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Accurate immune repertoire sequencing reveals malaria infection driven antibody lineage diversification in young children

机译:准确的免疫库测序揭示了由疟疾感染驱动的抗体谱系多样化

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Accurately measuring antibody repertoire sequence composition in a small amount of blood is challenging yet important for understanding repertoire responses to infection and vaccination. We develop molecular identifier clustering-based immune repertoire sequencing (MIDCIRS) and use it to study age-related antibody repertoire development and diversification before and during acute malaria in infants (?12 months old) and toddlers (12–47 months old) with 4?8?ml of blood. Here, we show this accurate and high-coverage repertoire-sequencing method can use as few as 1000 naive B cells. Unexpectedly, we discover high levels of somatic hypermutation in infants as young as 3 months old. Antibody clonal lineage analysis reveals that somatic hypermutation levels are increased in both infants and toddlers upon infection, and memory B cells isolated from individuals who previously experienced malaria continue to induce somatic hypermutations upon malaria rechallenge. These results highlight the potential of antibody repertoire diversification in infants and toddlers.
机译:在少量血液中准确测量抗体库序列组成具有挑战性,但对于理解对感染和疫苗接种的库反应很重要。我们开发基于分子标识符聚类的免疫谱库测序(MIDCIRS),并使用它来研究与年龄相关的婴儿(<?12个月)和幼儿(12-47个月)在急性疟疾发生之前和期间与年龄相关的抗体库的发展和多样化。 4-8毫升的血液。在这里,我们展示了这种准确而高覆盖率的库测序方法可以使用少至1000个原始B细胞。出乎意料的是,我们发现3个月大的婴儿体内存在高水平的体细胞超突变。抗体克隆谱系分析表明,感染后婴儿和幼儿的体细胞高突变水平均升高,并且从先前经历过疟疾的个体中分离出来的记忆B细胞在疟疾再激发后仍继续诱导体细胞高突变。这些结果突出了婴儿和学步者抗体库多样化的潜力。

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