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TREX1 DNA exonuclease deficiency, accumulation of single stranded DNA and complex human genetic disorders.

机译:TREX1 DNA核酸外切酶缺乏症,单链DNA积累和复杂的人类遗传疾病。

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摘要

Aicardi-Goutieres syndrome (AGS) is an unusual condition that clinically mimics a congenital viral infection. Several genes have recently been implicated in the aetiology of this disorder. One of these genes encodes the DNA exonuclease TREX1. Recent work from Yang, Lindahl and Barnes has provided insight into the cellular consequence of TREX1-deficiency. They found that TREX1-deficiency resulted in the intracellular accumulation of single stranded DNA resulting in chronic activation of the DNA damage response network, even in cells from Trex1-mutated AGS patients. Here, I summarise their findings and discuss them in context with the other AGS causative genes which encode subunits of the RNase H2 complex. I describe mechanisms by which the inappropriate intracellular accumulation of nucleic acid species might deleteriously impact upon normal cell cycle progression. Finally, using the example of Systemic Lupus Erythematosus (SLE), I also summarise the evidence suggesting that the failure to process intermediates of nucleic acid metabolism can result in the activation of uncontrolled autoimmunity.
机译:Aicardi-Goutieres综合征(AGS)是一种临床上模仿先天性病毒感染的异常状况。最近有几种基因与这种疾病的病因有关。这些基因之一编码DNA核酸外切酶TREX1。 Yang,Lindahl和Barnes的最新工作提供了对TREX1缺乏的细胞后果的见解。他们发现TREX1缺乏导致单链DNA的细胞内积累,甚至在Trex1突变的AGS患者的细胞中也导致DNA损伤反应网络的长期激活。在这里,我总结了他们的发现,并与其他编码RNase H2复合物亚基的AGS致病基因进行了讨论。我描述了不适当的核酸种类在细胞内积累可能对正常细胞周期进程造成有害影响的机制。最后,以系统性红斑狼疮(SLE)为例,我还总结了证据,表明处理核酸代谢中间体的失败会导致不受控制的自身免疫性激活。

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