免疫检查点阻断通过扩增效应 CD8⁺ T 细胞克隆增强淋巴细胞清除性化疗诱导的抗肿瘤免疫
Immune Checkpoint Blockade Augments Lymphodepleting Chemotherapy-Induced Antitumor Immunity by Expanding Effector CD8+ T-cell Clones.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Lactate Uptake by MCT4 Facilitates Stability and Suppressive Function of Tumor-Infiltrating Regulatory T Cells by Promoting Foxp3 Lactylation.
Lactate Uptake by MCT4 Facilitates Stability and Suppressive Function of Tumor-Infiltrating Regulatory T Cells by Promoting Foxp3 Lactylation.
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高乳酸浓度是肿瘤微环境(TME)的标志性特征。调节性 T 细胞(Tregs)对这种富含乳酸的环境表现出独特的代谢适应性,但其潜在机制仍未完全阐明。
在此,我们证明单羧酸转运蛋白 MCT4 在肿瘤浸润 Tregs 中上调,并介导直接的乳酸摄取。利用 Treg 特异性条件性敲除(cKO)小鼠,我们发现 MCT4 缺失不影响基础 Treg 发育,但消除了乳酸诱导的 Foxp3 稳定化并损害了 Treg 的抑制功能。在机制上,MCT4 介导的乳酸摄取促进 Foxp3 在赖氨酸 277(K277)位点的乳酰化,该修饰竞争性抑制其泛素化,从而增强 Foxp3 蛋白稳定性和核定位。核内 Foxp3 随后与 IRF3 相互作用,促进 IL-10 的转录和分泌。在 B16 黑色素瘤模型中,MCT4 缺陷的 Tregs 表现出稳定性受损和肿瘤浸润减少,导致 CD8 + T 细胞效应功能增强和肿瘤生长减弱。
总之,我们的发现揭示了 MCT4 介导的乳酸摄取通过 Foxp3 乳酰化维持 Treg 稳定性和功能,确定 MCT4 是调节癌症中 Treg 活性的潜在治疗靶点。
High lactate concentration is a hallmark of the tumor microenvironment (TME). Regulatory T cells (Tregs) exhibit unique metabolic adaptability to this lactate-rich environment, yet the underlying mechanisms remain incompletely understood.
Here, we demonstrate that the monocarboxylate transporter MCT4 is upregulated in tumor-infiltrating Tregs and mediates direct lactate uptake. Using Treg-specific conditional knockout (cKO) mice, we show that MCT4 deficiency does not affect basal Treg development but abrogates lactate-induced Foxp3 stabilization and impairs Treg suppressive function.
Mechanistically, MCT4-mediated lactate uptake promotes the lactylation of Foxp3 at lysine 277 (K277), which competitively inhibits its ubiquitination, thereby enhancing Foxp3 protein stability and nuclear localization. Nuclear Foxp3 subsequently interacts with IRF3 to promote IL-10 transcription and secretion.
In the B16 melanoma model, MCT4-deficient Tregs display compromised stability and reduced tumor infiltration, leading to enhanced CD8 + T cell effector function and attenuated tumor growth. Collectively, our findings reveal that MCT4-mediated lactate uptake sustains Treg stability and function through Foxp3 lactylation, identifying MCT4 as a potential therapeutic target for modulating Treg activity in cancer.
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