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自身细胞质DNA上调诱变酶载脂蛋白B mRNA编辑酶催化多肽样3A(APOBEC3A),导致染色体DNA损伤。

Self-cytoplasmic DNA upregulates the mutator enzyme APOBEC3A leading to chromosomal DNA damage.

作者信息

Suspène Rodolphe, Mussil Bianka, Laude Hélène, Caval Vincent, Berry Noémie, Bouzidi Mohamed S, Thiers Valérie, Wain-Hobson Simon, Vartanian Jean-Pierre

机构信息

Molecular Retrovirology Unit, Institut Pasteur, 28 rue du Dr. Roux, 75724 Paris cedex 15, France.

Unit of Infection Models, German Primate Centre, Kellnerweg 4, 37077 Goettingen, Germany.

出版信息

Nucleic Acids Res. 2017 Apr 7;45(6):3231-3241. doi: 10.1093/nar/gkx001.

Abstract

Foreign and self-cytoplasmic DNA are recognized by numerous DNA sensor molecules leading to the production of type I interferons. Such DNA agonists should be degraded otherwise cells would be chronically stressed. Most human APOBEC3 cytidine deaminases can initiate catabolism of cytoplasmic mitochondrial DNA. Using the human myeloid cell line THP-1 with an interferon inducible APOBEC3A gene, we show that cytoplasmic DNA triggers interferon α and β production through the RNA polymerase III transcription/RIG-I pathway leading to massive upregulation of APOBEC3A. By catalyzing C→U editing in single stranded DNA fragments, the enzyme prevents them from re-annealing so attenuating the danger signal. The price to pay is chromosomal DNA damage in the form of CG→TA mutations and double stranded DNA breaks which, in the context of chronic inflammation, could drive cells down the path toward cancer.

摘要

外源和自身细胞质DNA被众多DNA传感分子识别,从而导致I型干扰素的产生。此类DNA激动剂应被降解,否则细胞会长期处于应激状态。大多数人类载脂蛋白B mRNA编辑酶催化多肽3(APOBEC3)胞苷脱氨酶可启动细胞质线粒体DNA的分解代谢。利用具有干扰素诱导型APOBEC3A基因的人类髓系细胞系THP-1,我们发现细胞质DNA通过RNA聚合酶III转录/RIG-I途径触发干扰素α和β的产生,导致APOBEC3A大量上调。通过催化单链DNA片段中的C→U编辑,该酶可防止它们重新退火,从而减弱危险信号。付出的代价是以CG→TA突变和双链DNA断裂形式出现的染色体DNA损伤,在慢性炎症的情况下,这可能会使细胞走上癌变之路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd3a/5389686/81db24df3557/gkx001fig1.jpg

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