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一种用于分析单细胞亚细胞基因表达的 SINC-Seq 方案。

A SINC-Seq Protocol for the Analysis of Subcellular Gene Expression in Single Cells.

机构信息

Cluster for Pioneering Research, RIKEN, Wako, Saitama, Japan.

Department of Mechanical Power Engineering, Faculty of Engineering, Assiut University, Assiut, Egypt.

出版信息

Methods Mol Biol. 2023;2689:179-189. doi: 10.1007/978-1-0716-3323-6_14.

Abstract

Microfluidic devices offer precise control of single cells and molecules by liquid flows, downsizing tools to allow us to perform single-cell assays at unprecedented resolutions and minimizing contamination. In this chapter, we introduce an approach, called single-cell integrated nuclear and cytoplasmic RNA-sequencing (SINC-seq), which enables precise fractionation of cytoplasmic and nuclear RNA of single cells. This approach uses electric field control in microfluidics to manipulate single cells and RNA sequencing to dissect gene expression and RNA localization in subcellular compartments. The microfluidic system for SINC-seq exploits a hydrodynamic trap (a constriction in a microchannel) to isolate a single cell, selectively lyses its plasma membrane via a focused electric field, and retains the nucleus at the hydrodynamic trap during the electrophoretic extraction of cytoplasmic RNA. Here, we provide a step-by-step protocol from microfluidic RNA fractionation to off-chip preparation of RNA-sequencing libraries for full-length cDNA sequencing using both a short-read sequencer (Illumina) and a long-read sequencer (Oxford Nanopore Technologies).

摘要

微流控装置通过液流精确控制单细胞和分子,使工具小型化,从而能够以前所未有的分辨率进行单细胞分析,并最大程度减少污染。在本章中,我们介绍了一种称为单细胞整合核和细胞质 RNA 测序(SINC-seq)的方法,该方法能够精确分离单细胞的细胞质和核 RNA。该方法使用微流控中的电场控制来操纵单细胞,并使用 RNA 测序来剖析亚细胞区室中的基因表达和 RNA 定位。用于 SINC-seq 的微流控系统利用流体动力阱(微通道中的收缩)来分离单个细胞,通过聚焦电场选择性地裂解其质膜,并在电泳提取细胞质 RNA 时将核保留在流体动力阱中。在这里,我们提供了一个从微流控 RNA 分馏到芯片外 RNA 测序文库制备的分步协议,用于使用短读测序仪(Illumina)和长读测序仪(Oxford Nanopore Technologies)进行全长 cDNA 测序。

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