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首页> 外文期刊>Journal of Structural Biology >Structure and activity of a functional derivative of Clostridium botulinum neurotoxin B
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Structure and activity of a functional derivative of Clostridium botulinum neurotoxin B

机译:肉毒梭菌神经毒素B功能衍生物的结构和活性

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Botulinum neurotoxins (BoNTs) cause flaccid paralysis by inhibiting neurotransmission at cholinergic nerve terminals. BoNTs consist of three essential domains for toxicity: the cell binding domain (Hc), the translocation domain (Hn) and the catalytic domain (LC). A functional derivative (LHn) of the parent neurotoxin B composed of Hn and LC domains was recombinantly produced and characterised. LHn/B crystallographic structure at 2.8 angstrom resolution is reported. The catalytic activity of LHn/B towards recombinant human VAMP was analysed by substrate cleavage assay and showed a higher specificity for VAMP-1,-2 compared to VAMP-3. LHn/B also showed measurable activity in living spinal cord neurons. Despite lacking the Hc (cell-targeting) domain, LHn/B retained the capacity to internalize and cleave intracellular VAMP-1 and -2 when added to the cells at high concentration. These activities of the LHn/B fragment demonstrate the utility of engineered botulinum neurotoxin fragments as analytical tools to study the mechanisms of action of BoNT neurotoxins and of SNARE proteins
机译:肉毒杆菌神经毒素(BoNT)通过抑制胆碱能神经末梢的神经传递而导致松弛性麻痹。 BoNT由三个毒性基本域组成:细胞结合域(Hc),易位域(Hn)和催化域(LC)。重组生产并鉴定了由Hn和LC结构域组成的亲本神经毒素B的功能性衍生物(LHn)。报道了2.8埃分辨率的LHn / B晶体结构。 LHn / B对重组人VAMP的催化活性通过底物裂解分析进行了分析,与VAMP-3相比,对VAMP-1,-2具有更高的特异性。 LHn / B在活的脊髓神经元中也显示出可测量的活性。尽管缺少Hc(细胞靶向)域,但当以高浓度添加到细胞中时,LHn / B仍具有内化和裂解细胞内VAMP-1和-2的能力。 LHn / B片段的这些活性证明了工程化的肉毒杆菌神经毒素片段可作为分析工具来研究BoNT神经毒素和SNARE蛋白的作用机制

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