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表观遗传学:塑造先天和适应性免疫反应的机会。

Epigenetics: An opportunity to shape innate and adaptive immune responses.

机构信息

Institute of Experimental Endocrinology and Oncology (IEOS), National Research Council, Naples, Italy.

Department of Translational Medical Sciences, Center for Basic and Clinical Immunology Research (CISI) and World Allergy Organization (WAO) Center of Excellence, University of Naples "Federico II", Naples, Italy.

出版信息

Immunology. 2022 Dec;167(4):451-470. doi: 10.1111/imm.13571. Epub 2022 Sep 26.

Abstract

Epigenetics connects genetic and environmental factors: it includes DNA methylation, histone post-translational modifications and the regulation of chromatin accessibility by non-coding RNAs, all of which control constitutive or inducible gene transcription. This plays a key role in harnessing the transcriptional programs of both innate and adaptive immune cells due to its plasticity and environmental-driven nature, piloting myeloid and lymphoid cell fate decisions with no change in their genomic sequence. In particular, epigenetic marks at the site of lineage-specific transcription factors and maintenance of cell type-specific epigenetic modifications, referred to as 'epigenetic memory', dictate cell differentiation, cytokine production and functional capacity following repeated antigenic exposure in memory T cells. Moreover, metabolic and epigenetic reprogramming occurring during a primary innate immune response leads to enhanced responses to secondary challenges, a phenomenon known as 'trained immunity'. Here, we discuss how stable and dynamic epigenetic states control immune cell identity and plasticity in physiological and pathological conditions. Dissecting the regulatory circuits of cell fate determination and maintenance is of paramount importance for understanding the delicate balance between immune cell activation and tolerance, in healthy conditions and in autoimmune diseases.

摘要

表观遗传学将遗传和环境因素联系起来

它包括 DNA 甲基化、组蛋白翻译后修饰以及非编码 RNA 对染色质可及性的调控,所有这些都控制着组成型或诱导型基因转录。由于其可塑性和环境驱动的特性,它在利用先天和适应性免疫细胞的转录程序方面起着关键作用,无需改变其基因组序列即可引导髓系和淋巴系细胞命运的决定。特别是,在谱系特异性转录因子所在位置的表观遗传标记和维持细胞类型特异性表观遗传修饰(称为“表观遗传记忆”)决定了记忆 T 细胞在反复抗原暴露后的细胞分化、细胞因子产生和功能能力。此外,在原发性先天免疫反应过程中发生的代谢和表观遗传重编程导致对二次挑战的反应增强,这种现象称为“训练免疫”。在这里,我们讨论了稳定和动态的表观遗传状态如何控制生理和病理条件下免疫细胞的身份和可塑性。解析细胞命运决定和维持的调控回路对于理解免疫细胞激活和耐受之间的微妙平衡至关重要,无论是在健康条件下还是在自身免疫性疾病中。

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