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Single-Cell Exome Sequencing and Monoclonal Evolution of a JAK2-Negative Myeloproliferative Neoplasm

  作者 Hou, Y; Song, LT; Zhu, P; Zhang, B; Tao, Y; Xu, X; Li, FQ; Wu, K; Liang, J; Shao, D; Wu, HJ; Ye, XF; Ye, C; Wu, RH; Jian, M; Chen, Y; Xie, W; Zhang, RR; Chen, L; Liu, X; Yao, XT; Zheng, HC; Yu, C; Li, QB; Gong, ZL; Mao, M; Yang, X; Yang, L; Li, JX; Wang, W; Lu, ZH; Gu, N; Laurie, G; Bolund, L; Kristiansen, K; Wang, J; Yang, HM; Li, YR; Zhang, XQ; Wang, J  
  选自 期刊  Cell;  卷期  2012年148-5;  页码  873-885  
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[摘要]Tumor heterogeneity presents a challenge for inferring clonal evolution and driver gene identification. Here, we describe a method for analyzing the cancer genome at a single-cell nucleotide level. To perform our analyses, we first devised and validated a high-throughput whole-genome single-cell sequencing method using two lymphoblastoid cell line single cells. We then carried out whole-exome single-cell sequencing of 90 cells from a JAK2-negative myeloproliferative neoplasm patient. The sequencing data from 58 cells passed our quality control criteria, and these data indicated that this neoplasm represented a monoclonal evolution. We further identified essential thrombocythemia (ET)-related candidate mutations such as SESN2 and NTRK1, which may be involved in neoplasm progression. This pilot study allowed the initial characterization of the disease-related genetic architecture at the single-cell nucleotide level. Further, we established a single-cell sequencing method that opens the way for detailed analyses of a variety of tumor types, including those with high genetic complex between patients.

 
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