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精细调节时空动力学和表面受体表达支持浆细胞内在的长寿。

Fine-tuning spatial-temporal dynamics and surface receptor expression support plasma cell-intrinsic longevity.

机构信息

Department of Pathology, Albert Einstein College of Medicine, Bronx, United States.

Department of Genetics, Albert Einstein College of Medicine, Bronx, United States.

出版信息

Elife. 2024 Jun 18;12:RP89712. doi: 10.7554/eLife.89712.

Abstract

Durable serological memory following vaccination is critically dependent on the production and survival of long-lived plasma cells (LLPCs). Yet, the factors that control LLPC specification and survival remain poorly resolved. Using intravital two-photon imaging, we find that in contrast to most plasma cells (PCs) in the bone marrow (BM), LLPCs are uniquely sessile and organized into clusters that are dependent on APRIL, an important survival factor. Using deep, bulk RNA sequencing, and surface protein flow-based phenotyping, we find that LLPCs express a unique transcriptome and phenotype compared to bulk PCs, fine-tuning expression of key cell surface molecules, CD93, CD81, CXCR4, CD326, CD44, and CD48, important for adhesion and homing. Conditional deletion of in PCs following immunization leads to rapid mobilization from the BM, reduced survival of antigen-specific PCs, and ultimately accelerated decay of antibody titer. In naïve mice, the endogenous LLPCs BCR repertoire exhibits reduced diversity, reduced somatic mutations, and increased public clones and IgM isotypes, particularly in young mice, suggesting LLPC specification is non-random. As mice age, the BM PC compartment becomes enriched in LLPCs, which may outcompete and limit entry of new PCs into the LLPC niche and pool.

摘要

接种疫苗后持久的血清记忆取决于长寿命浆细胞(LLPC)的产生和存活。然而,控制 LLPC 特异性和存活的因素仍未得到很好的解决。使用活体双光子成像,我们发现与骨髓(BM)中的大多数浆细胞(PC)相比,LLPC 独特地固定不动,并组织成依赖于 APRIL 的簇,APRIL 是一种重要的生存因子。通过深度、批量 RNA 测序和表面蛋白流式细胞表型分析,我们发现与批量 PCs 相比,LLPC 表达独特的转录组和表型,精细调节关键细胞表面分子的表达,如 CD93、CD81、CXCR4、CD326、CD44 和 CD48,这些分子对于黏附和归巢很重要。在免疫后 PC 中条件性缺失会导致其迅速从 BM 中动员,抗原特异性 PC 的存活减少,最终加速抗体滴度的衰减。在未成熟的小鼠中,内源性 LLPCs BCR 库表现出多样性降低、体细胞突变减少、公共克隆和 IgM 同种型增加,尤其是在年轻的小鼠中,这表明 LLPC 的特异性是非随机的。随着小鼠年龄的增长,BM PC 区室富含 LLPC,这可能会竞争并限制新的 PC 进入 LLPC 龛位和库。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca39/11186632/3174a20dfe27/elife-89712-fig1.jpg

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