Laboratory of Biomolecular Research, Division of Biology, Paul Scherrer Institut, 5232, Villigen PSI, Switzerland.
Department of Biomedical Sciences, University of Padova, 35121, Padova, Italy.
Nat Commun. 2023 Dec 18;14(1):8317. doi: 10.1038/s41467-023-44102-4.
In this study, we characterize Designed Ankyrin Repeat Proteins (DARPins) as investigative tools to probe botulinum neurotoxin A1 (BoNT/A1) structure and function. We identify DARPin-F5 that completely blocks SNAP25 substrate cleavage by BoNT/A1 in vitro. X-ray crystallography reveals that DARPin-F5 inhibits BoNT/A1 activity by interacting with a substrate-binding region between the α- and β-exosite. This DARPin does not block substrate cleavage of BoNT/A3, indicating that DARPin-F5 is a subtype-specific inhibitor. BoNT/A1 Glu-171 plays a critical role in the interaction with DARPin-F5 and its mutation to Asp, the residue found in BoNT/A3, results in a loss of inhibition of substrate cleavage. In contrast to the in vitro results, DARPin-F5 promotes faster substrate cleavage of BoNT/A1 in primary neurons and muscle tissue by increasing toxin translocation. Our findings could have important implications for the application of BoNT/A1 in therapeutic areas requiring faster onset of toxin action combined with long persistence.
在这项研究中,我们将设计的重复 ankryn 蛋白(DARPins)作为研究工具,以探究肉毒神经毒素 A1(BoNT/A1)的结构和功能。我们鉴定出了 DARPin-F5,它可以完全阻止 BoNT/A1 在体外对 SNAP25 底物的切割。X 射线晶体学揭示了 DARPin-F5 通过与 α-和 β-外显子之间的底物结合区域相互作用来抑制 BoNT/A1 的活性。这种 DARPin 不会阻止 BoNT/A3 对底物的切割,表明 DARPin-F5 是一种亚型特异性抑制剂。BoNT/A1 的 Glu-171 在与 DARPin-F5 的相互作用中起着关键作用,其突变为 BoNT/A3 中发现的 Asp 残基,导致底物切割的抑制作用丧失。与体外结果相反,DARPin-F5 通过增加毒素易位,促进 BoNT/A1 在原代神经元和肌肉组织中更快地切割底物。我们的发现可能对需要更快的毒素作用起始时间与更长的持续时间相结合的治疗领域中 BoNT/A1 的应用具有重要意义。