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高通量全长单细胞 RNA-seq 自动化。

High-throughput full-length single-cell RNA-seq automation.

机构信息

Wellcome Sanger Institute, Cambridge, UK.

European Molecular Biology Laboratory, European Bioinformatics Institute (EMBL-EBI), Cambridge, UK.

出版信息

Nat Protoc. 2021 Jun;16(6):2886-2915. doi: 10.1038/s41596-021-00523-3. Epub 2021 May 14.

DOI:10.1038/s41596-021-00523-3
PMID:33990801
Abstract

Existing protocols for full-length single-cell RNA sequencing produce libraries of high complexity (thousands of distinct genes) with outstanding sensitivity and specificity of transcript quantification. These full-length libraries have the advantage of allowing probing of transcript isoforms, are informative regarding single-nucleotide polymorphisms and allow assembly of the VDJ region of the T- and B-cell-receptor sequences. Since full-length protocols are mostly plate-based at present, they are also suited to profiling cell types where cell numbers are limiting, such as rare cell types during development. A disadvantage of these methods has been the scalability and cost of the experiments, which has limited their popularity as compared with droplet-based and nanowell approaches. Here, we describe an automated protocol for full-length single-cell RNA sequencing, including both an in-house automated Smart-seq2 protocol and a commercial kit-based workflow. The protocols take 3-5 d to complete, depending on the number of plates processed in a batch. We discuss these two protocols in terms of ease of use, equipment requirements, running time, cost per sample and sequencing quality. By benchmarking the lysis buffers, reverse transcription enzymes and their combinations, we have optimized the in-house automated protocol to dramatically reduce its cost. An automated setup can be adopted easily by a competent researcher with basic laboratory skills and no prior automation experience. These pipelines have been employed successfully for several research projects allied with the Human Cell Atlas initiative ( www.humancellatlas.org ).

摘要

现有的全长单细胞 RNA 测序方案产生高复杂度(数千种不同的基因)的文库,具有出色的转录定量敏感性和特异性。这些全长文库具有允许探测转录本异构体的优势,关于单核苷酸多态性的信息丰富,并允许 T 和 B 细胞受体序列的 VDJ 区域的组装。由于全长方案目前主要基于板,因此它们也适合于细胞数量有限的细胞类型的分析,例如在发育过程中稀有细胞类型。这些方法的一个缺点是实验的可扩展性和成本,这限制了它们与基于液滴和纳米孔的方法相比的普及。在这里,我们描述了一种全长单细胞 RNA 测序的自动化方案,包括内部自动化 Smart-seq2 方案和基于商业试剂盒的工作流程。根据批量处理的板数,这些方案需要 3-5 天才能完成。我们根据使用的便利性、设备要求、运行时间、每个样本的成本和测序质量来讨论这两种方案。通过对裂解缓冲液、逆转录酶及其组合进行基准测试,我们已经优化了内部自动化方案,从而大大降低了成本。具有基本实验室技能且没有自动化经验的合格研究人员可以轻松采用自动化设置。这些方案已成功应用于与人类细胞图谱倡议(www.humancellatlas.org)相关的几个研究项目中。

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