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通过二次离子质谱(SIMS)离子显微镜对处于有丝分裂期的哺乳动物LLC-PK1上皮细胞中亚细胞钙储存进行定量成像。

Quantitative imaging of subcellular calcium stores in mammalian LLC-PK1 epithelial cells undergoing mitosis by SIMS ion microscopy.

作者信息

Chandra Subhash

机构信息

Cornell SIMS Ion Microscopy Laboratory, Department of Earth and Atmospheric Sciences, Snee Hall, Cornell University, Ithaca, NY 14853, USA.

出版信息

Eur J Cell Biol. 2005 Sep;84(9):783-97. doi: 10.1016/j.ejcb.2005.05.002.

Abstract

Quantitative 3-D total calcium gradients, representing subcellular stored calcium, were imaged with a CAMECA IMS-3f SIMS ion microscope in cryogenically prepared frozen freeze-dried LLC-PK1 cells captured in interphase and various stages of mitosis. 39K and 23Na concentrations were also measured in the same cells. Correlative optical (or SEM) and SIMS analysis of cells revealed a redistribution of the interphase Golgi calcium store in prophase and prometaphase cells. In metaphase cells, simultaneous SIMS imaging of total calcium in both the spindle and the non-spindle cytoplasm of individual cells revealed a gradual and dynamic alignment of calcium stores in both half-spindles prior to the onset of anaphase. The anaphase cells revealed the highest local total calcium concentrations in the spindle regions behind the daughter chromosomes and the lowest in the central spindle region. The pericentriolar material in telophase cells contained calcium stores. Quantitatively, a typical metaphase cell with well-aligned calcium stores in the spindle region contained 1.1 mM total calcium in each half-spindle, 0.8 mM total calcium in the non-spindle cytoplasm, and 0.5mM total calcium in the chromosomes. At the submicron scale, the distribution of total calcium was heterogeneous in the chromosomes, metaphase spindle, and non-spindle cytoplasm. An increased binding of calcium to chromosomes is not a physiological requirement for chromosomal condensation in mitosis, since interphase nuclei and mitotic chromosomes contained comparable total calcium concentrations measured per unit volume. A significant reduction of total calcium in the non-spindle cytoplasm was observed in the metaphase, anaphase, and telophase cells, which is indicative of the limited storage of the releasable calcium pool in these specific stages of mitosis. Direct total calcium measurements in subcellular regions confirmed that both the spindle and the non-spindle cytoplasm of metaphase cells contained inositol 1,4,5-trisphosphate (IP3)-sensitive calcium stores sensitive to arginine vasopressin, thapsigargin, and calcium ionophore A23187. The dynamic alignment of calcium stores in both half-spindles may be an integral part of the time-dependent process of a cell's overall preparation for exiting the metaphase stage in mammalian LLC-PK1 cells.

摘要

利用CAMECA IMS-3f二次离子质谱仪对处于间期和有丝分裂各阶段的低温冷冻干燥的LLC-PK1细胞进行成像,以获取代表亚细胞储存钙的定量三维总钙梯度。同时还测量了这些细胞中的³⁹K和²³Na浓度。对细胞进行相关光学(或扫描电子显微镜)和二次离子质谱分析发现,间期高尔基体钙库在前期和前中期细胞中发生了重新分布。在中期细胞中,对单个细胞的纺锤体和非纺锤体细胞质中的总钙进行同步二次离子质谱成像显示,在后期开始之前,两个半纺锤体中的钙库逐渐动态排列。后期细胞显示,子染色体后方的纺锤体区域局部总钙浓度最高,而中央纺锤体区域最低。末期细胞的中心粒周围物质含有钙库。定量分析表明,在纺锤体区域钙库排列良好的典型中期细胞中,每个半纺锤体含有1.1 mM总钙,非纺锤体细胞质中含有0.8 mM总钙,染色体中含有0.5 mM总钙。在亚微米尺度上,总钙在染色体、中期纺锤体和非纺锤体细胞质中的分布是不均匀的。钙与染色体结合增加并非有丝分裂中染色体凝聚的生理需求,因为间期细胞核和有丝分裂染色体每单位体积的总钙浓度相当。在中期、后期和末期细胞中观察到非纺锤体细胞质中的总钙显著减少,这表明在有丝分裂的这些特定阶段,可释放钙库的储存有限。对亚细胞区域的直接总钙测量证实,中期细胞的纺锤体和非纺锤体细胞质中都含有对精氨酸加压素、毒胡萝卜素和钙离子载体A23187敏感的1,4,5-三磷酸肌醇(IP3)敏感钙库。两个半纺锤体中钙库的动态排列可能是哺乳动物LLC-PK1细胞整体为退出中期阶段做准备的时间依赖性过程的一个组成部分。

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