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OOPS:用于分析荧光偏振显微镜图像的面向对象的偏振软件。

OOPS: Object-Oriented Polarization Software for analysis of fluorescence polarization microscopy images.

机构信息

Department of Cell, Developmental, and Integrative Biology, University of Alabama at Birmingham, Birmingham, Alabama, United States of America.

出版信息

PLoS Comput Biol. 2024 Aug 12;20(8):e1011723. doi: 10.1371/journal.pcbi.1011723. eCollection 2024 Aug.

Abstract

Most essential cellular functions are performed by proteins assembled into larger complexes. Fluorescence Polarization Microscopy (FPM) is a powerful technique that goes beyond traditional imaging methods by allowing researchers to measure not only the localization of proteins within cells, but also their orientation or alignment within complexes or cellular structures. FPM can be easily integrated into standard widefield microscopes with the addition of a polarization modulator. However, the extensive image processing and analysis required to interpret the data have limited its widespread adoption. To overcome these challenges and enhance accessibility, we introduce OOPS (Object-Oriented Polarization Software), a MATLAB package for object-based analysis of FPM data. By combining flexible image segmentation and novel object-based analyses with a high-throughput FPM processing pipeline, OOPS empowers researchers to simultaneously study molecular order and orientation in individual biological structures; conduct population assessments based on morphological features, intensity statistics, and FPM measurements; and create publication-quality visualizations, all within a user-friendly graphical interface. Here, we demonstrate the power and versatility of our approach by applying OOPS to punctate and filamentous structures.

摘要

大多数基本的细胞功能都是由组装成更大复合物的蛋白质执行的。荧光偏振显微镜(FPM)是一种强大的技术,它超越了传统的成像方法,不仅可以测量蛋白质在细胞内的定位,还可以测量它们在复合物或细胞结构内的取向或排列。通过在标准宽场显微镜上添加偏振调制器,可以轻松地将 FPM 集成到标准宽场显微镜中。然而,为了解释数据,需要进行广泛的图像处理和分析,这限制了它的广泛应用。为了克服这些挑战并提高可访问性,我们引入了 OOPS(面向对象的偏振软件),这是一个用于 FPM 数据基于对象的分析的 MATLAB 软件包。通过将灵活的图像分割和新颖的基于对象的分析与高通量 FPM 处理管道相结合,OOPS 使研究人员能够同时研究单个生物结构中的分子有序性和取向;根据形态特征、强度统计和 FPM 测量进行群体评估;并在用户友好的图形界面中创建具有出版质量的可视化效果。在这里,我们通过将 OOPS 应用于点状和丝状结构来展示我们方法的强大功能和多功能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79b4/11341096/d2c28a199286/pcbi.1011723.g001.jpg

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