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核抗原的分子克隆、表达及表位作图

[Molecular cloning, expression and epitope mapping of nuclear antigen].

作者信息

Yamamoto K

机构信息

Institute of Medical Science, St. Marianna University School of Medicine, Kawasaki.

出版信息

Rinsho Byori. 1994 May;42(5):460-6.

PMID:7517463
Abstract

The antinuclear antibody is a major characteristic phenomenon in systemic type of autoimmune diseases. There is a good correlation between symptoms or diseases and the types of antinuclear antibodies in these patients. Therefore, the study of the mechanisms of antinuclear antibody production is thought to be important in the elucidation of the pathogenesis of such autoimmune diseases. The conventional methods to detect antinuclear antibodies have been useful to date in clinical studies. However, these methods are not sufficient for more precise investigations. Thus, we have applied the recently developed molecular biology to this field. cDNAs which encode nuclear antigens have been cloned and their protein products were expressed as recombinant fusion protein in E. coli. By this procedure, we could establish simple and reproducible method to detects antinuclear antibodies. Furthermore, epitope mapping of nuclear antigens could be performed using deletion mutants generated by enzymatic manipulations of the cDNAs. These epitope studies are facilitating a more precise understanding of the mechanisms of antinuclear antibody production.

摘要

抗核抗体是系统性自身免疫性疾病的一个主要特征性现象。在这些患者中,症状或疾病与抗核抗体的类型之间存在良好的相关性。因此,抗核抗体产生机制的研究被认为对于阐明此类自身免疫性疾病的发病机制很重要。传统的检测抗核抗体的方法在迄今为止的临床研究中一直很有用。然而,这些方法对于更精确的研究来说是不够的。因此,我们将最近发展起来的分子生物学应用于这个领域。编码核抗原的cDNA已被克隆,其蛋白质产物在大肠杆菌中作为重组融合蛋白表达。通过这个程序,我们可以建立简单且可重复的检测抗核抗体的方法。此外,利用通过对cDNA进行酶促操作产生的缺失突变体,可以对抗核抗原进行表位作图。这些表位研究有助于更精确地理解抗核抗体产生的机制。

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