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分化和 CXCR4 依赖性建立骨髓 B-1a 细胞池,从而调节与人类冠状动脉粥样硬化相关的保护性 IgM 产生。

Diversification and CXCR4-Dependent Establishment of the Bone Marrow B-1a Cell Pool Governs Atheroprotective IgM Production Linked to Human Coronary Atherosclerosis.

机构信息

From the Cardiovascular Research Center (A.U., P.S., H.M.P., A.N., C.M., M.A.M., J.C.G, A.M.T., C.A.M.), University of Virginia, Charlottesville.

Department of Microbiology, Immunology, Cancer Biology (A.U., T.P.B.), University of Virginia, Charlottesville.

出版信息

Circ Res. 2019 Oct 25;125(10):e55-e70. doi: 10.1161/CIRCRESAHA.119.315786. Epub 2019 Sep 24.

Abstract

RATIONALE

B-1 cell-derived natural IgM antibodies against oxidation-specific epitopes on low-density lipoprotein are anti-inflammatory and atheroprotective. Bone marrow (BM) B-1a cells contribute abundantly to IgM production, yet the unique repertoire of IgM antibodies generated by BM B-1a and the factors maintaining the BM B-1a population remain unexplored. CXCR4 (C-X-C motif chemokine receptor 4) has been implicated in human cardiovascular disease and B-cell homeostasis, yet the role of B-1 cell CXCR4 in regulating atheroprotective IgM levels and human cardiovascular disease is unknown.

OBJECTIVE

To characterize the BM B-1a IgM repertoire and to determine whether CXCR4 regulates B-1 production of atheroprotective IgM in mice and humans.

METHODS AND RESULTS

Single-cell sequencing demonstrated that BM B-1a cells from aged ApoE mice with established atherosclerosis express a unique repertoire of IgM antibodies containing increased nontemplate-encoded nucleotide additions and a greater frequency of unique heavy chain complementarity determining region 3 sequences compared with peritoneal cavity B-1a cells. Some complementarity determining region 3 sequences were common to both compartments suggesting B-1a migration between compartments. Indeed, mature peritoneal cavity B-1a cells migrated to BM in a CXCR4-dependent manner. Furthermore, BM IgM production and plasma IgM levels were reduced in ApoE mice with B-cell-specific knockout of CXCR4, and overexpression of CXCR4 on B-1a cells increased BM localization and plasma IgM against oxidation specific epitopes, including IgM specific for malondialdehyde-modified LDL (low-density lipoprotein). Finally, in a 50-subject human cohort, we find that CXCR4 expression on circulating human B-1 cells positively associates with plasma levels of IgM antibodies specific for malondialdehyde-modified LDL and inversely associates with human coronary artery plaque burden and necrosis.

CONCLUSIONS

These data provide the first report of a unique BM B-1a cell IgM repertoire and identifies CXCR4 expression as a critical factor selectively governing BM B-1a localization and production of IgM against oxidation specific epitopes. That CXCR4 expression on human B-1 cells was greater in humans with low coronary artery plaque burden suggests a potential targeted approach for immune modulation to limit atherosclerosis.

摘要

背景

B-1 细胞衍生的针对低密度脂蛋白氧化特异性表位的天然 IgM 抗体具有抗炎和抗动脉粥样硬化作用。骨髓 (BM) B-1a 细胞大量参与 IgM 产生,然而,BM B-1a 产生的独特 IgM 抗体库以及维持 BM B-1a 群体的因素仍未得到探索。CXCR4(C-X-C 基序趋化因子受体 4)已被牵连到人类心血管疾病和 B 细胞稳态中,但 B-1 细胞 CXCR4 在调节保护性 IgM 水平和人类心血管疾病中的作用尚不清楚。

目的

描述 BM B-1a IgM 库,并确定 CXCR4 是否调节小鼠和人类的 B-1 保护性 IgM 的产生。

方法和结果

单细胞测序表明,与腹腔腔 B-1a 细胞相比,患有动脉粥样硬化的老年 ApoE 小鼠的 BM B-1a 细胞表达独特的 IgM 抗体库,其中包含增加的非模板编码核苷酸添加和更高频率的独特重链互补决定区 3 序列。一些互补决定区 3 序列在两个隔室中都很常见,这表明 B-1a 细胞在隔室之间迁移。事实上,成熟的腹腔腔 B-1a 细胞以 CXCR4 依赖性方式迁移到 BM。此外,B 细胞特异性敲除 CXCR4 的 ApoE 小鼠的 BM IgM 产生和血浆 IgM 水平降低,而 B-1a 细胞上 CXCR4 的过表达增加了针对氧化特异性表位的 BM 定位和血浆 IgM,包括针对丙二醛修饰的 LDL(低密度脂蛋白)的 IgM。最后,在 50 名受试者的人类队列中,我们发现循环人类 B-1 细胞上的 CXCR4 表达与针对丙二醛修饰的 LDL 的特异性 IgM 抗体的血浆水平呈正相关,与人类冠状动脉斑块负担和坏死呈负相关。

结论

这些数据首次报道了独特的 BM B-1a 细胞 IgM 库,并确定了 CXCR4 表达作为选择性调节 BM B-1a 定位和针对氧化特异性表位产生 IgM 的关键因素。在冠状动脉斑块负担较低的人类中,CXCR4 在人类 B-1 细胞上的表达更高,这表明针对免疫调节的潜在靶向方法可限制动脉粥样硬化。

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