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Restriction of Secretory Granule Motion near the Plasma Membrane of Chromaffin Cells

机译:嗜铬细胞质膜附近分泌颗粒运动的限制

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摘要

We used total internal reflection fluorescence microscopy to study quantitatively the motion and distribution of secretory granules near the plasma membrane (PM) of living bovine chromaffin cells. Within the ∼300-nm region measurably illuminated by the evanescent field resulting from total internal reflection, granules are preferentially concentrated close to the PM. Granule motion normal to the substrate (the z direction) is much slower than would be expected from free Brownian motion, is strongly restricted over tens of nanometer distances, and tends to reverse directions within 0.5 s. The z-direction diffusion coefficients of granules decrease continuously by two orders of magnitude within less than a granule diameter of the PM as granules approach the PM. These analyses suggest that a system of tethers or a heterogeneous matrix severely limits granule motion in the immediate vicinity of the PM. Transient expression of the light chains of tetanus toxin and botulinum toxin A did not disrupt the restricted motion of granules near the PM, indicating that SNARE proteins SNAP-25 and VAMP are not necessary for the decreased mobility. However, the lack of functional SNAREs on the plasma or granule membranes in such cells reduces the time that some granules spend immediately adjacent to the PM.
机译:我们使用全内反射荧光显微镜来定量研究活牛嗜铬细胞的质膜(PM)附近分泌颗粒的运动和分布。在全内反射导致的e逝场可测量的约300 nm区域内,颗粒优先靠近PM聚集。垂直于基板的颗粒运动(z方向)比自由布朗运动所预期的要慢得多,在数十纳米的距离上受到严格限制,并且倾向于在0.5 s内反转方向。当颗粒接近PM时,颗粒的z方向扩散系数在小于PM的颗粒直径内连续减小两个数量级。这些分析表明,系链或异质基质系统严重限制了PM紧邻颗粒的运动。破伤风毒素和肉毒杆菌毒素A的轻链的瞬时表达不会破坏PM附近颗粒的受限运动,这表明SNARE蛋白SNAP-25和VAMP对于降低的迁移率不是必需的。但是,此类细胞的质膜或颗粒膜上缺少功能性SNARE,减少了一些颗粒紧邻PM花费的时间。

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