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The origin and properties of extracellular DNA: From PAMP to DAMP

机译:细胞外DNA的起源和性质:从PAMP潮湿

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摘要

DNA is a polymeric macromolecule whose biological activities depend on location as well as binding to associated molecules. Inside the cell, DNA is the source of genetic information and binds histones to form nucleosomes. DNA can exit the cell, however, to enter the extracellular space primarily during cell death, either apoptosis or necrosis, as well as NETosis. While bacterial DNA is a potent immune stimulant by virtue of its CpG motifs, mammalian DNA, which is ordinarily inactive, can acquire activity by associating with nuclear, cytoplasmic and serum proteins which promote its uptake into cells to stimulate internal DNA sensors, including Toll-like receptor 9. Among these proteins, anti-DNA autoantibodies can form immune complexes with DNA to stimulate plasmacytoid dendritic cells to produce type 1 interferon. Together, these findings suggest that the immune properties of DNA are mutable and diverse, reflecting its context and the array of attached molecules.
机译:DNA是一种聚合物大分子,其生物活性取决于位置以及与相关分子的结合。 在细胞内,DNA是遗传信息的来源,并结合组蛋白以形成核体。 然而,DNA可以退出细胞,然而,在细胞死亡期间进入细胞外空间,细胞凋亡或坏死,以及Netosis。 虽然细菌DNA是借助于其CPG基序的有效免疫兴奋剂,但通常无活性的哺乳动物DNA可以通过与核,细胞质和血清蛋白质促进其吸收到细胞的核,细胞质和血清蛋白来获得活性以刺激内部DNA传感器,包括收费 - 喜欢受体9.在这些蛋白质中,抗DNA自身抗体可以用DNA形成免疫复合物,刺激血浆骨质树突细胞以产生1型干扰素。 这些研究结果表明,DNA的免疫特性是可变的和多样化的,反映其背景和附着分子的阵列。

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