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Reluctance to membrane binding enables accessibility of the synaptobrevin SNARE motif for SNARE complex formation

机译:不愿意与膜结合使得能够接近突触臂蛋白SNARE基序形成SNARE复合物

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摘要

SNARE proteins play a critical role in intracellular membrane fusion by forming tight complexes that bring two membranes together and involve sequences called SNARE motifs. These motifs have a high tendency to form amphipathic coiled-coils that assemble into four-helix bundles, and often precede transmembrane regions. NMR studies in dodecylphosphocholine (DPC) micelles suggested that the N-terminal half of the SNARE motif from the neuronal SNARE synaptobrevin binds to membranes, which appeared to contradict previous biophysical studies of synaptobrevin in lipo-somes. NMR analyses of synaptobrevin reconstituted into nano-discs and into liposomes now show that most of its SNARE motif, except for the basic C terminus, is highly flexible, exhibiting cross-peak patterns and transverse relaxation rates that are very similar to those observed in solution. Considering the proximity to the bilayer imposed by membrane anchoring, our data show that most of the synaptobrevin SNARE motif has a remarkable reluctance to bind membranes. This conclusion is further supported by NMR experiments showing that the soluble synaptobrevin SNARE motif does not bind to liposomes, even though it does bind to DPC micelles. These results show that nanodiscs provide a much better membrane model than DPC micelles in this system, and that most of the SNARE motif of membrane-anchored synaptobrevin is accessible for SNARE complex formation. We propose that the charge and hydrophobicity of SNARE motifs is optimized to enable formation of highly stable SNARE complexes while at the same time avoiding membrane binding, which could hinder SNARE complex assembly.
机译:SNARE蛋白在细胞内膜融合中起着至关重要的作用,形成紧密的复合物,将两个膜结合在一起并涉及称为SNARE模序的序列。这些基序具有形成两亲性卷曲螺旋的高趋势,所述卷曲螺旋螺旋组装成四螺旋束,并且通常在跨膜区域之前。十二烷基磷酸胆碱(DPC)胶束中的NMR研究表明,来自神经元SNARE突触短纤维的SNARE基序的N端一半与膜结合,这似乎与之前脂质体中突触短纤维的生物物理学研究相矛盾。核磁共振波谱分析重构到纳米圆盘和脂质体中的突触短链蛋白,现在显示,除基本C末端外,其大部分SNARE基序都是高度柔性的,表现出与溶液中观察到的相似的跨峰模式和横向弛豫速率。考虑到膜锚定所施加的与双层的接近性,我们的数据表明,大多数突触臂蛋白SNARE基序具有显着的不愿意结合膜的特性。 NMR实验进一步支持了这一结论,该实验表明可溶性突触小臂SNARE基序即使与DPC胶束结合也不会与脂质体结合。这些结果表明,与该系统中的DPC胶束相比,纳米光盘提供了更好的膜模型,并且膜锚定的突触短纤维的大部分SNARE母题都可用于SNARE复合物的形成。我们建议对SNARE基序的电荷和疏水性进行优化,以形成高度稳定的SNARE复合物,同时避免膜结合,这可能会阻碍SNARE复合物的组装。

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  • 作者单位

    Departments of Biochemistry and Pharmacology, University of Texas Southwestern Medical Center, 6000 Harry Hines Boulevard, Dallas, TX 75390;

    Departments of Biochemistry and Pharmacology, University of Texas Southwestern Medical Center, 6000 Harry Hines Boulevard, Dallas, TX 75390;

    Departments of Biochemistry and Pharmacology, University of Texas Southwestern Medical Center, 6000 Harry Hines Boulevard, Dallas, TX 75390;

    Departments of Biochemistry and Pharmacology, University of Texas Southwestern Medical Center, 6000 Harry Hines Boulevard, Dallas, TX 75390;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    neurotransmitter release; membrane proteins; membrane traffic;

    机译:神经递质释放;膜蛋白;膜运输;
  • 入库时间 2022-08-18 00:40:52

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