DNA抗体。

B D Stollar
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引用次数: 123

摘要

识别DNA结构的特定构象变化的抗体为测试这种构象异质性在自然界中发生的程度提供了敏感试剂。最近一个最引人注目的例子是针对左旋Z-DNA的抗体的开发和应用。他们首次鉴定了固定细胞核和染色体中的Z-DNA,以及在超卷曲作用下形成Z-DNA的DNA序列。抗体也可以通过化学修饰的DNA和合成的与一般B-DNA结构不同的多脱氧核糖核苷酸来诱导。这些抗体只识别与天然DNA不同的特征。在大多数实验中,原生DNA本身不具有免疫原性。自身免疫性疾病患者的血清中存在与天然DNA发生反应的抗体,但即使是单克隆抗DNA自身抗体也通常与其他多核苷酸发生反应。抗dna抗体,特别是单克隆抗体,为蛋白质-核酸识别的研究提供了一个模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antibodies to DNA.

Antibodies that recognize specific conformational variations of DNA structure provide sensitive reagents for testing the extent to which such conformational heterogeneity occurs in nature. A most dramatic recent example has been the development and application of antibodies to left-handed Z-DNA. They provided the first identification of Z-DNA in fixed nuclei and chromosomes, and of DNA sequences that form Z-DNA under the influence of supercoiling. Antibodies have also been induced by chemically modified DNA and by synthetic polydeoxyribonucleotides that differ from the average B-DNA structure. These antibodies recognize only the features that differ from native DNA. In most experiments, native DNA itself is not immunogenic. Antibodies that do react with native DNA occur in sera of patients with autoimmune disease, but even monoclonal anti-DNA autoantibodies usually react with other polynucleotides as well. Anti-DNA antibodies, especially those of monoclonal origin, provide a model for the study of protein-nucleic acid recognition.

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