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组织中线粒体DNA和RNA的空间检测。

Spatial detection of mitochondrial DNA and RNA in tissues.

作者信息

Giarmarco Michelle, Seto Jordan, Brock Daniel, Brockerhoff Susan

机构信息

Department of Ophthalmology, University of Washington, Seattle, WA, United States.

Department of Biochemistry, University of Washington, Seattle, WA, United States.

出版信息

Front Cell Dev Biol. 2024 May 14;12:1346778. doi: 10.3389/fcell.2024.1346778. eCollection 2024.

Abstract

BACKGROUND

Mitochondrial health has gained attention in a number of diseases, both as an indicator of disease state and as a potential therapeutic target. The quality and amount of mitochondrial DNA (mtDNA) and RNA (mtRNA) can be important indicators of mitochondrial and cell health, but are difficult to measure in complex tissues.

METHODS

mtDNA and mtRNA in zebrafish retina samples were fluorescently labeled using RNAscope™ hybridization, then mitochondria were stained using immunohistochemistry. Pretreatment with RNase was used for validation. Confocal images were collected and analyzed, and relative amounts of mtDNA and mtRNA were reported. Findings regarding mtDNA were confirmed using qPCR.

RESULTS

Signals from probes detecting mtDNA and mtRNA were localized to mitochondria, and were differentially sensitive to RNase. This labeling strategy allows for quantification of relative mtDNA and mtRNA levels in individual cells. As a demonstration of the method in a complex tissue, single photoreceptors in zebrafish retina were analyzed for mtDNA and mtRNA content. An increase in mtRNA but not mtDNA coincides with proliferation of mitochondria at night in cones. A similar trend was measured in rods.

DISCUSSION

Mitochondrial gene expression is an important component of cell adaptations to disease, stress, or aging. This method enables the study of mtDNA and mtRNA in single cells of an intact, complex tissue. The protocol presented here uses commercially-available tools, and is adaptable to a range of species and tissue types.

摘要

背景

线粒体健康在多种疾病中受到关注,既是疾病状态的指标,也是潜在的治疗靶点。线粒体DNA(mtDNA)和RNA(mtRNA)的质量和数量可能是线粒体及细胞健康的重要指标,但在复杂组织中难以测量。

方法

使用RNAscope™杂交对斑马鱼视网膜样本中的mtDNA和mtRNA进行荧光标记,然后用免疫组织化学对线粒体进行染色。用核糖核酸酶预处理进行验证。收集并分析共聚焦图像,报告mtDNA和mtRNA的相对含量。关于mtDNA的研究结果用定量聚合酶链反应进行确认。

结果

检测mtDNA和mtRNA的探针信号定位于线粒体,且对核糖核酸酶的敏感性不同。这种标记策略能够对单个细胞中的相对mtDNA和mtRNA水平进行定量。作为该方法在复杂组织中的一个示例,对斑马鱼视网膜中的单个光感受器进行了mtDNA和mtRNA含量分析。在视锥细胞中,mtRNA而非mtDNA的增加与夜间线粒体的增殖同时出现。在视杆细胞中也测量到了类似趋势。

讨论

线粒体基因表达是细胞对疾病、应激或衰老适应的重要组成部分。该方法能够在完整的复杂组织的单个细胞中研究mtDNA和mtRNA。本文介绍的方案使用了市售工具,适用于一系列物种和组织类型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f258/11130414/0bc9c41c16ec/fcell-12-1346778-g001.jpg

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