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首页> 外文期刊>Cell Division >A 2D/3D image analysis system to track fluorescently labeled structures in rod-shaped cells: application to measure spindle pole asymmetry during mitosis
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A 2D/3D image analysis system to track fluorescently labeled structures in rod-shaped cells: application to measure spindle pole asymmetry during mitosis

机译:一种2D / 3D图像分析系统,用于跟踪棒状细胞中荧光标记的结构:在有丝分裂期间用于测量纺锤极不对称的应用

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Background The yeast Schizosaccharomyces pombe is frequently used as a model for studying the cell cycle. The cells are rod-shaped and divide by medial fission. The process of cell division, or cytokinesis, is controlled by a network of signaling proteins called the Septation Initiation Network (SIN); SIN proteins associate with the SPBs during nuclear division (mitosis). Some SIN proteins associate with both SPBs early in mitosis, and then display strongly asymmetric signal intensity at the SPBs in late mitosis, just before cytokinesis. This asymmetry is thought to be important for correct regulation of SIN signaling, and coordination of cytokinesis and mitosis. In order to study the dynamics of organelles or large protein complexes such as the spindle pole body (SPB), which have been labeled with a fluorescent protein tag in living cells, a number of the image analysis problems must be solved; the cell outline must be detected automatically, and the position and signal intensity associated with the structures of interest within the cell must be determined. Results We present a new 2D and 3D image analysis system that permits versatile and robust analysis of motile, fluorescently labeled structures in rod-shaped cells. We have designed an image analysis system that we have implemented as a user-friendly software package allowing the fast and robust image-analysis of large numbers of rod-shaped cells. We have developed new robust algorithms, which we combined with existing methodologies to facilitate fast and accurate analysis. Our software permits the detection and segmentation of rod-shaped cells in either static or dynamic (i.e. time lapse) multi-channel images. It enables tracking of two structures (for example SPBs) in two different image channels. For 2D or 3D static images, the locations of the structures are identified, and then intensity values are extracted together with several quantitative parameters, such as length, width, cell orientation, background fluorescence and the distance between the structures of interest. Furthermore, two kinds of kymographs of the tracked structures can be established, one representing the migration with respect to their relative position, the other representing their individual trajectories inside the cell. This software package, called “RodCellJ”, allowed us to analyze a large number of S. pombe cells to understand the rules that govern SIN protein asymmetry. (Continued on next page) (Continued from previous page) Conclusions “RodCellJ” is freely available to the community as a package of several ImageJ plugins to simultaneously analyze the behavior of a large number of rod-shaped cells in an extensive manner. The integration of different image-processing techniques in a single package, as well as the development of novel algorithms does not only allow to speed up the analysis with respect to the usage of existing tools, but also accounts for higher accuracy. Its utility was demonstrated on both 2D and 3D static and dynamic images to study the septation initiation network of the yeast Schizosaccharomyces pombe. More generally, it can be used in any kind of biological context where fluorescent-protein labeled structures need to be analyzed in rod-shaped cells. Availability RodCellJ is freely available under http://bigwww.epfl.ch/algorithms.html webcite .
机译:背景酵母粟酒裂殖酵母经常被用作研究细胞周期的模型。细胞为杆状并通过内部裂变分裂。细胞分裂或胞质分裂的过程是由信号蛋白网络(称为Septation Initiation Network(SIN))控制的。 SIN蛋白在核分裂(有丝分裂)过程中与SPB结合。一些SIN蛋白在有丝分裂的早期与两个SPB相关联,然后在有丝分裂前的晚期有丝分裂的SPB处显示强烈的不对称信号强度。这种不对称被认为对SIN信号的正确调节以及胞质分裂和有丝分裂的协调很重要。为了研究已在活细胞中用荧光蛋白标签标记的细胞器或大型蛋白复合物(如纺锤极体(SPB))的动力学,必须解决许多图像分析问题。必须自动检测细胞轮廓,并且必须确定与细胞内感兴趣结构相关的位置和信号强度。结果我们提供了一个新的2D和3D图像分析系统,该系统可以对杆状细胞中的活动分子,荧光标记的结构进行多方面的分析。我们设计了一种图像分析系统,已将其实现为用户友好的软件包,可对大量杆状细胞进行快速而强大的图像分析。我们已经开发了新的健壮算法,并将其与现有方法结合以促进快速准确的分析。我们的软件允许在静态或动态(即时间间隔)多通道图像中检测和分割杆状细胞。它可以跟踪两个不同图像通道中的两个结构(例如SPB)。对于2D或3D静态图像,将识别结构的位置,然后提取强度值以及几个定量参数,例如长度,宽度,细胞方向,背景荧光和感兴趣的结构之间的距离。此外,可以建立两种跟踪结构的运动记号,一种表示相对于其相对位置的迁移,另一种表示其在单元格内的各个轨迹。这个名为“ RodCellJ”的软件包使我们能够分析大量的粟酒裂殖酵母细胞,从而了解控制SIN蛋白不对称性的规则。 (续下页)(续上一页)结论“ RodCellJ”作为几个ImageJ插件的软件包可免费提供给社区,以广泛地同时分析大量杆状单元的行为。将不同的图像处理技术集成到单个程序包中,以及开发新颖的算法,不仅可以加快使用现有工具的分析速度,还可以提高准确性。它的效用已在2D和3D静态和动态图像上得到证明,以研究酵母裂殖酵母的分离启动网络。更一般而言,它可用于需要在棒状细胞中分析荧光蛋白标记结构的任何生物学环境。可用性RodCellJ可在http://bigwww.epfl.ch/algorithms.html网站上免费获得。

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