← 返回前沿论文

通过单重和双重沉默 PCSK7/PCSK9 阻断结肠癌转移:增强小鼠与人 T 细胞细胞毒性

英文原题:Blockade of colon cancer metastasis via single and double silencing of PCSK7/PCSK9: enhanced T cells cytotoxicity in mouse and human.

查看英文原题

Blockade of colon cancer metastasis via single and double silencing of PCSK7/PCSK9: enhanced T cells cytotoxicity in mouse and human.

PubMed 2025/06/15(内容时间) J Immunother Cancer Q1 · IF 11.7(JCR 2025)

研究概要

我们的数据提供了一种 PCSK7 i 策略,可降低细胞表面 ICPs 的水平,从而使 PCSK7 i 在 T 细胞免疫治疗中单独使用或与 PCSK9 抑制剂/沉默剂联合使用合理化。

研究思路结论见上方概要

基于T细胞的免疫治疗方法为癌症治疗带来了突破,但可能导致许多免疫相关不良事件,并且对于许多伴有T细胞获得性功能障碍/耗竭的癌症,其疗效有限。本研究揭示了前蛋白转化酶枯草溶菌素-kexin 7(PCSK7)在免疫中的新作用,PCSK7是9个成员组成的分泌型前蛋白转化酶枯草溶菌素-kexin(PCSK)家族中的第7个前蛋白转化酶。

我们分析了在存在或不存在 PCSK7 表达的情况下,人和小鼠细胞模型中多种免疫检查点蛋白的细胞表面水平。将小鼠结肠癌 MC38 细胞注射到缺乏 Pcsk7、Pcsk9 或两者(双敲除)的小鼠脾脏中,可分析肝肿瘤转移的程度。我们还评估了来自健康人类受试者的 CD4 + 和 CD8 + T 细胞中检查点蛋白的细胞表面表达,这些受试者的 PCSK7 表达通过 CRISPR Cas9 gRNA 敲低而被沉默。

生物信息学和细胞学研究显示,CD8+ T 细胞中 PCSK7 mRNA 水平富集,这与负责 T 细胞功能障碍的免疫检查点蛋白(ICPs;例如 LAG3、CTLA4、PD1 和 TIGIT)的水平相关。事实上,缺乏 PCSK7 的细胞以及源自 Pcsk7-/- 小鼠的 CD8+ T 细胞,其 ICP 的细胞表面水平低 40%。类似地,在原代人 T 细胞中对 PCSK7 进行 CRISPR-Cas9 编辑(PCSK7i)导致 ICP 表达降低,表达多种 ICP 的细胞比例减少,而不改变活化标志物的表达。此外,前蛋白转化酶枯草溶菌素-kexin 9(PCSK9),即 PCSK 家族第九个成员,增强低密度脂蛋白受体和主要组织相容性复合体-I 蛋白的降解。事实上,先前报道 Pcsk9-/- 小鼠表现出肝肿瘤转移减少。在本研究中,我们报告 PCSK7 和 PCSK9 的协同和互补功能,因为缺失其中任何一种转化酶均使肝转移数量减少了两倍,但在双 KO(Pcsk7-/-、Pcsk9-/-)小鼠中观察到最显著的减少(>90%)。在 Pcsk7-/- 小鼠肿瘤中,CD8+ T 细胞的抗肿瘤发生活性增强,ICPs 水平降低。

展开英文摘要原文

BACKGROUND: Immunotherapy approaches based on T cells provided breakthroughs in cancer treatment but could cause many immune-related adverse events, and their efficacy is limited for many cancers with an acquired dysfunction/exhaustion of T cells. The present study presents a novel role in immunity for proprotein convertase subtilisin-kexin 7 (PCSK7), the seventh proprotein convertase of the 9-membered secretory proprotein convertase subtilisin-kexin (PCSK)-family. METHODS: We analyzed cell surface levels of various immune checkpoint proteins in human and mouse cell models in the presence or absence of PCSK7 expression. Injection of mouse colon carcinoma MC38 cells in the spleen of mice lacking either Pcsk7 , Pcsk9 or both (double knockout) allowed the analysis of the extent of hepatic tumor metastasis. We also estimated the cell surface expression of checkpoint proteins in CD4 + and CD8 + T cells from healthy human subjects in which PCSK7 expression was silenced by CRISPR Cas9 gRNA knockdown. RESULTS: Bioinformatic and cellular studies showed enrichment of PCSK7 mRNA levels in CD8 + T cells, which correlates with those of immune checkpoint proteins (ICPs; eg, LAG3 , CTLA4 , PD1 and TIGIT ) responsible for T-cell dysfunction. Indeed, cells lacking PCSK7 and CD8 + T cells derived from Pcsk7 -/- mice exhibited 40% lower cell-surface levels of ICPs. Similarly, CRISPR-Cas9 editing of PCSK7 ( PCSK7 i) in primary human T cells resulted in lower expression of ICPs and a reduced proportion of cells expressing multiple ICPs, without altering the expression of activation markers. Moreover, proprotein convertase subtilisin-kexin 9 (PCSK9), the ninth PCSK family member, enhances the degradation of the low-density lipoprotein-receptor and major histocompatibility complex-I proteins. Indeed, Pcsk9 -/- mice were previously reported to exhibit reduced liver tumor metastasis. In the present studies, we report synergistic and complementary functions of PCSK7 and PCSK9, as the loss of each one of the convertases reduced by twofold the number of liver metastases, but the strongest reduction (>90%) was observed in double KO ( Pcsk7 -/- , Pcsk9 -/- ) mice. In Pcsk7 -/- mouse tumors the antitumorigenic activity of CD8 + T cells was enhanced and the levels of ICPs were reduced. CONCLUSIONS: Cumulatively, our data provide a PCSK7 i strategy to reduce the levels of cell-surface ICPs, thereby rationalizing the use of PCSK7 i in T-cell immunotherapies alone or in combination with a PCSK9 inhibitor/silencer.

论文信息

作者
Porcheron C、Le Devehat M、Roubtsova A、Bayat H、Evagelidis A、Jafarzadeh L、Sachan V、Labrecque N
第一作者单位
Laboratory of Biochemical Neuroendocrinology, Clinical Research Institute of Montreal Biochemical Neuroendocrinology Research Unit, Montreal, Quebec, Canada.Canada
通讯作者单位
Laboratory of Biochemical Neuroendocrinology, Clinical Research Institute of Montreal Biochemical Neuroendocrinology Research Unit, Montreal, Quebec, Canada seidahn@ircm.qc.ca majid.khatib@inserm.fr.Canada
期刊
Journal for immunotherapy of cancer2025 Jun 15
原文标识
PubMed 40518289 · DOI 10.1136/jitc-2024-011364