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Structures of engineered Clostridium botulinum neurotoxin derivatives

机译:工程化肉毒梭菌神经毒素衍生物的结构

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摘要

Targeted secretion inhibitors (TSIs) are a new class of engineered biopharmaceutical molecules derived from the botulinum neurotoxins (BoNTs). They consist of the metalloprotease light chain (LC) and translocation domain (Hn) of BoNT; they thus lack the native toxicity towards motor neurons but are able to target soluble N-ethylmaleimide-sensitive fusion protein attachment receptor (SNARE) proteins. These functional fragment (LHn) derivatives are expressed as single-chain proteins and require post-translational activation into di-chain molecules for function. A range of BoNT derivatives have been produced to demonstrate the successful use of engineered SNARE substrate peptides at the LC–Hn interface that gives these molecules self-activating capabilities. Alternatively, recognition sites for specific exoproteases can be engineered to allow controlled activation. Here, the crystal structures of three LHn derivatives are reported between 2.7 and 3.0 Å resolution. Two of these molecules are derivatives of serotype A that contain a SNARE peptide. Additionally, a third structure corresponds to LHn serotype B that includes peptide linkers at the exoprotease activation site. In all three cases the added engineered segments could not be modelled owing to disorder. However, these structures highlight the strong interactions holding the LHn fold together despite the inclusion of significant polypeptide sequences at the LC–Hn interface.
机译:靶向分泌抑制剂(TSIs)是一类新型的工程化生物药物分子,来源于肉毒杆菌神经毒素(BoNTs)。它们由BoNT的金属蛋白酶轻链(LC)和易位结构域(Hn)组成。因此,它们缺乏对运动神经元的天然毒性,但能够靶向可溶性N-乙基马来酰亚胺敏感的融合蛋白附着受体(SNARE)蛋白。这些功能片段(LHn)衍生物以单链蛋白形式表达,需要翻译后激活为双链分子才能发挥功能。已经生产了一系列BoNT衍生物,以证明在LC-Hn界面上成功使用了工程化的SNARE底物肽,使这些分子具有自激活功能。或者,可以设计特定外蛋白酶的识别位点以允许受控激活。在此,据报道三种LHn衍生物的晶体结构在2.7至3.0Å分辨率之间。这些分子中的两个是含有SNARE肽的血清型A的衍生物。另外,第三结构对应于LHn血清型B,其在外蛋白酶激活位点包括肽接头。在所有三种情况下,由于混乱,无法对添加的工程段进行建模。然而,尽管在LC–Hn界面处包含重要的多肽序列,但这些结构突出了将LHn折叠保持在一起的强相互作用。

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