生物
表观基因组
表观遗传学
重编程
染色质
细胞生物学
造血
细胞分化
干细胞
效应器
细胞代谢
淋巴细胞生成
后生
免疫学
细胞
DNA甲基化
遗传学
基因表达
基因
DNA
作者
Beatrice Calciolari,Greta Scarpinello,Laura Quotti Tubi,Francesco Piazza,Alessandro Carrer
出处
期刊:Open Biology
[Royal Society]
日期:2022-05-01
卷期号:12 (5)
被引量:1
摘要
Both epigenetic and metabolic reprogramming guide lymphocyte differentiation and can be linked, in that metabolic inputs can be integrated into the epigenome to inform cell fate decisions. This framework has been thoroughly investigated in several pathophysiological contexts, including haematopoietic cell differentiation. In fact, metabolite availability dictates chromatin architecture and lymphocyte specification, a multi-step process where haematopoietic stem cells become terminally differentiated lymphocytes (effector or memory) to mount the adaptive immune response. B and T cell precursors reprogram their cellular metabolism across developmental stages, not only to meet ever-changing energetic demands but to impose chromatin accessibility and regulate the function of master transcription factors. Metabolic control of the epigenome has been extensively investigated in T lymphocytes, but how this impacts type-B life cycle remains poorly appreciated. This assay will review our current understanding of the connection between cell metabolism and epigenetics at crucial steps of B cell maturation and how its dysregulation contributes to malignant transformation.
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