...
首页> 外文期刊>BMC Bioinformatics >3D: diversity, dynamics, differential testing – a proposed pipeline for analysis of next-generation sequencing T cell repertoire data
【24h】

3D: diversity, dynamics, differential testing – a proposed pipeline for analysis of next-generation sequencing T cell repertoire data

机译:3D:多样性,动力学,差异测试–拟议的用于分析下一代测序T细胞库数据的管道

获取原文
           

摘要

Background Cancer immunotherapy has demonstrated significant clinical activity in different cancers. T cells represent a crucial component of the adaptive immune system and are thought to mediate anti-tumoral immunity. Antigen-specific recognition by T cells is via the T cell receptor (TCR) which is unique for each T cell. Next generation sequencing (NGS) of the TCRs can be used as a platform to profile the T cell repertoire. Though there are a number of software tools available for processing repertoire data by mapping antigen receptor segments to sequencing reads and assembling the clonotypes, most of them are not designed to track and examine the dynamic nature of the TCR repertoire across multiple time points or between different biologic compartments (e.g., blood and tissue samples) in a clinical context. Results We integrated different diversity measures to assess the T cell repertoire diversity and examined the robustness of the diversity indices. Among those tested, Clonality was identified for its robustness as a key metric for study design and the first choice to measure TCR repertoire diversity. To evaluate the dynamic nature of T cell clonotypes across time, we utilized several binary similarity measures (such as Baroni-Urbani and Buser overlap index), relative clonality and Morisita’s overlap index, as well as the intraclass correlation coefficient, and performed fold change analysis, which was further extended to investigate the transition of clonotypes among different biological compartments. Furthermore, the application of differential testing enabled the detection of clonotypes which were significantly changed across time. By applying the proposed “3D” analysis pipeline to the real example of prostate cancer subjects who received sipuleucel-T, an FDA-approved immunotherapy, we were able to detect changes in TCR sequence frequency and diversity thus demonstrating that sipuleucel-T treatment affected TCR repertoire in blood and in prostate tissue. We also found that the increase in common TCR sequences between tissue and blood after sipuleucel-T treatment supported the hypothesis that treatment-induced T cell migrated into the prostate tissue. In addition, a second example of prostate cancer subjects treated with Ipilimumab and granulocyte macrophage colony stimulating factor (GM-CSF) was presented in the supplementary documents to further illustrate assessing the treatment-associated change in a clinical context by the proposed workflow. Conclusions Our paper provides guidance to study the diversity and dynamics of NGS-based TCR repertoire profiling in a clinical context to ensure consistency and reproducibility of post-analysis. This analysis pipeline will provide an initial workflow for TCR sequencing data with serial time points and for comparing T cells in multiple compartments for a clinical study.
机译:背景技术癌症免疫疗法已显示出在不同癌症中的显着临床活性。 T细胞代表了适应性免疫系统的重要组成部分,被认为可以介导抗肿瘤免疫。 T细胞通过T细胞受体(TCR)对抗原进行特异性识别,这对于每个T细胞都是唯一的。 TCR的下一代测序(NGS)可用作分析T细胞库的平台。尽管有许多软件工具可用于通过将抗原受体片段映射到测序读段并组装克隆型来处理库数据,但大多数工具并非旨在跟踪和检查TCR库在多个时间点或不同时间点之间的动态性质。临床背景下的生物隔室(例如血液和组织样本)。结果我们整合了不同的多样性指标,以评估T细胞库的多样性,并检验了多样性指标的稳健性。在这些测试中,Clonality被认为是其鲁棒性,是研究设计的关键指标,并且是衡量TCR曲目库多样性的首选。为了评估T细胞克隆型随时间的动态性质,我们利用了几种二元相似性度量(例如Baroni-Urbani和Buser重叠指数),相对克隆性和Morisita重叠指数以及类内相关系数,并进行了倍数变化分析,进一步扩展以研究不同生物区室之间克隆型的转变。此外,差异测试的应用使得能够检测随时间变化显着的克隆型。通过将拟议的“ 3D”分析流程应用于接受sipuleucel-T(FDA批准的免疫疗法)的前列腺癌受试者的真实示例,我们能够检测到TCR序列频率和多样性的变化,从而证明sipuleucel-T治疗会影响TCR。血液和前列腺组织中的所有组成成分。我们还发现,sipuleucel-T治疗后组织和血液之间的常见TCR序列增加,支持了治疗诱导的T细胞迁移到前列腺组织中的假说。另外,在补充文件中提供了用伊利木单抗和粒细胞巨噬细胞集落刺激因子(GM-CSF)治疗的前列腺癌受试者的第二个例子,以进一步说明通过提出的工作流程在临床背景下评估与治疗相关的变化。结论我们的论文为在临床背景下研究基于NGS的TCR谱图谱的多样性和动力学提供了指导,以确保分析后的一致性和可重复性。该分析流程将为TCR测序数据的串行时间点提供初步的工作流程,并为临床研究比较多个隔室中的T细胞。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号