Departments of Chemistry and Program in Biochemistry, Cell, and Molecular Biology, University of Scranton, Scranton, PA 18510, USA.
Cell Mol Neurobiol. 2012 Mar;32(2):201-8. doi: 10.1007/s10571-011-9748-4. Epub 2011 Aug 18.
Intrachain disulfide bond formation among the cysteine thiols of SNAP-25, a component of the SNARE protein complex required for neurotransmitter release, has been hypothesized to link oxidative stress and inhibition of synaptic transmission. However, neither the availability in vivo of SNAP-25 thiols, which are known targets of S-palmitoylation, nor the tendency of these thiols to form intrachain disulfide bonds is known. We have examined, in rat brain extracts, both the availability of closely spaced, or vicinal, thiol pairs in SNAP-25 and the propensity of these dithiols toward disulfide bond formation using a method improved by us recently that exploits the high chemoselectivity of phenylarsine oxide (PAO) for vicinal thiols. The results show for the first time that a substantial fraction of soluble and, to a lesser extent, particulate SNAP-25 contain non-acylated PAO-binding thiol pairs and that these thiols in soluble SNAP-25 in particular have a high propensity toward disulfide bond formation. Indeed, disulfide bonds were detected in a small fraction of soluble SNAP-25 even under conditions designed to prevent or greatly limit protein thiol oxidation during experimental procedures. These results provide direct experimental support for the availability, in a subpopulation of SNAP-25, of vicinal thiols that may confer on one or more isoforms of this family of proteins a sensitivity to oxidative stress.
SNAP-25 是 SNARE 蛋白复合物的一个组成部分,对于神经递质的释放是必需的,其半胱氨酸巯基之间形成的链内二硫键被假设与氧化应激和抑制突触传递有关。然而,无论是体内 SNAP-25 巯基的可用性(已知是 S-棕榈酰化的靶标),还是这些巯基形成链内二硫键的倾向,都还不清楚。我们使用最近改进的方法,利用苯胂酸氧化物(PAO)对相邻巯基的高化学选择性,在大鼠脑提取物中同时检查了 SNAP-25 中紧密间隔或相邻巯基对的可用性,以及这些二硫醇形成二硫键的倾向。结果首次表明,可溶性 SNAP-25 中相当大的一部分(在较小程度上是颗粒状 SNAP-25)含有未酰化的 PAO 结合巯基对,特别是可溶性 SNAP-25 中的这些巯基具有形成二硫键的高倾向。事实上,即使在设计用于防止或大大限制实验过程中蛋白质巯基氧化的条件下,也可以在可溶性 SNAP-25 的一小部分中检测到二硫键。这些结果为 SNAP-25 亚群中存在相邻巯基提供了直接的实验支持,这些巯基可能使该蛋白家族的一个或多个同工型对氧化应激敏感。