← 返回前沿论文

REIC/Dkk-3 蛋白在癌细胞中 PD-L1 调控的新细胞外作用

英文原题:Novel extracellular role of REIC/Dkk-3 protein in PD-L1 regulation in cancer cells.

PubMed 2023/03/04(内容时间) J Mol Med (Berl) Q1 · IF 5(JCR 2025)

研究概要

腺病毒-REIC/Dkk-3表达载体(Ad-REIC)因其在癌症淬灭方面的潜力,已成为众多临床研究的焦点。

中文摘要

腺病毒-REIC/Dkk-3表达载体(Ad-REIC)因其在癌症消除方面的潜力而成为众多临床研究的焦点。REIC/DKK-3基因的抑癌机制依赖于多种途径,这些途径对癌症发挥直接和间接效应。直接效应由REIC/Dkk-3介导的ER应激触发,导致癌症选择性凋亡;间接效应可分为两种方式:(i)由Ad-REIC误感染的癌症相关成纤维细胞诱导产生IL-7,IL-7是T细胞和NK细胞的重要激活因子;(ii)由分泌型REIC/Dkk-3蛋白促进单核细胞向树突状细胞极化。这些独特特征使Ad-REIC能够以抗癌疫苗的方式发挥有效且选择性的癌症预防效应。然而,REIC/Dkk-3蛋白如何利用抗癌免疫这一问题仍有待解答。我们在此报告细胞外REIC/Dkk-3的一种新功能——即通过调节癌细胞表面的PD-L1来调控免疫检查点。首先,我们鉴定了REIC/Dkk-3与膜蛋白C5aR、CXCR2、CXCR6和CMTM6的新相互作用。这些蛋白均具有稳定细胞表面PD-L1的功能。由于CMTM6在癌细胞中在这些蛋白里呈优势表达,我们接下来聚焦于CMTM6,并观察到REIC/Dkk-3与CMTM6竞争结合PD-L1,从而使PD-L1从其与CMTM6的复合物中释放出来。释放的PD-L1立即经历内吞介导的降解。这些结果将不仅增强我们对细胞外REIC/Dkk-3蛋白生理特性的理解,也将增强我们对Ad-REIC介导的抗癌效应的理解。关键信息:• REIC/Dkk-3 蛋白通过加速 PD-L1 降解有效抑制乳腺癌进展。• 癌细胞膜上 PD-L1 的稳定性主要通过主要与 CMTM6 结合而保持高水平。• REIC/Dkk-3 蛋白与 CMTM6 的竞争性结合释放 PD-L1,导致 PD-L1 降解。

展开英文摘要原文

The adenovirus-REIC/Dkk-3 expression vector (Ad-REIC) has been the focus of numerous clinical studies due to its potential for the quenching of cancers. The cancer-suppressing mechanisms of the REIC/DKK-3 gene depend on multiple pathways that exert both direct and indirect effects on cancers. The direct effect is triggered by REIC/Dkk-3-mediated ER stress that causes cancer-selective apoptosis, and the indirect effect can be classified in two ways: (i) induction, by Ad-REIC-mis-infected cancer-associated fibroblasts, of the production of IL-7, an important activator of T cells and NK cells, and (ii) promotion, by the secretory REIC/Dkk-3 protein, of dendritic cell polarization from monocytes. These unique features allow Ad-REIC to exert effective and selective cancer-preventative effects in the manner of an anticancer vaccine. However, the question of how the REIC/Dkk-3 protein leverages anticancer immunity has remained to be answered. We herein report a novel function of the extracellular REIC/Dkk-3-namely, regulation of an immune checkpoint via modulation of PD-L1 on the cancer-cell surface. First, we identified novel interactions of REIC/Dkk-3 with the membrane proteins C5aR, CXCR2, CXCR6, and CMTM6. These proteins all functioned to stabilize PD-L1 on the cell surface. Due to the dominant expression of CMTM6 among the proteins in cancer cells, we next focused on CMTM6 and observed that REIC/Dkk-3 competed with CMTM6 for PD-L1, thereby liberating PD-L1 from its complexation with CMTM6. The released PD-L1 immediately underwent endocytosis-mediated degradation. These results will enhance our understanding of not only the physiological nature of the extracellular REIC/Dkk-3 protein but also the Ad-REIC-mediated anticancer effects. KEY MESSAGES: • REIC/Dkk-3 protein effectively suppresses breast cancer progression through an acceleration of PD-L1 degradation. • PD-L1 stability on the cancer cell membrane is kept high by binding with mainly CMTM6. • Competitive binding of REIC/Dkk-3 protein with CMTM6 liberates PD-L1, leading to PD-L1 degradation.

论文信息

作者
Gohara Y、Tomonobu N、Kinoshita R、Futami J、Audebert L、Chen Y、Komalasari NLGY、Jiang F
第一作者单位
Department of Cell Biology, Dentistry and Pharmaceutical Sciences, Okayama University Graduate School of Medicine, 2-5-1 Shikata-Cho, Kita-Ku, Okayama-Shi, Okayama, 700-8558, Japan.Japan
通讯作者单位
Department of Cell Biology, Dentistry and Pharmaceutical Sciences, Okayama University Graduate School of Medicine, 2-5-1 Shikata-Cho, Kita-Ku, Okayama-Shi, Okayama, 700-8558, Japan. masa-s@md.okayama-u.ac.jp.Japan
文献类型
非美国政府资助研究
期刊
Journal of molecular medicine (Berlin, Germany)2023 Apr
原文标识
PubMed 36869893 · DOI 10.1007/s00109-023-02292-w