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一种半自动机器学习辅助方法,用于对中心体和微管组织进行定量分析。

A semi-automated machine learning-aided approach to quantitative analysis of centrosomes and microtubule organization.

机构信息

Department of Cell and Developmental Biology, University of Colorado School of Medicine, 2801 East 17th Avenue, Aurora, CO 80045-2537, USA.

Department of Molecular Biology and Genetics, Cornell University, Ithaca, NY 14853, USA.

出版信息

J Cell Sci. 2020 Jul 30;133(14):jcs243543. doi: 10.1242/jcs.243543.

Abstract

Microtubules (MTs) promote important cellular functions including migration, intracellular trafficking, and chromosome segregation. The centrosome, comprised of two centrioles surrounded by the pericentriolar material (PCM), is the cell's central MT-organizing center. Centrosomes in cancer cells are commonly numerically amplified. However, the question of how the amplification of centrosomes alters MT organization capacity is not well studied. We developed a quantitative image-processing and machine learning-aided approach for the semi-automated analysis of MT organization. We designed a convolutional neural network-based approach for detecting centrosomes, and an automated pipeline for analyzing MT organization around centrosomes, encapsulated in a semi-automatic graphical tool. Using this tool, we find that breast cancer cells with supernumerary centrosomes not only have more PCM protein per centrosome, which gradually increases with increasing centriole numbers, but also exhibit expansion in PCM size. Furthermore, cells with amplified centrosomes have more growing MT ends, higher MT density and altered spatial distribution of MTs around amplified centrosomes. Thus, the semi-automated approach developed here enables rapid and quantitative analyses revealing important facets of centrosomal aberrations.

摘要

微管(MTs)促进了包括迁移、细胞内运输和染色体分离在内的重要细胞功能。中心体由两个被中心粒周围物质(PCM)包围的中心粒组成,是细胞中央的 MT 组织中心。癌细胞中的中心体通常在数量上扩增。然而,中心体的扩增如何改变 MT 组织能力的问题尚未得到很好的研究。我们开发了一种定量图像处理和机器学习辅助方法,用于半自动化分析 MT 组织。我们设计了一种基于卷积神经网络的方法来检测中心体,以及一种用于分析中心体周围 MT 组织的自动化管道,封装在一个半自动图形工具中。使用这个工具,我们发现具有多余中心体的乳腺癌细胞不仅每个中心体的 PCM 蛋白更多,而且随着中心粒数量的增加而逐渐增加,而且 PCM 大小也会扩大。此外,扩增中心体的细胞具有更多的生长 MT 末端、更高的 MT 密度和 MT 在扩增中心体周围的空间分布发生改变。因此,这里开发的半自动方法能够快速、定量地分析揭示中心体异常的重要方面。

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