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首页> 外文期刊>Annals of the New York Academy of Sciences >Generation and Characterization of Three Monoclonal IgM Antiphospholipid Antibodies Recognizing Different Phospholipid Antigens
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Generation and Characterization of Three Monoclonal IgM Antiphospholipid Antibodies Recognizing Different Phospholipid Antigens

机译:三种识别不同磷脂抗原的单克隆IgM抗磷脂抗体的产生和表征

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摘要

Antiphospholipid antibodies (APLs) might be involved in the pathogenesis of the antiphospholipid syndrome (APS). This study analyzes the structural characteristics of monoclonal APLs derived from patients with this disease. Patient-derived B cells were immortalized using Epstein-Barr virus transformation and subsequent fusion to the myeloma cell line CB-F7. APL-producing hybridomas were cloned to obtain cell lines producing monoclonal APL. DNA encoding the variable region of heavy and light chains of the antibodies was sequenced and analyzed regarding their usage within the V-gene family and the existence of somatic hypermutation. Binding patterns of APL to various phospholipids and beta-2-glycoprotein-I (β2-GPI) were determined using ELISA, with special regard to β2-GPI dependency. As a result, three APL-producing hybridoma cell lines from patients with APS were established: JGG9, HVA2, and HLC9. APLs were of the IgM isotype and showed different binding patterns toward phospholipids and β2-GPI. One of them, JGG9, showed extensive somatic hypermutations in both the CDR3 region and a framework region of the heavy chain. JGG9 bound to cardiolipin in the presence of the protein cofactor β2-GPI. In contrast, the antibodies HVA2 and HLC9 (which also showed somatic hypermutations in the CDR3 region) presented polyreactivity to several phospholipids—cardiolipin, phosphatidyl-serine, -ethanolamine, -inositol, -choline, and sphingomyelin—but not to β2-GPI. In conclusion, JGG9 presents a high degree of mutation in the CDR3 and framework region resulting from the deletions of nucleotides, and affects amino acid composition. Polyreactivity and the absence of cofactor dependency present HLC9- and HVA2-like natural antibodies that have no contact with any antigen. Nonetheless, these natural antibodies show somatic hypermutation of the heavy chain, indicating antigen-driven maturation. Regarding the possible role of APL in infection, HVA2 in particular may represent a pathogen-maturated antibody showing cross-reactivity between phospholipids and infectious agents. Further experiments are needed to reveal the functional activity of these antibodies.
机译:抗磷脂抗体(APL)可能与抗磷脂综合征(APS)的发病机理有关。这项研究分析了得自该病患者的单克隆APL的结构特征。使用爱泼斯坦-巴尔病毒转化并随后与骨髓瘤细胞系CB-F7融合,使源自患者的B细胞永生。克隆产生APL的杂交瘤以获得产生单克隆APL的细胞系。对编码抗体重链和轻链可变区的DNA进行测序,并对其在V基因家族中的用途以及体细胞超突变的存在进行分析。使用ELISA确定APL与各种磷脂和β-2-糖蛋白I(β2-GPI)的结合模式,并特别考虑到β2-GPI的依赖性。结果,建立了来自APS患者的三种产生APL的杂交瘤细胞系:JGG9,HVA2和HLC9。 APL具有IgM同型,对磷脂和β2-GPI显示不同的结合模式。其中之一,JGG9,在重链的CDR3区和框架区均显示出广泛的体细胞超突变。在蛋白辅因子β2-GPI存在下,JGG9与心磷脂结合。相反,抗体HVA2和HLC9(在CDR3区也显示出体细胞超突变)对几种磷脂(心磷脂,磷脂酰丝氨酸,-乙醇胺,-肌醇,-胆碱和鞘磷脂)具有多反应性,但对β2-GPI没有多反应性。总之,JGG9在CDR3和框架区中由于核苷酸的缺失而导致高度的突变,并影响氨基酸的组成。多反应性和辅因子依赖性的缺乏提供了与任何抗原都没有接触的HLC9和HVA2样天然抗体。然而,这些天然抗体显示出重链的体细胞超突变,表明抗原驱动的成熟。关于APL在感染中的可能作用,尤其是HVA2可以代表病原体成熟的抗体,其显示出磷脂和感染因子之间的交叉反应性。需要进一步的实验来揭示这些抗体的功能活性。

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