Laboratory of Membrane Chemistry and Biology (CBMN), UMR CNRS 5248, Université de Bordeaux, Allée de Geoffroy St Hilaire, 33600, Pessac, France.
Université de Bordeaux, 351 Cours de la Libération, 33400, Talence, France.
Sci Rep. 2017 Jun 6;7(1):2835. doi: 10.1038/s41598-017-03013-3.
Exocytosis depends on cytosolic domains of SNARE proteins but the function of the transmembrane domains (TMDs) in membrane fusion remains controversial. The TMD of the SNARE protein synaptobrevin2/VAMP2 contains two highly conserved small amino acids, G and C, in its central portion. Substituting G and/or C with the β-branched amino acid valine impairs the structural flexibility of the TMD in terms of α-helix/β-sheet transitions in model membranes (measured by infrared reflection-absorption or evanescent wave spectroscopy) during increase in protein/lipid ratios, a parameter expected to be altered by recruitment of SNAREs at fusion sites. This structural change is accompanied by reduced membrane fluidity (measured by infrared ellipsometry). The GV/CV mutation nearly abolishes depolarization-evoked exocytosis (measured by membrane capacitance) and hormone secretion (measured biochemically). Single-vesicle optical (by TIRF microscopy) and biophysical measurements of ATP release indicate that GV/CV retards initial fusion-pore opening, hinders its expansion and leads to premature closure in most instances. We conclude that the TMD of VAMP2 plays a critical role in membrane fusion and that the structural mobility provided by the central small amino acids is crucial for exocytosis by influencing the molecular re-arrangements of the lipid membrane that are necessary for fusion pore opening and expansion.
胞吐作用依赖于 SNARE 蛋白的胞质结构域,但跨膜结构域 (TMD) 在膜融合中的功能仍存在争议。突触融合蛋白 2/VAMP2 的 TMD 中央部分含有两个高度保守的小氨基酸 G 和 C。用β支链氨基酸缬氨酸替代 G 和/或 C 会破坏 TMD 的结构灵活性,表现在增加蛋白/脂质比例时模型膜中α-螺旋/β-折叠转变(通过红外反射吸收或消逝波光谱测量),这是 SNARE 在融合部位募集时预计会改变的参数。这种结构变化伴随着膜流动性的降低(通过红外椭圆测量法测量)。GV/CV 突变几乎完全消除了去极化诱导的胞吐作用(通过膜电容测量)和激素分泌(通过生化测量)。单个囊泡的光学(通过 TIRF 显微镜)和 ATP 释放的生物物理测量表明,GV/CV 会延迟初始融合孔的打开,阻碍其扩展,并导致大多数情况下过早关闭。我们得出结论,VAMP2 的 TMD 在膜融合中起着关键作用,中央小氨基酸提供的结构灵活性对于通过影响融合孔打开和扩展所需的脂质膜的分子重排来促进胞吐作用至关重要。