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Sequence-specific activation of the DNA sensor cGAS by Y-form DNA structures as found in primary HIV-1 cDNA

机译:通过在主要HIV-1 cDNA中发现的Y型DNA结构对DNA传感器cGAS进行序列特异性激活

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摘要

Cytosolic DNA that emerges during infection with a retrovirus or DNA virus triggers antiviral type I interferon responses. So far, only double-stranded DNA (dsDNA) over 40 base pairs (bp) in length has been considered immunostimulatory. Here we found that unpaired DNA nucleotides flanking short base-paired DNA stretches, as in stem-loop structures of single-stranded DNA (ssDNA) derived from human immunodeficiency virus type 1 (HIV-1), activated the type I interferon–inducing DNA sensor cGAS in a sequence-dependent manner. DNA structures containing unpaired guanosines flanking short (12- to 20-bp) dsDNA (Y-form DNA) were highly stimulatory and specifically enhanced the enzymatic activity of cGAS. Furthermore, we found that primary HIV-1 reverse transcripts represented the predominant viral cytosolic DNA species during early infection of macrophages and that these ssDNAs were highly immunostimulatory. Collectively, our study identifies unpaired guanosines in Y-form DNA as a highly active, minimal cGAS recognition motif that enables detection of HIV-1 ssDNA.
机译:在逆转录病毒或DNA病毒感染期间出现的胞质DNA会触发抗病毒I型干扰素反应。迄今为止,仅长度超过40个碱基对(bp)的双链DNA(dsDNA)被认为具有免疫刺激性。在这里,我们发现未配对的DNA核苷酸位于短碱基配对的DNA延伸序列的两侧,就像源自人类免疫缺陷病毒1型(HIV-1)的单链DNA(ssDNA)的茎环结构一样,激活了诱导I型干扰素的DNA。传感器cGAS的序列依赖性。含有短配对(12至20 bp)dsDNA(Y型DNA)侧翼的未配对鸟苷的DNA结构具有高度的刺激性,并特别增强了cGAS的酶促活性。此外,我们发现在早期感染巨噬细胞期间,主要的HIV-1逆转录物代表了主要的病毒胞质DNA种类,并且这些ssDNA具有高度的免疫刺激性。总的来说,我们的研究将Y型DNA中未配对的鸟苷识别为高度活跃的最小cGAS识别基序,可以检测HIV-1 ssDNA。

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