Tc toxins are pore-forming virulence factors of many pathogenic bacteria. Following pH-induced conformational changes, they perforate the target membrane like a syringe to translocate toxic enzymes into a cell. Although this complex transformation has been structurally well studied, the reaction pathway and the resulting temporal evolution have remained elusive. We used an integrated biophysical approach to monitor prepore-to-pore transition and found a reaction time of ~30 hours for a complete transition. We show two asynchronous general steps of the process, shell opening and channel ejection, with the overall reaction pathway being a slow multistep process involving three intermediates. Liposomes, an increasingly high pH, or receptors facilitate shell opening, which is directly correlated with an increased rate of the prepore-to-pore transition. Channel ejection is a near-instantaneous process which occurs with a transition time of <60 milliseconds. Understanding the mechanism of action of Tc toxins and unveiling modulators of the kinetics are key steps toward their application as biomedical devices or biopesticides.
Multistate kinetics of the syringe-like injection mechanism of Tc toxins.
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作者:Ng'ang'a Peter Njenga, Folz Julian, Kucher Svetlana, Roderer Daniel, Xu Ying, Sitsel Oleg, Belyy Alexander, Prumbaum Daniel, Kühnemuth Ralf, Assafa Tufa E, Dong Min, Seidel Claus A M, Bordignon Enrica, Raunser Stefan
| 期刊: | Science Advances | 影响因子: | 12.500 |
| 时间: | 2025 | 起止号: | 2025 Jan 3; 11(1):eadr2019 |
| doi: | 10.1126/sciadv.adr2019 | ||
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