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Structural and biochemical characterization of the protease domain of the mosaic botulinum neurotoxin type HA

机译:的结构和生化特征蛋白酶域马赛克的肉毒杆菌神经毒素类型哈

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摘要

The extreme toxicity of botulinum neurotoxins (BoNTs) relies on their specific cleavage of SNARE proteins, which eventually leads to muscle paralysis. One newly identified mosaic toxin, BoNT/HA (aka H or FA), cleaves VAMP-2 at a unique position between residues L54 and E55, but the molecular basis underlying VAMP-2 recognition of BoNT/HA remains poorly characterized. Here, we report a similar to 2.09 angstrom resolution crystal structure of the light chain protease domain of BoNT/HA (LC/HA). Structural comparison between LC/HA and LC of BoNT/F1 (LC/F1) reveals distinctive hydrophobic and electrostatic features near the active sites, which may explain their different VAMP-2 cleavage sites. When compared to BoNT/F5 that cleaves VAMP-2 at the same site as BoNT/HA, LC/HA displays higher affinity for VAMP-2, which could be caused by their different surface charge properties surrounding a VAMP-2 exosite-binding cleft. Furthermore, systematic mutagenesis studies on VAMP-2 and structural modeling demonstrate that residues R47 to K59 spanning the cleavage site in VAMP-2 may adopt a novel extended conformation when interacting with LC/HA and LC/F5. Taken together, our structure provides new insights into substrate recognition of BoNT/HA and paves the way for rational design of small molecule or peptide inhibitors against LC/HA.
机译:极端肉毒神经毒素的毒性(肉毒毒素)依赖于他们的特定的乳沟网罗蛋白质,最终会导致肌肉瘫痪。肉毒毒素/公顷(又名H或FA),劈开VAMP-2独特位置残留L54和E55之间,但是底层VAMP-2识别的分子基础肉毒毒素/公顷特征仍然不佳。报告一个类似于2.09埃分辨率轻链蛋白酶晶体结构肉毒毒素领域/公顷(LC /公顷)。肉毒毒素LC /公顷和LC / F1 (LC / F1)显示独特的疏水性和静电附近的功能活跃的网站,这或许可以解释他们不同的VAMP-2乳沟网站。相比,肉毒毒素/ F5 VAMP-2在劈开网站一样肉毒毒素/公顷,LC /公顷显示更高VAMP-2亲和力,可能造成的不同的表面电荷性质围绕VAMP-2 exosite-binding间隙。此外,系统的突变研究VAMP-2和结构建模证明残留R47 K59生成的裂解位点VAMP-2可能采用一种新颖的构象当与LC /公顷和LC / F5交互。在一起,我们的结构提供了新的见解为底物识别提升装置/公顷和铺平道路为合理设计小分子或肽抑制剂对LC /公顷。

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