首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Surface dynamics in living acinar cells imaged by atomic force microscopy: Identification of plasma membrane structures involved in exocytosis
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Surface dynamics in living acinar cells imaged by atomic force microscopy: Identification of plasma membrane structures involved in exocytosis

机译:原子力成像的活腺泡细胞的表面动力学 显微镜:鉴定所涉及的质膜结构 胞吐

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摘要

The dynamics at the plasma membrane resulting from secretory vesicle docking and fusion and compensatory endocytosis has been difficult to observe in living cells primarily due to limited resolution at the light microscopic level. Using the atomic force microscope, we have been able to image and record changes in plasma membrane structure at ultrahigh resolution after stimulation of secretion from isolated pancreatic acinar cells. “Pits” measuring 500–2000 nm and containing 3–20 depressions measuring 100–180 nm in diameter were observed only at the apical region of acinar cells. The time course of an increase and decrease in “depression” size correlated with an increase and decrease of amylase secretion from live acinar cells. Depression dynamics and amylase release were found to be regulated in part by actin. No structural changes were identified at the basolateral region of these cells. Our results suggest depressions to be the fusion pores identified earlier in mast cells by freeze-fracture electron microscopy and by electrophysiological measurements. The atomic force microscope has enabled us to observe plasma membrane dynamics of the exocytic process in living cells in real time.
机译:主要由于在光学显微镜下分辨率有限,很难在活细胞中观察到由分泌性囊泡对接和融合以及代偿性内吞作用引起的质膜动力学。使用原子力显微镜,我们能够在刺激并刺激胰腺胰腺腺泡细胞分泌后以超高分辨率记录并记录质膜结构的变化。仅在腺泡细胞的顶端区域观察到“凹坑”,尺寸为500–2000 nm,并包含3–20个凹陷,直径为100–180 nm。 “抑郁”大小增加和减少的时间过程与活腺泡细胞分泌淀粉酶的增加和减少有关。发现抑郁动力学和淀粉酶释放部分受肌动蛋白调节。在这些细胞的基底外侧区域未发现结构变化。我们的研究结果表明,凹陷是早期通过冷冻断裂电子显微镜和电生理测量在肥大细胞中发现的融合孔。原子力显微镜使我们能够观察 活细胞外泌过程的质膜动力学 即时的。

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