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肉毒杆菌神经毒素B对细胞表面受体识别的结构基础

Structural basis of cell surface receptor recognition by botulinum neurotoxin B.

作者信息

Chai Qing, Arndt Joseph W, Dong Min, Tepp William H, Johnson Eric A, Chapman Edwin R, Stevens Raymond C

机构信息

Department of Molecular Biology, The Scripps Research Institute, 10550 N. Torrey Pines Road, La Jolla, California 92037, USA.

出版信息

Nature. 2006 Dec 21;444(7122):1096-100. doi: 10.1038/nature05411. Epub 2006 Dec 13.

Abstract

Botulinum neurotoxins (BoNTs) are potent bacterial toxins that cause paralysis at femtomolar concentrations by blocking neurotransmitter release. A 'double receptor' model has been proposed in which BoNTs recognize nerve terminals via interactions with both gangliosides and protein receptors that mediate their entry. Of seven BoNTs (subtypes A-G), the putative receptors for BoNT/A, BoNT/B and BoNT/G have been identified, but the molecular details that govern recognition remain undefined. Here we report the crystal structure of full-length BoNT/B in complex with the synaptotagmin II (Syt-II) recognition domain at 2.6 A resolution. The structure of the complex reveals that Syt-II forms a short helix that binds to a hydrophobic groove within the binding domain of BoNT/B. In addition, mutagenesis of amino acid residues within this interface on Syt-II affects binding of BoNT/B. Structural and sequence analysis reveals that this hydrophobic groove is conserved in the BoNT/G and BoNT/B subtypes, but varies in other clostridial neurotoxins. Furthermore, molecular docking studies using the ganglioside G(T1b) indicate that its binding site is more extensive than previously proposed and might form contacts with both BoNT/B and synaptotagmin. The results provide structural insights into how BoNTs recognize protein receptors and reveal a promising target for blocking toxin-receptor recognition.

摘要

肉毒杆菌神经毒素(BoNTs)是强效细菌毒素,通过阻断神经递质释放,在飞摩尔浓度下即可导致麻痹。已提出一种“双受体”模型,即BoNTs通过与神经节苷脂和介导其进入的蛋白质受体相互作用来识别神经末梢。在七种BoNTs(A - G亚型)中,BoNT/A、BoNT/B和BoNT/G的假定受体已被鉴定,但决定识别的分子细节仍不清楚。在此,我们报告了全长BoNT/B与突触结合蛋白II(Syt-II)识别结构域复合物的晶体结构,分辨率为2.6埃。复合物结构显示,Syt-II形成一个短螺旋,与BoNT/B结合结构域内的疏水凹槽结合。此外,Syt-II上该界面内氨基酸残基的诱变会影响BoNT/B的结合。结构和序列分析表明,这种疏水凹槽在BoNT/G和BoNT/B亚型中保守,但在其他梭菌神经毒素中有所不同。此外,使用神经节苷脂G(T1b)的分子对接研究表明,其结合位点比先前提出的更广泛,可能与BoNT/B和突触结合蛋白都形成接触。这些结果为BoNTs如何识别蛋白质受体提供了结构见解,并揭示了一个阻断毒素-受体识别的有前景的靶点。

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