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Caspase-dependent cleavage of nucleic acids.

机译:半胱天冬酶依赖性的核酸切割。

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摘要

Autoimmune diseases are frequently characterized by the presence of autoantibodies directed against nucleic acid-protein complexes present in the nucleus of the cell. The mechanisms by which these autoantigenic molecules escape immunological tolerance are largely unknown, although a number of recent observations suggest that modified self-proteins generated during apoptosis may play an important role in the development of autoimmunity. It has been hypothesized that the recognition of these modified self-proteins by the immune system may promote autoantibody production. While apoptosis is specifically characterized by posttranslational modification of proteins, recent findings also show that nucleic acids are modified. This review summarizes the specific cleavages of some of these key nucleic acids, i.e. chromosomal DNA, ribosomal RNA and small structural RNAs (U1 snRNA, Y RNA), in apoptotic cells.
机译:自身免疫疾病的特征通常在于针对细胞核中存在的核酸-蛋白质复合物的自身抗体的存在。尽管许多最近的观察表明,凋亡过程中产生的修饰的自身蛋白可能在自身免疫的发展中起重要作用,但这些自身抗原分子逃避免疫耐受的机制尚不清楚。已经假设免疫系统对这些修饰的自身蛋白的识别可以促进自身抗体的产生。虽然凋亡的特征是蛋白质的翻译后修饰,但最近的发现也表明核酸已被修饰。这篇综述总结了凋亡细胞中某些关键核酸的特异性切割,即染色体DNA,核糖体RNA和小结构RNA(U1 snRNA,Y RNA)。

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