Pan‐Cancer Single‐Nucleus Total RNA Sequencing Using snHH‐Seq

Haide Chen(BGI Group (China)), Xiunan Fang(Chinese University of Hong Kong), Jikai Shao(First Affiliated Hospital Zhejiang University), Qi Zhang(Hangzhou First People's Hospital), Liwei Xu(Chinese Academy of Sciences), Jiaye Chen(BGI Group (China)), Yuqing Mei(First Affiliated Hospital Zhejiang University), Mengmeng Jiang(Zhejiang University), Yuting Wang(First Affiliated Hospital Zhejiang University), Yuting Wang(Second Affiliated Hospital of Zhejiang University), Zhouyang Li(Second Affiliated Hospital of Zhejiang University), Zihang Chen(Zhejiang Chinese Medical University), Yang Chen(Zhejiang Chinese Medical University), Chengxuan Yu(Zhejiang Cancer Hospital), Lifeng Ma(First Affiliated Hospital Zhejiang University), Peijing Zhang(BGI Group (China)), Tianyu Zhang(BGI Group (China)), Yuan Liao(BGI Group (China)), Yuexiao Lv(ID Genomics (United States)), Xueyi Wang(First Affiliated Hospital Zhejiang University), Lei Yang(First Affiliated Hospital Zhejiang University), Yuting Fu(Chinese Academy of Sciences), Daobao Chen(Chinese Academy of Sciences), Liming Jiang(Zhejiang Cancer Hospital), Yan Feng(National Clinical Research Center for Digestive Diseases), Wei Lu(Zhejiang Cancer Hospital), Gao Chen(National Clinical Research Center for Digestive Diseases), Huahao Shen(State Key Laboratory of Respiratory Disease), Jingjing Wang(Chinese Academy of Sciences), Changchun Wang(Zhejiang Cancer Hospital), Tingbo Liang(Hangzhou First People's Hospital), Xiaoping Han(First Affiliated Hospital Zhejiang University), Yongcheng Wang(First Affiliated Hospital Zhejiang University), Yongcheng Wang(First Affiliated Hospital Zhejiang University), Guoji Guo(Institute for Stem Cell Biology and Regenerative Medicine)
Advanced Science
November 27, 2023
Cited by 17Open Access
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Abstract

Tumor heterogeneity and its drivers impair tumor progression and cancer therapy. Single-cell RNA sequencing is used to investigate the heterogeneity of tumor ecosystems. However, most methods of scRNA-seq amplify the termini of polyadenylated transcripts, making it challenging to perform total RNA analysis and somatic mutation analysis.Therefore, a high-throughput and high-sensitivity method called snHH-seq is developed, which combines random primers and a preindex strategy in the droplet microfluidic platform. This innovative method allows for the detection of total RNA in single nuclei from clinically frozen samples. A robust pipeline to facilitate the analysis of full-length RNA-seq data is also established. snHH-seq is applied to more than 730 000 single nuclei from 32 patients with various tumor types. The pan-cancer study enables it to comprehensively profile data on the tumor transcriptome, including expression levels, mutations, splicing patterns, clone dynamics, etc. New malignant cell subclusters and exploring their specific function across cancers are identified. Furthermore, the malignant status of epithelial cells is investigated among different cancer types with respect to mutation and splicing patterns. The ability to detect full-length RNA at the single-nucleus level provides a powerful tool for studying complex biological systems and has broad implications for understanding tumor pathology.


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