小鼠弥散性减数分裂核重组灶的三色dSTORM成像及分析。

Lieke Koornneef, Maarten W Paul, Adriaan B Houtsmuller, Willy M Baarends, Johan A Slotman
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引用次数: 2

摘要

在小鼠第一次减数分裂前期,修复spo11诱导的DNA双链断裂(DSBs),促进同源染色体突触,是成功完成第一次减数分裂细胞分裂的必要条件。重组酶RAD51和DMC1在同源性搜索中发挥重要作用,但它们在这一过程中的机制尚未完全了解。RAD51和DMC1的超分辨率单分子成像提供了减数分裂前期重组酶在dsb上积累的详细信息。在这里,我们提出了一个详细的方案,重组焦点分析的三色直接随机光学重建显微镜(dSTORM)成像SYCP3, RAD51和DMC1,荧光标记抗体染色小鼠精细胞。该方案包括样品制备、数据采集、预处理和数据分析。样品制备过程包括小鼠睾丸细胞核扩散的更新版本,随后是免疫细胞化学和dSTORM成像的准备步骤。数据采集包括三色dSTORM成像,这是广泛的描述。将荧光信号转换为定位数据的预处理还包括通道对齐和图像重建,之后根据RAD51和/或DMC1定位模式确定感兴趣区域(roi)。然后,数据分析步骤需要将这些roi内的荧光信号定位处理成离散的纳米焦点,以便进一步分析。这种多步骤方法能够系统地研究与单个DSB位点相关的蛋白质的空间分布,并且可以很容易地适用于分析其他聚焦形成蛋白质。所有的计算脚本和软件都是免费访问的,使它们能够为广泛的受众所使用。主要特点:扩散核的制备,使染色质相关蛋白在dstorm兼容的覆盖层上易于抗体接近。减数分裂前期细胞核免疫荧光修复病灶的dSTORM分析。详细描述数据采集,(预处理)处理和纳米病灶特征分析,适用于在免疫检测中作为离散病灶聚集的所有蛋白质。图形的概述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Three-color dSTORM Imaging and Analysis of Recombination Foci in Mouse Spread Meiotic Nuclei.

Three-color dSTORM Imaging and Analysis of Recombination Foci in Mouse Spread Meiotic Nuclei.

Three-color dSTORM Imaging and Analysis of Recombination Foci in Mouse Spread Meiotic Nuclei.

Three-color dSTORM Imaging and Analysis of Recombination Foci in Mouse Spread Meiotic Nuclei.

During the first meiotic prophase in mouse, repair of SPO11-induced DNA double-strand breaks (DSBs), facilitating homologous chromosome synapsis, is essential to successfully complete the first meiotic cell division. Recombinases RAD51 and DMC1 play an important role in homology search, but their mechanistic contribution to this process is not fully understood. Super-resolution, single-molecule imaging of RAD51 and DMC1 provides detailed information on recombinase accumulation on DSBs during meiotic prophase. Here, we present a detailed protocol of recombination foci analysis of three-color direct stochastic optical reconstruction microscopy (dSTORM) imaging of SYCP3, RAD51, and DMC1, fluorescently labeled by antibody staining in mouse spermatocytes. This protocol consists of sample preparation, data acquisition, pre-processing, and data analysis. The sample preparation procedure includes an updated version of the nuclear spreading of mouse testicular cells, followed by immunocytochemistry and the preparation steps for dSTORM imaging. Data acquisition consists of three-color dSTORM imaging, which is extensively described. The pre-processing that converts fluorescent signals to localization data also includes channel alignment and image reconstruction, after which regions of interest (ROIs) are identified based on RAD51 and/or DMC1 localization patterns. The data analysis steps then require processing of the fluorescent signal localization within these ROIs into discrete nanofoci, which can be further analyzed. This multistep approach enables the systematic investigation of spatial distributions of proteins associated with individual DSB sites and can be easily adapted for analyses of other foci-forming proteins. All computational scripts and software are freely accessible, making them available to a broad audience. Key features Preparation of spread nuclei, resulting in a flattened preparation with easy antibody-accessible chromatin-associated proteins on dSTORM-compatible coverslips. dSTORM analysis of immunofluorescent repair foci in meiotic prophase nuclei. Detailed descriptions of data acquisition, (pre-)processing, and nanofoci feature analysis applicable to all proteins that assemble in immunodetection as discrete foci. Graphical overview.

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