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单细胞基因组学确定了不同的B1细胞发育途径,并揭示了B细胞受体库中与衰老相关的变化。

Single-cell genomics identifies distinct B1 cell developmental pathways and reveals aging-related changes in the B-cell receptor repertoire.

作者信息

Luo Yao, Wang Jing, Li Kairui, Li Mingxia, Xu Shasha, Liu Xingjie, Zhang Zhiwei, Xu Xiang, Zhang Yu, Pan Jiawei, Liu Pengtao, Gao Shaorong, Miao Zhichao, Yu Yong

机构信息

Shanghai Key Laboratory of Maternal Fetal Medicine, Clinical and Translational Research Center of Shanghai First Maternity and Infant Hospital, Frontier Science Center for Stem Cell Research, School of Life Sciences and Technology, Tongji University, 1239 Siping Road, Shanghai, 200092, China.

Laboratory Animal Research Center, School of Medicine, Tongji University, Shanghai, 200092, China.

出版信息

Cell Biosci. 2022 May 7;12(1):57. doi: 10.1186/s13578-022-00795-6.

Abstract

BACKGROUND

B1 cells are self-renewing innate-like B lymphocytes that provide the first line of defense against pathogens. B1 cells primarily reside in the peritoneal cavity and are known to originate from various fetal tissues, yet their developmental pathways and the mechanisms underlying maintenance of B1 cells throughout adulthood remain unclear.

RESULTS

We performed high-throughput single-cell analysis of the transcriptomes and B-cell receptor repertoires of peritoneal B cells of neonates, young adults, and elderly mice. Gene expression analysis of 31,718 peritoneal B cells showed that the neonate peritoneal cavity contained many B1 progenitors, and neonate B cell specific clustering revealed two trajectories of peritoneal B1 cell development, including pre-BCR dependent and pre-BCR independent pathways. We also detected profound age-related changes in B1 cell transcriptomes: clear difference in senescence genetic program was evident in differentially aged B1 cells, and we found an example that a B1 subset only present in the oldest mice was marked by expression of the fatty-acid receptor CD36. We also performed antibody gene sequencing of 15,967 peritoneal B cells from the three age groups and discovered that B1 cell aging was associated with clonal expansion and two B1 cell clones expanded in the aged mice had the same CDR-H3 sequence (AGDYDGYWYFDV) as a pathogenically linked cell type from a recent study of an atherosclerosis mouse model.

CONCLUSIONS

Beyond offering an unprecedent data resource to explore the cell-to-cell variation in B cells, our study has revealed that B1 precursor subsets are present in the neonate peritoneal cavity and dissected the developmental pathway of the precursor cells. Besides, this study has found the expression of CD36 on the B1 cells in the aged mice. And the single-cell B-cell receptor sequencing reveals B1 cell aging is associated with clonal expansion.

摘要

背景

B1细胞是自我更新的固有样B淋巴细胞,为抵御病原体提供第一道防线。B1细胞主要存在于腹腔,已知起源于各种胎儿组织,但其发育途径以及成年期B1细胞维持的潜在机制仍不清楚。

结果

我们对新生小鼠、年轻成年小鼠和老年小鼠腹腔B细胞的转录组和B细胞受体库进行了高通量单细胞分析。对31718个腹腔B细胞的基因表达分析表明,新生小鼠腹腔含有许多B1祖细胞,新生B细胞特异性聚类揭示了腹腔B1细胞发育的两条轨迹,包括前B细胞受体依赖和前B细胞受体非依赖途径。我们还检测到B1细胞转录组中与年龄相关的深刻变化:在不同年龄的B1细胞中,衰老遗传程序存在明显差异,并且我们发现了一个例子,即仅在最老的小鼠中存在的一个B1亚群以脂肪酸受体CD36的表达为特征。我们还对三个年龄组的15967个腹腔B细胞进行了抗体基因测序,发现B1细胞衰老与克隆扩增有关,并且在老年小鼠中扩增的两个B1细胞克隆具有与最近一项动脉粥样硬化小鼠模型研究中与病原体相关的细胞类型相同的CDR-H3序列(AGDYDGYWYFDV)。

结论

除了提供前所未有的数据资源来探索B细胞间的细胞差异外,我们的研究还揭示了新生小鼠腹腔中存在B1前体亚群,并剖析了前体细胞的发育途径。此外,本研究发现了老年小鼠B1细胞上CD36的表达。单细胞B细胞受体测序揭示B1细胞衰老与克隆扩增有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ad7/9080186/540ed53fbb78/13578_2022_795_Fig1_HTML.jpg

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