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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Botulinum neurotoxin E-insensitive mutants of SNAP-25 fail to bind VAMP but support exocytosis.
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Botulinum neurotoxin E-insensitive mutants of SNAP-25 fail to bind VAMP but support exocytosis.

机译:SNAP-25的肉毒杆菌神经毒素E不敏感突变体无法结合VAMP,但支持胞吐作用。

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摘要

Neurotransmitter release from synaptic vesicles is mediated by complex machinery, which includes the v- and t-SNAP receptors (SNAREs), vesicle-associated membrane protein (VAMP), synaptotagmin, syntaxin, and synaptosome-associated protein of 25 kDa (SNAP-25). They are essential for neurotransmitter exocytosis because they are the proteolytic substrates of the clostridial neurotoxins tetanus neurotoxin and botulinum neurotoxins (BoNTs), which cause tetanus and botulism, respectively. Specifically, SNAP-25 is cleaved by both BoNT/A and E at separate sites within the COOH-terminus. We now demonstrate, using toxin-insensitive mutants of SNAP-25, that these two toxins differ in their specificity for the cleavage site. Following modification within the COOH-terminus, the mutants completely resistant to BoNT/E do not bind VAMP but were still able to form a sodium dodecyl sulfate-resistant complex with VAMP and syntaxin. Furthermore, these mutants retain function in vivo, conferring BoNT/E-resistant exocytosis to transfected PC12 cells. These data provide information on structural requirements within the C-terminal domain of SNAP-25 for its function in exocytosis and raise doubts about the significance of in vitro binary interactions for the in vivo functions of synaptic protein complexes.
机译:突触小泡释放的神经递质是由复杂的机制介导的,其中包括v-和t-SNAP受体(SNARE),囊泡相关膜蛋白(VAMP),突触结合蛋白,语法素和25 kDa的突触体相关蛋白(SNAP-25 )。它们对于神经递质的胞吐作用至关重要,因为它们分别是梭菌神经毒素破伤风神经毒素和肉毒杆菌神经毒素(BoNT)的蛋白水解底物,分别导致破伤风和肉毒杆菌中毒。具体而言,SNAP-25被BoNT / A和E在COOH末端内的不同位点切割。我们现在证明,使用毒素不敏感的SNAP-25突变体,这两种毒素对切割位点的特异性不同。在COOH末端进行修饰后,对BoNT / E完全耐药的突变体不结合VAMP,但仍能与VAMP和语法素形成耐十二烷基硫酸钠的复合物。此外,这些突变体在体内保留功能,赋予转染的PC12细胞BoNT / E抗性胞吐作用。这些数据提供了有关SNAP-25 C端结构域在胞吐功能中的结构要求的信息,并引起了对体外二元相互作用对突触蛋白复合物的体内功能的重要性的怀疑。

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