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:Proteome and Secretome Profiling of the Melanoma-Induced Transition Toward Immune Incompetent Dendritic Cells Reveals Enhanced IDO1, Cathepsin, and Legumain Activity.
Proteome and Secretome Profiling of the Melanoma-Induced Transition Toward Immune Incompetent Dendritic Cells Reveals Enhanced IDO1, Cathepsin, and Legumain Activity.
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树突状细胞(DC)是专业的抗原呈递细胞,具有启动强效抗肿瘤免疫应答的能力。这一功能对于有效的DC免疫治疗至关重要,但常受到肿瘤来源免疫抑制因子的阻碍,正如在CD14+CD163+肿瘤诱导的DC3(ti-DC3)中所观察到的那样。ti-DC3在癌症患者中增多,表现出免疫抑制表型,并伴有较弱的抗原特异性CD8 T细胞激活能力。虽然肿瘤来源的白细胞介素-6、巨噬细胞集落刺激因子和前列腺素E2已被确定为诱导DC2向ti-DC3转变的因素,但尚未有对由此产生的分泌组和蛋白质组变化进行全面无偏倚分析的报告。
在此,我们利用黑色素瘤细胞系BLM的条件培养基,通过串联LC-MS/MS表征了体外常规DC向CD14+ ti-DC3转变过程中的蛋白质组变化。这揭示了157个差异表达蛋白,包括上调的吲哚胺-2,3-双加氧酶1和legumain,我们证实其具有功能活性。接下来,我们使用THRONCAT代谢标记分析了人DC中新合成的分泌组。
我们在DC2和ti-DC3之间检测到17个差异分泌蛋白,其中包括六种组织蛋白酶和肿瘤相关转化生长因子-β诱导蛋白。组织蛋白酶活性在黑色素瘤患者的外周血和肿瘤组织中得到了验证。
我们在ti-DC3中检测到最高的组织蛋白酶活性,超过DC2和肿瘤相关巨噬细胞。总之,我们的发现首次表征了人黑色素瘤诱导的DC3的蛋白质组和分泌组。这揭示了ti-DC3中几种由蛋白质驱动的促肿瘤机制,这些机制可能有助于创造有利于肿瘤进展的免疫环境。
Dendritic cells (DCs) are professional antigen-presenting cells endowed with the capacity to initiate strong antitumor immune responses. This function is critical for effective DC-based immunotherapies but is often hampered by tumor-derived immunosuppressive factors, as is observed for CD14 + CD163 + tumor-induced DC3s (ti-DC3s).
ti-DC3s are increased in cancer patients where they display an immunosuppressive phenotype, accompanied by weak antigen-specific CD8 T cell-activating capacities. While tumor-derived interleukin-6, macrophage colony-stimulating factor, and prostaglandin E2 have been identified as factors inducing the transition from DC2s to ti-DC3s, a comprehensive unbiased profiling of the resulting changes in secretome and proteome has not been reported.
Here, we characterized by tandem LC-MS/MS the proteomic changes in conventional DCs during their transition into CD14 + ti-DC3s in vitro, using conditioned medium from the melanoma cell line BLM. This revealed 157 differentially expressed proteins, including upregulated indoleamine-2,3-dioxygenase 1 and legumain, which we confirmed to be functionally active. Next, we profiled the newly synthesized secretome in human DCs with THRONCAT metabolic labeling.
We detected 17 differentially secreted proteins between DC2s and ti-DC3s, which included six cathepsins and tumor-associated transforming growth factor-β-induced protein. Cathepsin activity was validated in peripheral blood and tumor tissue of melanoma patients.
We detected the highest cathepsin activity in ti-DC3s, surpassing DC2s and tumor-associated macrophages.
Together, our findings represent the first characterization of the proteome and secretome of human melanoma-induced DC3s. This revealed several protein-driven protumor mechanisms active in ti-DC3s that potentially contribute to creating an immune environment favorable for tumor progression.
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