Schiavo G, Benfenati F, Poulain B, Rossetto O, Polverino de Laureto P, DasGupta B R, Montecucco C
Dipartimento di Scienze Biomediche, Università di Padova, Italy.
Nature. 1992 Oct 29;359(6398):832-5. doi: 10.1038/359832a0.
Clostridial neurotoxins, including tetanus toxin and the seven serotypes of botulinum toxin (A-G), are produced as single chains and cleaved to generate toxins with two chains joined by a single disulphide bond (Fig. 1). The heavy chain (M(r) 100,000 (100K)) is responsible for specific binding to neuronal cells and cell penetration of the light chain (50K), which blocks neurotransmitter release. Several lines of evidence have recently suggested that clostridial neurotoxins could be zinc endopeptidases. Here we show that tetanus and botulinum toxins serotype B are zinc endopeptidases, the activation of which requires reduction of the interchain disulphide bond. The protease activity is localized on the light chain and is specific for synaptobrevin, an integral membrane protein of small synaptic vesicles. The rat synaptobrevin-2 isoform is cleaved by both neurotoxins at the same single site, the peptide bond Gln 76-Phe 77, but the isoform synaptobrevin-1, which has a valine at the corresponding position, is not cleaved. The blocking of neurotransmitter release of Aplysia neurons injected with tetanus toxin or botulinum toxins serotype B is substantially delayed by peptides containing the synaptobrevin-2 cleavage site. These results indicate that tetanus and botulinum B neurotoxins block neurotransmitter release by cleaving synaptobrevin-2, a protein that, on the basis of our results, seems to play a key part in neurotransmitter release.
梭菌神经毒素,包括破伤风毒素和七种血清型的肉毒杆菌毒素(A - G),最初以单链形式产生,随后被切割形成由单个二硫键连接的两条链的毒素(图1)。重链(分子量100,000(100K))负责与神经元细胞特异性结合,并协助轻链(50K)进入细胞,轻链会阻断神经递质的释放。最近有几条证据表明梭菌神经毒素可能是锌内肽酶。在此我们表明破伤风毒素和B型肉毒杆菌毒素是锌内肽酶,其激活需要链间二硫键的还原。蛋白酶活性定位于轻链,且对突触小泡膜整合蛋白突触小泡蛋白具有特异性。大鼠的突触小泡蛋白 - 2亚型在同一单个位点,即肽键Gln 76 - Phe 77处被这两种神经毒素切割,但在相应位置具有缬氨酸的突触小泡蛋白 - 1亚型则不被切割。注射破伤风毒素或B型肉毒杆菌毒素的海兔神经元神经递质释放的阻断被含有突触小泡蛋白 - 2切割位点的肽显著延迟。这些结果表明破伤风毒素和B型肉毒杆菌神经毒素通过切割突触小泡蛋白 - 2来阻断神经递质释放,根据我们的结果,该蛋白似乎在神经递质释放中起关键作用。