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首页> 外文期刊>Molecular BioSystems >Role of the transmembrane domain in SNARE protein mediated membrane fusion: peptide nucleic acid/peptide model systems
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Role of the transmembrane domain in SNARE protein mediated membrane fusion: peptide nucleic acid/peptide model systems

机译:跨膜结构域在SNARE蛋白介导的膜融合中的作用:肽核酸/肽模型系统

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摘要

Fusion of synaptic vesicles with the presynaptic plasma membrane is mediated by Soluble NSF (N-ethylmaleimide-sensitive factor) Attachment Protein Receptor proteins also known as SNAREs. The backbone of this essential process is the assembly of SNAREs from opposite membranes into tight four helix bundles forcing membranes in close proximity. With model systems resembling SNAREs with reduced complexity we aim to understand how these proteins work at the molecular level. Here, peptide nucleic acids (PNAs) are used as excellent candidates for mimicking the SNARE recognition motif by forming well-characterized duplex structures. Hybridization between complementary PNA strands anchored in liposomes through native transmembrane domains (TMDs) induces the merger of the outer leaflets of the participating vesicles but not of the inner leaflets. A series of PNA/peptide hybrids differing in the length of TMDs and charges at the C-terminal end is presented. Interestingly, mixing of both outer and inner leaflets is seen for TMDs containing an amide in place of the natural carboxylic acid at the C-terminal end. Charged side chains at the C-terminal end of the TMDs are shown to have a negative impact on the mixing of liposomes. The length of the TMDs is vital for fusion as with the use of shortened TMDs, fusion was completely prevented.
机译:突触小泡与突触前质膜的融合是由可溶性NSF(N-乙基马来酰亚胺敏感因子)附着蛋白受体蛋白(也称为SNARE)介导的。这个必不可少的过程的主干是将SNARE从相对的膜组装成紧密的四个螺旋束,迫使膜紧紧靠近。通过类似于SNARE的模型系统,降低了复杂性,我们旨在了解这些蛋白质如何在分子水平上发挥作用。在这里,肽核酸(PNA)被用作模仿SNARE识别基序的优秀候选者,通过形成特征明确的双链体结构。通过天然跨膜结构域(TMDs)锚定在脂质体中的互补PNA链之间的杂交诱导了参与囊泡的外小叶的融合,而不诱导内小叶的融合。介绍了一系列PNA /肽杂化物,它们的TMD和C端电荷不同。有趣的是,对于在C端含有酰胺代替天然羧酸的TMD,可以看到外部和内部小叶的混合。 TMDs C末端的带电侧链显示对脂质体的混合具有负面影响。 TMD的长度对于融合至关重要,因为使用缩短的TMD可以完全防止融合。

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  • 来源
    《Molecular BioSystems》 |2016年第9期|2770-2776|共7页
  • 作者单位

    Institute of Organic and Biomolecular Chemistry, Georg-August-University of Gottingen, Tammannstr. 2, 37077 Gottingen, Germany;

    Institute of Organic and Biomolecular Chemistry, Georg-August-University of Gottingen, Tammannstr. 2, 37077 Gottingen, Germany;

    Institute of Organic and Biomolecular Chemistry, Georg-August-University of Gottingen, Tammannstr. 2, 37077 Gottingen, Germany;

    Institute of Organic and Biomolecular Chemistry, Georg-August-University of Gottingen, Tammannstr. 2, 37077 Gottingen, Germany;

    Institute of Organic and Biomolecular Chemistry, Georg-August-University of Gottingen, Tammannstr. 2, 37077 Gottingen, Germany;

    Department of Neurobiology, Max-Planck-Institute of Biophysical Chemistry, Am Fassberg 11, 37077 Goettingen, Germany;

    Institute of Organic and Biomolecular Chemistry, Georg-August-University of Gottingen, Tammannstr. 2, 37077 Gottingen, Germany;

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