Heterogeneous and novel transcript expression in single cells of patient-derived clear cell renal cell carcinoma organoids

IF 5.5 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Genome research Pub Date : 2025-03-19 DOI:10.1101/gr.279345.124
Tülay Karakulak, Natalia Zajac, Hella Anna Bolck, Anna Bratus-Neuenschwander, Qin Zhang, Weihong Qi, Debleena Basu, Tamara Carrasco Oltra, Hubert Rehrauer, Christian von Mering, Holger Moch, Abdullah Kahraman
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Abstract

Splicing is often dysregulated in cancer, leading to alterations in the expression of canonical and alternatively spliced isoforms. We used the multiplexed arrays sequencing (MAS-seq) protocol of PacBio to sequence full-length transcripts in patient-derived organoid (PDO) cells of clear cell renal cell carcinoma (ccRCC). The sequencing revealed a heterogeneous dysregulation of splicing across 2599 single ccRCC cells. The majority of novel transcripts could be removed with stringent filtering criteria. The remaining 31,531 transcripts (36.6% of the 86,182 detected transcripts on average) were previously uncharacterized. In contrast to known transcripts, many of the novel transcripts have cell-specific expression. Novel transcripts common to ccRCC cells belong to genes involved in ccRCC-related pathways, such as hypoxia and oxidative phosphorylation. A novel transcript of the ccRCC-related gene nicotinamide N-methyltransferase is validated using PCR. Moreover, >50% of novel transcripts possess a predicted complete protein-coding open reading frame. An analysis of the most dominant transcript-switching events between ccRCC and non-ccRCC cells shows many switching events that are cell- and sample-specific, underscoring the heterogeneity of alternative splicing events in ccRCC. Overall, our study elucidates the intricate transcriptomic architecture of ccRCC, underlying its aggressive phenotype and providing insights into its molecular complexity.
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患者来源的透明细胞肾细胞癌类器官单细胞中异质和新颖的转录物表达
剪接在癌症中经常失调,导致规范和可选剪接异构体表达的改变。我们使用PacBio的多路阵列测序(MAS-seq)协议对透明细胞肾细胞癌(ccRCC)患者源性类器官(PDO)细胞的全长转录本进行测序。测序结果显示,2599个ccRCC细胞剪接存在异质性失调。大多数新的转录本可以通过严格的过滤标准被删除。剩余的31,531个转录本(平均为86,182个检测到的转录本的36.6%)以前未被表征。与已知的转录本相反,许多新的转录本具有细胞特异性表达。ccRCC细胞共有的新转录本属于参与ccRCC相关途径的基因,如缺氧和氧化磷酸化。cccc相关基因烟酰胺n -甲基转移酶的一个新的转录物是用PCR验证。此外,50%的新转录本具有预测的完整的蛋白质编码开放阅读框。对ccRCC和非ccRCC细胞之间最主要的转录开关事件的分析显示,许多开关事件具有细胞特异性和样本特异性,强调了ccRCC中可选剪接事件的异质性。总的来说,我们的研究阐明了ccRCC复杂的转录组结构,揭示了其侵袭性表型,并提供了对其分子复杂性的见解。
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来源期刊
Genome research
Genome research 生物-生化与分子生物学
CiteScore
12.40
自引率
1.40%
发文量
140
审稿时长
6 months
期刊介绍: Launched in 1995, Genome Research is an international, continuously published, peer-reviewed journal that focuses on research that provides novel insights into the genome biology of all organisms, including advances in genomic medicine. Among the topics considered by the journal are genome structure and function, comparative genomics, molecular evolution, genome-scale quantitative and population genetics, proteomics, epigenomics, and systems biology. The journal also features exciting gene discoveries and reports of cutting-edge computational biology and high-throughput methodologies. New data in these areas are published as research papers, or methods and resource reports that provide novel information on technologies or tools that will be of interest to a broad readership. Complete data sets are presented electronically on the journal''s web site where appropriate. The journal also provides Reviews, Perspectives, and Insight/Outlook articles, which present commentary on the latest advances published both here and elsewhere, placing such progress in its broader biological context.
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