Kennedy Institute of Rheumatology, University of Oxford, Oxford, UK.
Medical Sciences Division, University of Oxford, Oxford, UK.
Nat Immunol. 2023 Jun;24(6):991-1006. doi: 10.1038/s41590-023-01484-3. Epub 2023 Apr 24.
Germinal center (GC) B cells undergo proliferation at very high rates in a hypoxic microenvironment but the cellular processes driving this are incompletely understood. Here we show that the mitochondria of GC B cells are highly dynamic, with significantly upregulated transcription and translation rates associated with the activity of transcription factor A, mitochondrial (TFAM). TFAM, while also necessary for normal B cell development, is required for entry of activated GC precursor B cells into the germinal center reaction; deletion of Tfam significantly impairs GC formation, function and output. Loss of TFAM in B cells compromises the actin cytoskeleton and impairs cellular motility of GC B cells in response to chemokine signaling, leading to their spatial disorganization. We show that B cell lymphoma substantially increases mitochondrial translation and that deletion of Tfam in B cells is protective against the development of lymphoma in a c-Myc transgenic mouse model. Finally, we show that pharmacological inhibition of mitochondrial transcription and translation inhibits growth of GC-derived human lymphoma cells and induces similar defects in the actin cytoskeleton.
生发中心(GC)B 细胞在低氧微环境中以非常高的速度增殖,但驱动这一过程的细胞过程尚不完全清楚。在这里,我们表明 GC B 细胞的线粒体具有高度的动态性,与转录因子 A、线粒体(TFAM)的活性相关的转录和翻译速率显著上调。TFAM 虽然对正常 B 细胞发育也是必需的,但对于激活的 GC 前体 B 细胞进入生发中心反应是必需的;TFAM 的缺失显著损害 GC 的形成、功能和输出。B 细胞中 TFAM 的缺失会损害肌动蛋白细胞骨架,并损害 GC B 细胞对趋化因子信号的细胞运动性,导致其空间组织紊乱。我们表明,B 细胞淋巴瘤显著增加了线粒体翻译,而 B 细胞中 TFAM 的缺失可防止 c-Myc 转基因小鼠模型中淋巴瘤的发展。最后,我们表明,线粒体转录和翻译的药理学抑制抑制了 GC 衍生的人类淋巴瘤细胞的生长,并在肌动蛋白细胞骨架中诱导了类似的缺陷。