RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Increased CaMKK2 Expression Is an Adaptive Response That Maintains the Fitness of Tumor-Infiltrating Natural Killer Cells.
Increased CaMKK2 Expression Is an Adaptive Response That Maintains the Fitness of Tumor-Infiltrating Natural Killer Cells.
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钙/钙调蛋白依赖性蛋白激酶激酶2(CaMKK2)是多种细胞类型中能量稳态的关键调节因子。该酶在肿瘤细胞中的表达促进增殖和迁移,而在肿瘤相关免疫细胞中的表达则促进M2巨噬细胞极化和髓源性抑制细胞的发育。
因此,开发CaMKK2抑制剂作为潜在抗癌治疗药物引起了人们的兴趣。这些药物临床开发的一个障碍是,CaMKK2在肿瘤免疫微环境中其他细胞区室中的作用仍有待确定。
我们在此报道,CaMKK2在自然杀伤(NK)细胞中以较低的基线水平表达,但在肿瘤浸润NK细胞中上调,在其中抑制凋亡并促进增殖。NK细胞内在性CaMKK2缺失在几种小鼠模型中增加了转移进展,确立了该酶在NK细胞介导的抗肿瘤免疫中的关键作用。消除CaMKK2蛋白,而非抑制其激酶活性,导致NK细胞存活率降低。这些结果表明CaMKK2在NK细胞中具有重要的支架功能,并提示竞争性CaMKK2抑制剂和配体导向降解剂(LDD)可能具有不同的治疗用途。
最后,我们确定细胞内乳酸是CaMKK2表达的关键驱动因素,提示该酶的上调表达是肿瘤浸润NK细胞减轻富含乳酸的肿瘤微环境有害效应的一种适应性机制。
本研究的发现应为操纵CaMKK2信号轴作为癌症治疗方法的策略提供依据。
Calcium/calmodulin-dependent protein kinase kinase 2 (CaMKK2) is a key regulator of energy homeostasis in several cell types. Expression of this enzyme in tumor cells promotes proliferation and migration, and expression in tumor-associated immune cells facilitates M2 macrophage polarization and the development of myeloid-derived suppressor cells.
Thus, there has been interest in developing CaMKK2 inhibitors as potential anticancer therapeutics. One impediment to clinical development of these agents is that the roles of CaMKK2 in other cellular compartments within the tumor immune microenvironment remain to be established.
We report herein that CaMKK2 is expressed at low basal levels in natural killer (NK) cells but is upregulated in tumor-infiltrating NK cells where it suppresses apoptosis and promotes proliferation. NK cell-intrinsic deletion of CaMKK2 increased metastatic progression in several murine models, establishing a critical role for this enzyme in NK cell-mediated antitumor immunity.
Ablation of the CaMKK2 protein, but not inhibition of its kinase activity, resulted in decreased NK-cell survival. These results indicate an important scaffolding function for CaMKK2 in NK cells and suggest that competitive CaMKK2 inhibitors and ligand-directed degraders (LDD) are likely to have distinct therapeutic utilities.
Finally, we determined that intracellular lactic acid is a key driver of CaMKK2 expression, suggesting that upregulated expression of this enzyme is an adaptive mechanism by which tumor-infiltrating NK cells mitigate the deleterious effects of a lactic acid-rich tumor microenvironment. The findings of this study should inform strategies to manipulate the CaMKK2-signaling axis as a therapeutic approach in cancer.
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