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Peptide mimicking antigenic and immunogenic epitope of double-stranded DNA in systemic lupus erythematosus.

机译:模拟系统性红斑狼疮中双链DNA抗原和免疫原性表位的肽。

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Autoantibodies to double-stranded (ds) DNA are an important diagnostic marker and pathogenic factor for systemic lupus erythematosus (SLE). Identifying dsDNA mimotopes is a way to discover diagnostic and therapeutic candidates for SLE. 'Mono-specific' SLE anti-dsDNA antibodies were obtained by affinity purification using dsDNA-coupled Sepharose column. Using the anti-dsDNA antibodies to screen a phage peptide library, we were able to identify a mimotope that has a motif peptide sequence of RLTSSLRYNP. This chemically synthesized peptide could be recognized by 88% (37 out of 42) of anti-dsDNA antibody-positive SLE sera with a cut-off point at mean + 3 SD of the negative control sera at OD(492). The reaction of the peptide with SLE sera in ELISA was highly correlated with that of dsDNA (r = 0.809, P < 0.0001). Of particular interest, not only dsDNA but also single-stranded (ss) DNA and native RNA could inhibit the binding of the peptide with SLE sera, suggesting that the mimotope is shared by ds and ssDNAs as well as native RNA, whereas denatured RNA was not observed to inhibit the binding. The peptide was also able to elicit an immune response in rabbits and the anti-peptide rabbit serum was observed to cross-react with the peptide, ss and dsDNAs, and ss and dsDNAs could inhibit the binding of the anti-peptide serum and the peptide. However, the inhibition was not obtained with RNA. Our findings demonstrate the potential of the peptide mimic in diagnostic tests of SLE, and in the investigation of anti-DNA antibody origin and of DNA-anti-DNA antibody interaction.
机译:双链(ds)DNA的自身抗体是系统性红斑狼疮(SLE)的重要诊断标志物和致病因素。鉴定dsDNA模拟表位是发现SLE诊断和治疗候选物的一种方法。通过使用dsDNA偶联的Sepharose柱的亲和纯化获得“单特异性” SLE抗dsDNA抗体。使用抗dsDNA抗体筛选噬菌体肽库,我们能够鉴定出具有RLTSSLRYNP的基序肽序列的模拟表位。这种化学合成的肽可以被88%(42种中的37种)抗dsDNA抗体阳性的SLE血清识别,其截止点为阴性对照血清的平均值+ 3 SD在OD处(492)。 ELISA中肽与SLE血清的反应与dsDNA高度相关(r = 0.809,P <0.0001)。特别令人感兴趣的是,不仅dsDNA而且单链(ss)DNA和天然RNA都可以抑制肽与SLE血清的结合,这表明ds和ssDNA以及天然RNA都具有拟表位,而变性RNA是没有观察到抑制结合。该肽还能够在兔中引发免疫反应,并且观察到抗肽兔血清与该肽,ss和dsDNA交叉反应,并且ss和dsDNAs可以抑制该抗肽血清和该肽的结合。然而,用RNA不能获得抑制作用。我们的发现证明了该肽模拟物在SLE的诊断测试中以及在抗DNA抗体起源和DNA与抗DNA抗体相互作用的研究中的潜力。

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