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首页> 外文期刊>DNA repair >The conserved Cockayne syndrome B-piggyBac fusion protein (CSB-PGBD3) affects DNA repair and induces both interferon-like and innate antiviral responses in CSB-null cells
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The conserved Cockayne syndrome B-piggyBac fusion protein (CSB-PGBD3) affects DNA repair and induces both interferon-like and innate antiviral responses in CSB-null cells

机译:保守的Cockayne综合征B-piggyBac融合蛋白(CSB-PGBD3)影响DNA修复并在CSB无细胞中诱导干扰素样和先天抗病毒反应

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摘要

Cockayne syndrome is a segmental progeria most often caused by mutations in the CSB gene encoding a SWI/SNF-like ATPase required for transcription-coupled DNA repair (TCR). Over 43. Mya before marmosets diverged from humans, a piggyBac3 (PGBD3) transposable element integrated into intron 5 of the CSB gene. As a result, primate CSB genes now generate both CSB protein and a conserved CSB-PGBD3 fusion protein in which the first 5 exons of CSB are alternatively spliced to the PGBD3 transposase. Using a host cell reactivation assay, we show that the fusion protein inhibits TCR of oxidative damage but facilitates TCR of UV damage. We also show by microarray analysis that expression of the fusion protein alone in CSB-null UV-sensitive syndrome (UVSS) cells induces an interferon-like response that resembles both the innate antiviral response and the prolonged interferon response normally maintained by unphosphorylated STAT1 (U-STAT1); moreover, as might be expected based on conservation of the fusion protein, this potentially cytotoxic interferon-like response is largely reversed by coexpression of functional CSB protein. Interestingly, expression of CSB and the CSB-PGBD3 fusion protein together, but neither alone, upregulates the insulin growth factor binding protein IGFBP5 and downregulates IGFBP7, suggesting that the fusion protein may also confer a metabolic advantage, perhaps in the presence of DNA damage. Finally, we show that the fusion protein binds in vitro to members of a dispersed family of 900 internally deleted piggyBac elements known as MER85s, providing a potential mechanism by which the fusion protein could exert widespread effects on gene expression. Our data suggest that the CSB-PGBD3 fusion protein is important in both health and disease, and could play a role in Cockayne syndrome.
机译:Cockayne综合征是部分早衰症,通常是由CSB基因中的突变引起的,该基因编码转录偶联DNA修复(TCR)所需的SWI / SNF样ATPase。超过43. mar猴与人类分离之前的Mya,将piggyBac3(PGBD3)转座元件整合到CSB基因的内含子5中。结果,灵长类动物CSB基因现在既产生CSB蛋白又产生保守的CSB-PGBD3融合蛋白,其中CSB的前5个外显子被交替剪接到PGBD3转座酶上。使用宿主细胞活化测定法,我们表明融合蛋白抑制TCR的氧化损伤,但促进TCR的紫外线损伤。我们还通过微阵列分析表明,在CSB无效的UV敏感综合征(UVSS)细胞中单独表达融合蛋白会诱导类似先天性抗病毒反应和通常由未磷酸化STAT1(U维持的延长干扰素反应)的干扰素样反应。 -STAT1);此外,正如基于融合蛋白保守性所预期的那样,这种潜在的细胞毒性干扰素样反应在很大程度上被功能性CSB蛋白的共表达逆转。有趣的是,CSB和CSB-PGBD3融合蛋白一起表达但不单独表达,会上调胰岛素生长因子结合蛋白IGFBP5并下调IGFBP7,这表明融合蛋白还可能具有代谢优势,也许存在DNA损伤。最后,我们表明融合蛋白在体外与900个内部缺失的piggyBac元素(称为MER85s)的分散家族成员结合,从而提供了一种潜在的机制,使融合蛋白可以对基因表达产生广泛的影响。我们的数据表明CSB-PGBD3融合蛋白在健康和疾病中均很重要,并且可能在Cockayne综合征中起作用。

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