Computational Biology Program, Fred Hutch Cancer Research Center, Seattle, United States.
Molecular and Cellular Biology Program, University of Washington, Seattle, United States.
Elife. 2022 Mar 22;11:e73475. doi: 10.7554/eLife.73475.
Every T cell receptor (TCR) repertoire is shaped by a complex probabilistic tangle of genetically determined biases and immune exposures. T cells combine a random V(D)J recombination process with a selection process to generate highly diverse and functional TCRs. The extent to which an individual's genetic background is associated with their resulting TCR repertoire diversity has yet to be fully explored. Using a previously published repertoire sequencing dataset paired with high-resolution genome-wide genotyping from a large human cohort, we infer specific genetic loci associated with V(D)J recombination probabilities using genome-wide association inference. We show that V(D)J gene usage profiles are associated with variation in the locus and, specifically for the functional TCR repertoire, variation in the major histocompatibility complex locus. Further, we identify specific variations in the genes encoding the Artemis protein and the TdT protein to be associated with biasing junctional nucleotide deletion and N-insertion, respectively. These results refine our understanding of genetically-determined TCR repertoire biases by confirming and extending previous studies on the genetic determinants of V(D)J gene usage and providing the first examples of genetic variants which are associated with modifying junctional diversity. Together, these insights lay the groundwork for further explorations into how immune responses vary between individuals.
每个 T 细胞受体 (TCR) 库都受到遗传决定的偏向和免疫暴露的复杂概率纠缠的影响。T 细胞通过随机 V(D)J 重组过程与选择过程相结合,产生高度多样化和功能的 TCR。个体的遗传背景与他们产生的 TCR 库多样性之间的关联程度尚未得到充分探索。我们使用先前发表的库测序数据集,并结合来自大型人类队列的高分辨率全基因组基因分型,使用全基因组关联推断来推断与 V(D)J 重组概率相关的特定遗传位点。我们表明,V(D)J 基因使用谱与 基因座的变异相关,并且对于功能性 TCR 库,与主要组织相容性复合体基因座的变异相关。此外,我们确定编码 Artemis 蛋白和 TdT 蛋白的基因中的特定变异与偏向连接核苷酸缺失和 N-插入分别相关。这些结果通过确认和扩展先前关于 V(D)J 基因使用的遗传决定因素的研究,以及提供与修饰连接多样性相关的 遗传变异的第一个例子,细化了我们对遗传决定的 TCR 库偏向的理解。这些见解为进一步探索个体之间的免疫反应如何变化奠定了基础。