Department of Immunology, State Key Laboratory of Reproductive Medicine, NHC Key Laboratory of Antibody Technique, Nanjing Medical University, Nanjing, Jiangsu, China.
Department of Immunology, State Key Laboratory of Reproductive Medicine, NHC Key Laboratory of Antibody Technique, Nanjing Medical University, Nanjing, Jiangsu, China.
Biochim Biophys Acta Gene Regul Mech. 2022 Aug;1865(6):194828. doi: 10.1016/j.bbagrm.2022.194828. Epub 2022 May 25.
In response to T-cell-dependent antigens, antigen-experienced B cells migrate to the center of the B-cell follicle to seed the germinal center (GC) response after cognate interactions with CD4 T cells. These GC B cells eventually mature into memory and long-lived antibody-secreting plasma cells, thus generating long-lived humoral immunity. Within GC, B cells undergo somatic hypermutation of their B cell receptors (BCR) and positive selection for the emergence of high-affinity antigen-specific B-cell clones. However, this process may be dangerous, as the accumulation of aberrant mutations could result in malignant transformation of GC B cells or give rise to autoreactive B cell clones that can cause autoimmunity. Because of this, better understanding of GC development provides diagnostic and therapeutic clues to the underlying pathologic process. A productive GC response is orchestrated by multiple mechanisms. An emerging important regulator of GC reaction is epigenetic modulation, which has key transcriptional regulatory properties. In this review, we summarize the current knowledge on the biology of epigenetic mechanisms in the regulation of GC reaction and outline its importance in identification of immunotherapy decision making.
针对 T 细胞依赖性抗原,抗原经验的 B 细胞在与 CD4 T 细胞发生同源相互作用后迁移到 B 细胞滤泡的中心,引发生发中心 (GC) 反应。这些 GC B 细胞最终成熟为记忆和长寿命的抗体分泌浆细胞,从而产生长寿命的体液免疫。在 GC 内,B 细胞经历其 B 细胞受体 (BCR) 的体细胞超突变和对高亲和力抗原特异性 B 细胞克隆出现的阳性选择。然而,这个过程可能是危险的,因为异常突变的积累可能导致 GC B 细胞的恶性转化,或产生自身反应性 B 细胞克隆,从而导致自身免疫。正因为如此,更好地了解 GC 的发展为潜在病理过程提供了诊断和治疗线索。一个有成效的 GC 反应是由多种机制协调的。GC 反应的一个新兴重要调节因子是表观遗传调节,它具有关键的转录调控特性。在这篇综述中,我们总结了目前关于 GC 反应中表观遗传机制生物学的知识,并概述了其在免疫治疗决策中的重要性。