CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Targeting ZMYND8 unleashes IL-2 signalling to override T cell exhaustion.
Targeting ZMYND8 unleashes IL-2 signalling to override T cell exhaustion.
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CD8+ T细胞耗竭阻碍了对慢性病毒感染和癌症的控制。
CD8+ T 细胞耗竭会阻碍对慢性病毒感染和肿瘤的控制。这种功能低下状态的特征是高亲和力 IL-2 受体(IL-2R)和 STAT5 信号下调,并且从祖细胞耗竭型向终末耗竭型 T 细胞分化,而不是向细胞毒性效应样细胞分化1-3。介导 IL-2R-STAT5 信号减弱和效应样细胞分化丧失的表观遗传机制及调控网络仍不清楚。在这里,我们通过对表观遗传因子和 IL-2 信号调控因子进行体内单细胞 CRISPR 筛选,发现染色质阅读器 ZMYND8 拮抗 IL-2R-STAT5 信号,从而限制效应样状态并促进终末耗竭。ZMYND8 的表达受慢性抗原刺激上调,而在 CD8+ T 细胞中靶向 ZMYND8 可促进中间耗竭型 T 细胞和表达杀伤细胞凝集素样受体的耗竭型 T 细胞。
因此,ZMYND8 缺陷的 CD8+ T 细胞具有显著改善的抗病毒和抗肿瘤效果,尤其是在与 IL-2 治疗或免疫检查点阻断联合使用时。
机制上,ZMYND8 结合到 Il2ra 基因位点中由组蛋白乙酰转移酶 p300 共同占据的活跃增强子区域,并抑制 p300 活性。共缺失 p300 可逆转 ZMYND8 缺陷细胞中 IL-2R 表达增加和效应样细胞分化增强,提示 ZMYND8 通过抑制 p300 介导的转录激活来削弱 IL-2R-STAT5 信号。这些发现确立了一种表观遗传变阻器,其通过“信号1”(慢性抗原刺激)诱导对“信号3”(IL-2信号传导)的抑制,从而强制T细胞耗竭,而ZMYND8缺失则解除对效应样状态的抑制,使其超越终末耗竭状态,并增强免疫治疗疗效。
CD8 + T cell exhaustion impedes control of chronic viral infection and cancer. This hypofunctional state is characterized by downregulation of the high-affinity IL-2 receptor (IL-2R) and STAT5 signalling, and differentiation from progenitor exhausted to terminally exhausted T cells rather than cytotoxic effector-like cells 1-3 . The epigenetic mechanisms and regulatory networks that mediate IL-2R-STAT5 signal attenuation and loss of effector-like cell differentiation remain unknown.
Here, using in vivo single-cell CRISPR screens of epigenetic factors and IL-2 signalling regulators, we reveal that the chromatin reader ZMYND8 antagonizes IL-2R-STAT5 signals to restrain effector-like states while promoting terminal exhaustion.
ZMYND8 expression was upregulated by chronic antigen stimulation, and targeting ZMYND8 in CD8 + T cells promoted both intermediate exhausted T cells and killer cell lectin-like receptor-expressing exhausted T cells. Accordingly, ZMYND8-deficient CD8 + T cells had markedly improved antiviral and antitumour effects, especially in combination with IL-2 therapy or immune checkpoint blockade.
Mechanistically, ZMYND8 bound to the active enhancer regions of the Il2ra gene locus that were co-occupied by histone acetyltransferase p300 and suppressed p300 activity. Co-deletion of p300 reversed increased IL-2R expression and effector-like cell differentiation in ZMYND8-deficient cells, suggesting that ZMYND8 represses p300-mediated transcriptional activation to curtail IL-2R-STAT5 signalling.
These findings establish an epigenetic rheostat imposing 'signal 1' (chronic antigen stimulation)-induced suppression of 'signal 3' (IL-2 signalling) to enforce T cell exhaustion, with ZMYND8 deletion unleashing effector-like over terminally exhausted states and enhancing immunotherapeutic efficacy.
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