非常规 T 细胞在泌尿系统肿瘤中:能抓住就抓住
Unconventional T cells in urological cancers: catch them if you can.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Identification and regulation of circulating tumor-TCR-matched cytotoxic CD4+ lymphocytes by KLRG1 in bladder cancer.
Identification and regulation of circulating tumor-TCR-matched cytotoxic CD4+ lymphocytes by KLRG1 in bladder cancer.
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虽然细胞毒性 CD4+ TIL(肿瘤浸润淋巴细胞)在患者中具有抗癌活性,但这些细胞能否被无创监测以及如何受到调控仍不清楚。通过将膀胱癌患者肿瘤和血液中的单细胞与 T 细胞受体(TCR)进行匹配,我们在外周中鉴定出不同的肿瘤匹配细胞毒性 CD4+ T 细胞池,直接反映了瘤内 CD4+ TIL(肿瘤浸润淋巴细胞)的主要抗原特异性。一方面,表达颗粒酶 B(GZMB)的细胞毒性 CD4+ 亚群在血液中响应 PD-1 阻断而增殖,但受到杀伤细胞凝集素样受体 G1(KLRG1)的独立调控,KLRG1 通过与 E-cadherin 相互作用抑制其杀伤功能。相反,一个克隆相关的、表达 GZMK 的循环 CD4+ 群体表现出基础增殖和记忆表型,这可能源于 GZMB+ 细胞的激活,但并未被 PD-1 阻断直接动员。由于 KLRG1 标记了大多数循环中肿瘤 TCR 匹配的细胞毒性 CD4+ T 细胞,本研究提出 KLRG1 可作为从血液中分离这些细胞的手段,为了解瘤内 CD4+ 识别提供一个窗口,同时也是一个推定的调控受体,可用于动员溶细胞性 GZMB+ 亚群以获得治疗获益。
我们的发现还强调了表达 GZMB 和 GZMK 的群体之间的个体发生关系,以及调控其活性的不同信号。
While cytotoxic CD4+ tumor-infiltrating lymphocytes have anticancer activity in patients, whether these can be noninvasively monitored and how these are regulated remains obscure. By matching single cells with T cell receptors (TCRs) in tumor and blood of patients with bladder cancer, we identified distinct pools of tumor-matching cytotoxic CD4+ T cells in the periphery directly reflecting the predominant antigenic specificities of intratumoral CD4+ tumor-infiltrating lymphocytes. On one hand, the granzyme B-expressing (GZMB-expressing) cytotoxic CD4+ subset proliferated in blood in response to PD-1 blockade but was separately regulated by the killer cell lectin-like receptor G1 (KLRG1), which inhibited their killing by interacting with E-cadherin.
Conversely, a clonally related, GZMK-expressing circulating CD4+ population demonstrated basal proliferation and a memory phenotype that may result from activation of GZMB+ cells, but was not directly mobilized by PD-1 blockade. As KLRG1 marked the majority of circulating tumor-TCR-matched cytotoxic CD4+ T cells, this work nominates KLRG1 as a means to isolate them from blood and provide a window into intratumoral CD4+ recognition, as well as a putative regulatory receptor to mobilize the cytolytic GZMB+ subset for therapeutic benefit.
Our findings also underscore ontogenic relationships of GZMB- and GZMK-expressing populations and the distinct cues that regulate their activity.
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