PO.IM02.04 · 免疫学
Sirt2通过对LCK构象状态的翻译后调控决定TCR激活阈值
Sirt2 dictates TCR activation thresholds through post-translational control of LCK conformational state
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摘要 Abstract
中文摘要
背景:肿瘤特异性T细胞常常因中枢和外周耐受通路限制其反应性而表现出TCR信号减弱的特征。这些信号进一步因共刺激不足和活跃的共抑制通路而被削弱,共同确立了较高的激活阈值。抗原识别与共刺激及抑制信号的整合最终决定T细胞是被激活还是保持耐受。因此,早期TCR信号必须受到精确调控,以在支持保护性免疫的同时防止自身反应性。尽管磷酸化和泛素化是近端TCR信号的公认调控因子,但其他翻译后机制仍不甚明确。SIRT2是一种胞质NAD⁺依赖性去乙酰化酶,在免疫调节中具有新兴作用,但尚未在TCR信号背景下得到研究。
方法:我们采用流式细胞术、免疫印迹、钙流实验和RNA测序,评估野生型和SIRT2缺陷型T细胞中的近端TCR信号事件。通过质谱和免疫沉淀绘制其相互作用组和乙酰化底物,界定SIRT2相关通路。我们通过质谱筛选LCK的翻译后修饰,并使用基于HPLC的去乙酰化酶实验评估SIRT2酶活性。使用荧光偏振结合实验和AlphaFold结构建模检测LCK修饰的构象效应。通过CRISPR/Cas9在人类肿瘤浸润淋巴细胞(TIL)中敲除SIRT2,并在以自体TIL重建的肺癌患者来源异种移植模型中检测SIRT2靶向的影响。
结果:SIRT2缺陷放大了近端TCR信号,导致初始和无能T细胞中早期信号介质的磷酸化升高和钙流增加。SIRT2缺失还改变了胸腺选择动态并扩大了TCR库多样性。机制上,SIRT2与LCK(近端TCR信号的起始激酶)相互作用并使其去乙酰化。质谱鉴定出LCK接头区的赖氨酸K228是一个SIRT2调控的去乙酰化位点,它调控LCK的构象和激酶活性。功能上,在耗竭的小鼠和人类TIL中抑制SIRT2可恢复TCR信号能力并改善抗肿瘤应答。
结论:在此,我们确定SIRT2调控的LCK去乙酰化是一种此前未被认识的机制,它设定了近端TCR信号的强度和阈值。据此,SIRT2靶向可逆转肿瘤反应性T细胞的耗竭表型。
查看英文原文 English abstract
BACKGROUND: Tumor-specific T cells are often characterized by reduced TCR signaling due to central and peripheral tolerance pathways that limit their responsiveness. These signals are further weakened by insufficient co-stimulation and active co-inhibitory pathways, collectively establishing a high threshold for activation. The integration of antigen recognition with co-stimulatory and inhibitory cues ultimately determines whether a T cell becomes activated or remains tolerant. Early TCR signaling must therefore be precisely regulated to prevent autoreactivity while still supporting protective immunity. Although phosphorylation and ubiquitination are well-established regulators of proximal TCR signaling, additional post-translational mechanisms remain less defined. SIRT2, a cytosolic NAD⁺-dependent deacetylase with emerging roles in immune regulation, has not been examined in the context of TCR signaling.
METHODS: We evaluated proximal TCR signaling events in wild-type and SIRT2-deficient T cells using flow cytometry, immunoblotting, calcium flux assays, and RNA-sequencing. SIRT2-associated pathways were defined by mapping its interactome and acetylated substrates through mass spectrometry and immunoprecipitation. We screened LCK post-translational modifications by mass spectrometry and assessed SIRT2 enzymatic activity using an HPLC-based deacetylase assay. Conformational effects of LCK modification were examined using fluorescence-polarization binding assays and AlphaFold structural modeling. SIRT2 was deleted in human tumor infiltrating lymphocytes (TILs) via CRISPR/Cas9, and the impact of SIRT2 targeting was tested in lung cancer patient-derived xenograft models reconstituted with autologous TILs.
RESULTS: SIRT2 deficiency amplified proximal TCR signaling, leading to elevated phosphorylation of early signaling mediators and increased calcium flux in both naïve and anergic T cells. Loss of SIRT2 also altered thymic selection dynamics and expanded TCR repertoire diversity. Mechanistically, SIRT2 interacted with and deacetylated LCK, the initiating kinase of proximal TCR signaling. Mass spectrometry identified lysine K228 in the LCK linker region as a SIRT2-regulated deacetylation site that governs LCK conformation and kinase activity. Functionally, SIRT2 inhibition in exhausted mouse and human TILs restored TCR signaling capacity and improved anti-tumor responses.
CONCLUSION: Here we identify SIRT2-regulated deacetylation of LCK as a previously unrecognized mechanism that sets the strength and threshold of proximal TCR signaling. Accordingly, SIRT2 targeting reverses the exhausted phenotype of tumor-reactive T cells.
利益披露 Disclosure
I. Hamaidi, None..
P. Cheng, None..
S. Jun, None..
M. Wang, None..
M. Zhang, None..
O. Taylor, None..
L. Lopez-bailon, None..
I. Can, None..
B. Fang, None..
A. Berglund, None..
B. Perez, None..
B. Creelan, None..
A. Marusyk, None..
V. Shapiro, None..
H. Ji, None..
J. R. Conejo-Garcia, None..
S. Kim, None.