Margittai M, Fasshauer D, Pabst S, Jahn R, Langen R
Department of Neurobiology, Max-Planck-Institute for Biophysical Chemistry, 37077 Göttingen, Germany.
J Biol Chem. 2001 Apr 20;276(16):13169-77. doi: 10.1074/jbc.M010653200. Epub 2001 Jan 19.
SNARE (soluble NSF acceptor protein receptor) proteins are thought to mediate membrane fusion by assembling into heterooligomeric complexes that connect the fusing membranes and initiate the fusion reaction. Here we used site-directed spin labeling to map conformational changes that occur upon homo- and heterooligomeric complex formation of neuronal SNARE proteins. We found that the soluble domains of synaptobrevin, SNAP-25, and syntaxin 1 are unstructured. At higher concentrations, the SNARE motif of syntaxin 1 forms homooligomeric helical bundles with at least some of the alpha-helices aligned in parallel. In the assembled SNARE complex, mapping of thirty side chain positions yielded spectra which are in good agreement with the recently published crystal structure. The loop region of SNAP-25 that connects the two SNARE motifs is largely unstructured. C-terminal truncation of synaptobrevin resulted in complexes that are completely folded N-terminal of the truncation but become unstructured at the C-terminal end. The binary complex of syntaxin and SNAP-25 consists of a parallel four helix-bundle with properties resembling that of the ternary complex.
SNARE(可溶性 NSF 附着蛋白受体)蛋白被认为通过组装成异源寡聚复合物来介导膜融合,这些复合物连接融合膜并引发融合反应。在这里,我们使用定点自旋标记来绘制神经元 SNARE 蛋白形成同源和异源寡聚复合物时发生的构象变化。我们发现,突触小泡蛋白、SNAP-25 和 syntaxin 1 的可溶性结构域是无结构的。在较高浓度下,syntaxin 1 的 SNARE 基序形成同源寡聚螺旋束,至少一些α-螺旋平行排列。在组装好的 SNARE 复合物中,对 30 个侧链位置的图谱分析产生的光谱与最近发表的晶体结构高度一致。连接两个 SNARE 基序的 SNAP-25 的环区域基本上是无结构的。突触小泡蛋白的 C 端截短导致复合物在截短的 N 端完全折叠,但在 C 端变得无结构。syntaxin 和 SNAP-25 的二元复合物由一个平行的四螺旋束组成,其性质类似于三元复合物。