低生物素渗透性哺乳动物细胞系的APEX2 RNA邻近标记

IF 1 Q3 BIOLOGY
Adrian Beat Tschan, Arpan Kumar Rai, Lucas Pelkmans, Alexa B R McIntyre
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引用次数: 0

摘要

RNA的亚细胞定位在多种生物过程中起着关键作用,包括发育和应激反应。与以前依赖于亚细胞结构的生化分离的技术相比,邻近标记简化了局部转录本和蛋白质富集的检测。APEX2的快速反应和小标记半径使其成为其他接近标记方法(如BioID)的有吸引力的替代方法。然而,我们发现APEX接近标记的标准方案在人类诱导多能干细胞中失败。此外,标准方案在MCF10A乳腺上皮细胞的单个细胞中产生生物分子的异质标记。我们的研究结果表明,这些细胞系的生物素渗透性低是导致标记失败或低效的主要原因。该方案概述了生物素孵育期间通过将快速过氧化氢驱动的APEX2反应与添加温和洗涤剂相结合来改进标记。这种适应导致hiPSCs中有效的接近标记和MCF10As中单细胞间更均匀的生物素化。调整后的方案将APEX2接近标记的使用扩展到生物素渗透性差的细胞系。•建立在Ting实验室[1]和Ingolia实验室[2]开发的方法上,使用APEX2酶对转录本进行接近标记。•专注于低生物素渗透性的细胞系,如人类诱导多能干细胞,通过添加温和的洗涤剂来增加生物素的吸收。•包括控制非特异性分子定位和统计方法的处理结果测序数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
APEX2 RNA Proximity Labeling in Mammalian Cell Lines With Low Biotin Permeability.

The subcellular localization of RNA plays a critical role in various biological processes, including development and stress response. Proximity labeling eases the detection of localized transcripts and protein enrichment compared to previous techniques that rely on biochemical isolation of subcellular structures. The rapid reaction and small labeling radius of APEX2 make it an attractive alternative to other proximity labeling approaches, such as BioID. However, we found that standard protocols for APEX proximity labeling fail in human induced pluripotent stem cells. Moreover, standard protocols yield heterogeneous labeling of biomolecules across single cells in MCF10A breast epithelial cells. Our results indicate that low biotin permeability in these cell lines is the main cause for failed or inefficient labeling. This protocol outlines improved labeling by combining the rapid hydrogen peroxide-driven APEX2 reaction with the addition of a mild detergent during biotin incubation. This adaptation leads to efficient proximity labeling in hiPSCs and more homogeneous biotinylation across single cells in MCF10As. The adapted protocol extends the use of APEX2 proximity labeling to cell lines with poor biotin permeability. Key features • Builds on methods developed by the Ting Lab [1] and the Ingolia Lab [2] for proximity labeling of transcripts using the enzyme APEX2. • Focuses on cell lines with low biotin permeability, like human induced pluripotent stem cells, by including a mild detergent to increase biotin uptake. • Includes controls for nonspecific molecular localization and statistical methods for processing of resulting sequencing data.

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