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ELK3 通过调节线粒体动力学调节自然杀伤细胞对三阴性乳腺癌的抗肿瘤疗效。

ELK3 modulates the antitumor efficacy of natural killer cells against triple negative breast cancer by regulating mitochondrial dynamics.

机构信息

Department of Biomedical Science, CHA University, Seongnam-si, Korea (the Republic of).

Department of Neurosurgery, Lou and Jean Malnati Brain Tumor Institute, Robert H Lurie Comprehensive Cancer Center, Northwestern University Feinberg School of Medicine, Chicago, Illinois, USA.

出版信息

J Immunother Cancer. 2022 Jul;10(7). doi: 10.1136/jitc-2022-004825.

Abstract

BACKGROUND

Triple negative breast cancer (TNBC) is the most lethal subtype of breast cancer due to its aggressive behavior and frequent development of resistance to chemotherapy. Although natural killer (NK) cell-based immunotherapy is a promising strategy for overcoming barriers to cancer treatment, the therapeutic efficacy of NK cells against TNBC is below expectations. E26 transformation-specific transcription factor ELK3 (ELK3) is highly expressed in TNBCs and functions as a master regulator of the epithelial-mesenchymal transition.

METHODS

Two representative human TNBC cell lines, MDA-MB231 and Hs578T, were exposed to ELK3-targeting shRNA or an ELK3-expressing plasmid to modulate ELK3 expression. The downstream target genes of ELK3 were identified using a combined approach comprising gene expression profiling and molecular analysis. The role of ELK3 in determining the immunosensitivity of TNBC to NK cells was investigated in terms of mitochondrial fission-fusion transition and reactive oxygen species concentration both in vitro and in vivo.

RESULTS

ELK3-dependent mitochondrial fission-fusion status was linked to the mitochondrial superoxide concentration in TNBCs and was a main determinant of NK cell-mediated immune responses. We identified mitochondrial dynamics proteins of 51 (Mid51), a major mediator of mitochondrial fission, as a direct downstream target of ELK3 in TNBCs. Also, we demonstrated that expression of ELK3 correlated inversely with that of Mid51, and that the ELK3-Mid51 axis is associated directly with the status of mitochondrial dynamics. METABRIC analysis revealed that the ELK3-Mid51 axis has a direct effect on the immune score and survival of patients with TNBC.

CONCLUSIONS

Taken together, the data suggest that NK cell responses to TNBC are linked directly to ELK3 expression levels, shedding new light on strategies to improve the efficacy of NK cell-based immunotherapy of TNBC.

摘要

背景

三阴性乳腺癌(TNBC)因其侵袭性行为和频繁发生化疗耐药而成为最致命的乳腺癌亚型。尽管基于自然杀伤(NK)细胞的免疫疗法是克服癌症治疗障碍的有前途的策略,但 NK 细胞对 TNBC 的治疗效果低于预期。E26 转化特异性转录因子 Elk3(ELK3)在 TNBC 中高度表达,作为上皮-间充质转化的主调控因子。

方法

用 Elk3 靶向 shRNA 或 Elk3 表达质粒处理两种代表性的人 TNBC 细胞系 MDA-MB231 和 Hs578T,以调节 Elk3 表达。采用基因表达谱分析和分子分析相结合的方法,确定 Elk3 的下游靶基因。从体外和体内两个方面研究了 Elk3 在决定 TNBC 对 NK 细胞的免疫敏感性方面的作用,即线粒体裂变-融合转换和活性氧浓度。

结果

ELK3 依赖性线粒体裂变-融合状态与 TNBC 中线粒体超氧浓度有关,是 NK 细胞介导的免疫反应的主要决定因素。我们鉴定出线粒体动力学蛋白 51(Mid51)是 TNBC 中主要的线粒体分裂介质,是 Elk3 在 TNBC 中的直接下游靶标。此外,我们还证明了 Elk3 的表达与 Mid51 的表达呈负相关,并且 Elk3-Mid51 轴与线粒体动力学状态直接相关。METABRIC 分析表明,Elk3-Mid51 轴对 TNBC 患者的免疫评分和生存有直接影响。

结论

综上所述,数据表明 NK 细胞对 TNBC 的反应与 Elk3 的表达水平直接相关,为提高 NK 细胞为基础的 TNBC 免疫治疗的疗效提供了新的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16ab/9305827/0dd0ddf9c306/jitc-2022-004825f01.jpg

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