Puffer E B, Lomneth R B, Sarkar H K, Singh B R
Department of Chemistry and Biochemistry University of Massachusetts at Dartmouth, Dartmouth, Massachusetts 02747, USA.
Biochemistry. 2001 Aug 7;40(31):9374-8. doi: 10.1021/bi010362z.
The role of SNAP-25 (synaptosomal associated protein of 25 kDa) isotypes in the neurotransmitter release process was examined by varying their relative abundance during PC12 cell differentiation induced by nerve growth factor (NGF). Norepinephrine release by NGF-differentiated PC12 cells is more sensitive to type A botulinum toxin (BoNT/A) than by nondifferentiated cells, while both differentiated and nondifferentiated PC12 cells are equally sensitive to type E botulinum toxin (BoNT/E). The differential sensitivity to BoNT/A corresponds to an altered susceptibility of SNAP-25 isotypes to BoNT/A cleavage in vitro, whereas both isotypes are equally vulnerable to cleavage by BoNT/E. Using recombinant SNAP-25 preparations, we show that BoNT/A cleaves SNAP-25b (present in differentiated cells) 2-fold more readily than SNAP-25a (present in both differentiated and nondifferentiated cells). Structural studies using far-ultraviolet circular dichroism (UV--CD) and thermal denaturation suggest a difference in the polypeptide folding as the underlying molecular basis for the differential sensitivity of SNAP-25b and SNAP-25a to BoNT/A cleavage. We propose differential roles for SNAP-25b and SNAP-25a in the neurotransmitter release process since our results suggest that BoNT/A inhibits neurotransmitter release by primarily cleaving SNAP-25b.
通过在神经生长因子(NGF)诱导的PC12细胞分化过程中改变SNAP - 25(25 kDa突触体相关蛋白)同工型的相对丰度,研究了它们在神经递质释放过程中的作用。与未分化的细胞相比,NGF分化的PC12细胞释放去甲肾上腺素对A型肉毒杆菌毒素(BoNT/A)更敏感,而分化和未分化的PC12细胞对E型肉毒杆菌毒素(BoNT/E)的敏感性相同。对BoNT/A的不同敏感性对应于SNAP - 25同工型在体外对BoNT/A切割的敏感性改变,而两种同工型对BoNT/E切割同样敏感。使用重组SNAP - 25制剂,我们发现BoNT/A切割SNAP - 25b(存在于分化细胞中)的速度比SNAP - 25a(存在于分化和未分化细胞中)快2倍。使用远紫外圆二色性(UV - CD)和热变性进行的结构研究表明,多肽折叠的差异是SNAP - 25b和SNAP - 25a对BoNT/A切割敏感性不同的潜在分子基础。我们提出SNAP - 25b和SNAP - 25a在神经递质释放过程中具有不同作用,因为我们的结果表明BoNT/A主要通过切割SNAP - 25b来抑制神经递质释放。