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An Innovative Method to Identify Autoantigens Expressed on the Endothelial Cell Surface: Serological Identification System for Autoantigens Using a Retroviral Vector and Flow Cytometry (SARF)

机译:一种鉴定在内皮细胞表面表达的自身抗原的创新方法:使用逆转录病毒载体和流式细胞术(SARF)的自身抗原血清学鉴定系统

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摘要

Autoantibodies against integral membrane proteins are usually pathogenic. Although anti-endothelial cell antibodies (AECAs) are considered to be critical, especially for vascular lesions in collagen diseases, most molecules identified as autoantigens for AECAs are localized within the cell and not expressed on the cell surface. For identification of autoantigens, proteomics and expression library analyses have been performed for many years with some success. To specifically target cell-surface molecules in identification of autoantigens, we constructed a serological identification system for autoantigens using a retroviral vector and flow cytometry (SARF). Here, we present an overview of recent research in AECAs and their target molecules and discuss the principle and the application of SARF. Using SARF, we successfully identified three different membrane proteins: fibronectin leucine-rich transmembrane protein 2 (FLRT2) from patients with systemic lupus erythematosus (SLE), intercellular adhesion molecule 1 (ICAM-1) from a patient with rheumatoid arthritis, and Pk (Gb3/CD77) from an SLE patient with hemolytic anemia, as targets for AECAs. SARF is useful for specific identification of autoantigens expressed on the cell surface, and identification of such interactions of the cell-surface autoantigens and pathogenic autoantibodies may enable the development of more specific intervention strategies in autoimmune diseases.
机译:针对整合膜蛋白的自身抗体通常是致病的。尽管抗内皮细胞抗体(AECA)被认为是至关重要的,尤其是对于胶原蛋白疾病中的血管病变,但大多数被鉴定为AECA自身抗原的分子都位于细胞内而不在细胞表面表达。为了鉴定自身抗原,蛋白质组学和表达文库分析已经进行了多年,并取得了一些成功。为了在靶向自身抗原的鉴定中特异性靶向细胞表面分子,我们使用逆转录病毒载体和流式细胞仪(SARF)构建了针对自身抗原的血清学鉴定系统。在这里,我们概述了对AECA及其靶分子的最新研究,并讨论了SARF的原理和应用。我们使用SARF成功地鉴定了三种不同的膜蛋白:系统性红斑狼疮(SLE)患者的纤连蛋白亮氨酸跨膜蛋白2(FLRT2),类风湿关节炎患者的细胞间粘附分子1(ICAM-1)和Pk(来自溶血性贫血的SLE患者的Gb3 / CD77)作为AECA的靶标。 SARF可用于特异性鉴定在细胞表面表达的自身抗原,并且鉴定细胞表面自身抗原与致病性自身抗体的这种相互作用可以使针对自身免疫性疾病的更具体的干预策略得以发展。

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