体细胞突变
系统发育树
断点群集区域
生物
进化生物学
计算生物学
克莱德
克隆(Java方法)
深度测序
系统发育学
树(集合论)
最大似然
遗传学
B细胞
基因
组合数学
统计
抗体
基因组
数学
作者
Cole G. Jensen,Jacob Sumner,Steven H. Kleinstein,Kenneth B. Hoehn
出处
期刊:Journal of Immunology
[American Association of Immunologists]
日期:2024-04-01
卷期号:212 (10): 1579-1588
被引量:11
标识
DOI:10.4049/jimmunol.2300851
摘要
Abstract Abs are vital to human immune responses and are composed of genetically variable H and L chains. These structures are initially expressed as BCRs. BCR diversity is shaped through somatic hypermutation and selection during immune responses. This evolutionary process produces B cell clones, cells that descend from a common ancestor but differ by mutations. Phylogenetic trees inferred from BCR sequences can reconstruct the history of mutations within a clone. Until recently, BCR sequencing technologies separated H and L chains, but advancements in single-cell sequencing now pair H and L chains from individual cells. However, it is unclear how these separate genes should be combined to infer B cell phylogenies. In this study, we investigated strategies for using paired H and L chain sequences to build phylogenetic trees. We found that incorporating L chains significantly improved tree accuracy and reproducibility across all methods tested. This improvement was greater than the difference between tree-building methods and persisted even when mixing bulk and single-cell sequencing data. However, we also found that many phylogenetic methods estimated significantly biased branch lengths when some L chains were missing, such as when mixing single-cell and bulk BCR data. This bias was eliminated using maximum likelihood methods with separate branch lengths for H and L chain gene partitions. Thus, we recommend using maximum likelihood methods with separate H and L chain partitions, especially when mixing data types. We implemented these methods in the R package Dowser: https://dowser.readthedocs.io.
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