A belt-buckle checkpoint regulates the onset of botulinum neurotoxin intoxication
Abstract
Abstract Fast-acting botulinum neurotoxins (BoNTs) are highly desirable for both medical and aesthetic indications, but the underlying mechanism for the differing onset of BoNTs’ action remains unknown. Here, we demonstrate that the “belt” of BoNTs, a largely unstructured loop wrapping around their catalytic light chain (LC), is key to onset of intoxication. The more flexible BoNT/E belt promotes quicker LC translocation into the neuronal cytosol, leading to faster onset of action compared to BoNT/A. Furthermore, we discover a “belt-buckle” checkpoint that regulates this process. By loosening the BoNT/A belt-buckle via protein engineering, we enhance its sensitivity to acidic pH, leading to an accelerated onset of action. Conversely, locking the belt-buckle with an antibody neutralizes BoNT/A. Our findings open avenues for developing fast-acting BoNTs and effective countermeasures.
Article Details
Authors (11)
Baohua Chen
Linfeng Gao
Institute of Environmental Engineering Technology, China Institute for Radiation Protection 4 , Taiyuan 030006,
Melvin Bönninger
Ting Huang
Nadja Krez
Weihua Wen
Mark Bowen
Jianlong Lou
James D. Marks
Andreas Rummel
Rongsheng Jin