Laboratory of Biochemistry, Department of Medicine, University of Udine, Udine, Italy.
Front Immunol. 2022 Jun 9;13:917998. doi: 10.3389/fimmu.2022.917998. eCollection 2022.
Bi-directional transcription of Human Endogenous Retroviruses (hERVs) is a common feature of autoimmunity, neurodegeneration and cancer. Higher rates of cancer incidence, neurodegeneration and autoimmunity but a lower prevalence of autoimmune diseases characterize elderly people. Although the re-expression of hERVs is commonly observed in different cellular models of senescence as a result of the loss of their epigenetic transcriptional silencing, the hERVs modulation during aging is more complex, with a peak of activation in the sixties and a decline in the nineties. What is clearly accepted, instead, is the impact of the re-activation of dormant hERV on the maintenance of stemness and tissue self-renewing properties. An innate cellular immunity system, based on the RLR-MAVS circuit, controls the degradation of dsRNAs arising from the transcription of hERV elements, similarly to what happens for the accumulation of cytoplasmic DNA leading to the activation of cGAS/STING pathway. While agonists and inhibitors of the cGAS-STING pathway are considered promising immunomodulatory molecules, the effect of the RLR-MAVS pathway on innate immunity is still largely based on correlations and not on causality. Here we review the most recent evidence regarding the activation of MDA5-RIG1-MAVS pathway as a result of hERV de-repression during aging, immunosenescence, cancer and autoimmunity. We will also deal with the epigenetic mechanisms controlling hERV repression and with the strategies that can be adopted to modulate hERV expression in a therapeutic perspective. Finally, we will discuss if the RLR-MAVS signalling pathway actively modulates physiological and pathological conditions or if it is passively activated by them.
人类内源性逆转录病毒 (HERVs) 的双向转录是自身免疫、神经退行性变和癌症的共同特征。老年人的癌症发病率、神经退行性变和自身免疫率较高,但自身免疫性疾病的患病率较低。尽管由于表观遗传转录沉默的丧失,HERVs 在不同的衰老细胞模型中通常会重新表达,但 HERVs 在衰老过程中的调节更为复杂,在六十多岁时达到激活高峰,在九十多岁时下降。相反,人们清楚地接受了休眠 HERV 的重新激活对维持干细胞特性和组织自我更新特性的影响。基于 RLR-MAVS 通路的先天细胞免疫系统控制着源自 HERV 元件转录的 dsRNA 的降解,类似于细胞质 DNA 积累导致 cGAS/STING 途径激活时所发生的情况。虽然 cGAS-STING 通路的激动剂和抑制剂被认为是有前途的免疫调节分子,但 RLR-MAVS 通路对先天免疫的影响仍然主要基于相关性,而不是因果关系。在这里,我们回顾了最近关于 MDA5-RIG1-MAVS 通路在衰老、免疫衰老、癌症和自身免疫过程中由于 HERV 去抑制而激活的证据。我们还将讨论控制 HERV 抑制的表观遗传机制以及可以采用哪些策略从治疗角度来调节 HERV 表达。最后,我们将讨论 RLR-MAVS 信号通路是主动调节生理和病理状况,还是被动地被它们激活。