industrial waste gases.

Nanoengineered bioanode with oxygen-insensitive hydrogenase for sustainable energy harvesting from atmospheric hydrogen and waste gases

Enzymatic biofuel cells (EBFCs) utilizing hydrogenases to oxidize hydrogen offer a sustainable approach to energy conservation. However, the oxygen se…

sciencedirect.com

PM Mark Carney 🇨🇦 A new airlift of Canadian aid landed in Gaza today, with thanks to His Majesty King Abdullah II & our Jordanian partners. Canada is dedicating more than $340 million in aid to address the humanitarian crisis in Gaza & we will ensure it moves forward at the necessary scale. #cdnpoli

In this system, bacteria detect phage infection through a sensor protein (YjbH) and respond by severing the infected part of the cell via aberrant division. The rest of the cell survives and continues growing happily, essentially, bacterial autotomy!

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Our article showing energy production from air alone is in PNAS today. This paper provides an ultimate biochemical proof that microbes can survive simply by 'making' energy from air (making two ATP per molecule atmospheric H2 consumed) and has biotech applications. www.pnas.org/doi/10.1073/...

ATP synthesis driven by atmospheric hydrogen concentrations | PNAS

All cells require a continuous supply of the universal energy currency, adenosine triphosphate (ATP), to drive countless cellular reactions. The un...

pnas.org

The costs of #antimicrobial resistance 🦠 continue to rise 📈. The Center for Global Development reports that by 2050 #AMR could shrink the global economy by US$1.7T. Improving treatments and funding development of new antimicrobials 💊 could save millions of lives and billions in healthcare costs.

Forecasting the Fallout from AMR: Economic Impacts of Antimicrobial Resistance in Humans

Antimicrobial resistance (AMR) is a growing global health crisis that threatens to undo decades of progress in medicine. This tool allows you to explore the potential impact of different interventions...

cgdev.org