CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Fine-tuning BACH2 dosage balances stemness and effector function to enhance antitumor T cell therapy.
Fine-tuning BACH2 dosage balances stemness and effector function to enhance antitumor T cell therapy.
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过继性T细胞疗法受限于转移细胞的持久性差。增强持久性的尝试主要集中在通过基因诱导组成性过度激活但可能具有致癌性的T细胞状态。生理性T细胞反应由依赖转录因子BACH2的静息干细胞样/记忆细胞维持。在此,我们表明BACH2剂量的定量控制可调节沿干细胞和效应CD8⁺ T细胞状态连续体的分化,从而能够工程化构建具有持久抗肿瘤活性的合成状态。虽然常规高水平过表达BACH2会强制静息并阻碍肿瘤控制,但低剂量BACH2表达可在不损害效应功能的情况下促进持久性,增强抗癌疗效。在机制上,低剂量BACH2部分减弱Jun在高度依赖AP-1的基因上的占据,抑制终末分化同时保留效应程序。同样,剂量优化使得静息因子FOXO1能够有效部署。因此,基因有效载荷的定量控制对结果产生定性影响,对细胞治疗中静息因子的部署具有重要意义。
Adoptive T cell therapies are limited by poor persistence of transferred cells. Attempts to enhance persistence have focused on genetic induction of constitutively hyperactivated but potentially oncogenic T cell states. Physiological T cell responses are maintained by quiescent stem-like/memory cells dependent upon the transcription factor BACH2.
Here we show that quantitative control of BACH2 dosage regulates differentiation along the continuum of stem and effector CD8⁺ T cell states, enabling engineering of synthetic states with persistent antitumor activity. While conventional high-level overexpression of BACH2 enforces quiescence and hinders tumor control, low-dose BACH2 expression promotes persistence without compromising effector function, enhancing anticancer efficacy.
Mechanistically, low-dose BACH2 partially attenuates Jun occupancy at highly AP-1-dependent genes, restraining terminal differentiation while preserving effector programs. Similarly, dose optimization enables effective deployment of quiescence factor FOXO1.
Thus, quantitative control of gene payloads yields qualitative effects on outcome with implications for quiescence factor deployment in cell therapy.
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