Bukoreshtliev Nickolay Vassilev, Hodneland Erlend, Eichler Tilo Wolf, Eifart Patricia, Rustom Amin, Gerdes Hans-Hermann
Interdisciplinary Center for Neurosciences (IZN), Department of Neurobiology, University of Heidelberg, INF 364, 69120 Heidelberg, Germany.
Int J Cell Biol. 2012;2012:805295. doi: 10.1155/2012/805295. Epub 2012 Jun 6.
The biogenesis, maturation, and exocytosis of secretory granules in interphase cells have been well documented, whereas the distribution and exocytosis of these hormone-storing organelles during cell division have received little attention. By combining ultrastructural analyses and time-lapse microscopy, we here show that, in dividing PC12 cells, the prominent peripheral localization of secretory granules is retained during prophase but clearly reduced during prometaphase, ending up with only few peripherally localized secretory granules in metaphase cells. During anaphase and telophase, secretory granules exhibited a pronounced movement towards the cell midzone and, evidently, their tracks colocalized with spindle microtubules. During cytokinesis, secretory granules were excluded from the midbody and accumulated at the bases of the intercellular bridge. Furthermore, by measuring exocytosis at the single granule level, we showed, that during all stages of cell division, secretory granules were competent for regulated exocytosis. In conclusion, our data shed new light on the complex molecular machinery of secretory granule redistribution during cell division, which facilitates their release from the F-actin-rich cortex and active transport along spindle microtubules.
间期细胞中分泌颗粒的生物发生、成熟和胞吐作用已有充分记载,而这些储存激素的细胞器在细胞分裂过程中的分布和胞吐作用却很少受到关注。通过结合超微结构分析和延时显微镜观察,我们在此表明,在分裂的PC12细胞中,分泌颗粒在前期保留了显著的外周定位,但在有丝分裂前期明显减少,最终中期细胞中只有少数外周定位的分泌颗粒。在后期和末期,分泌颗粒向细胞中区表现出明显的移动,显然,它们的轨迹与纺锤体微管共定位。在胞质分裂期间,分泌颗粒被排除在中体之外,并聚集在细胞间桥的基部。此外,通过在单个颗粒水平测量胞吐作用,我们表明,在细胞分裂的所有阶段,分泌颗粒都能够进行调节性胞吐作用。总之,我们的数据为细胞分裂过程中分泌颗粒重新分布的复杂分子机制提供了新的线索,这有助于它们从富含F-肌动蛋白的皮质释放并沿纺锤体微管进行主动运输。