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敲除 CD73 可通过重编程脂质代谢来延迟 HR 阴性乳腺癌的发病,并与增加肿瘤突变负担有关。

Knock-out of CD73 delays the onset of HR-negative breast cancer by reprogramming lipid metabolism and is associated with increased tumor mutational burden.

机构信息

Laboratory of Cell Biology and Immunology, Institute of Medical Biotechnology and Experimental Oncology, Intercollegiate Faculty of Biotechnology University of Gdańsk and Medical University of Gdańsk, Medical University of Gdańsk, Poland.

Department of Pathomorphology, Faculty of Medicine, Medical University of Gdańsk, Poland.

出版信息

Mol Metab. 2024 Nov;89:102035. doi: 10.1016/j.molmet.2024.102035. Epub 2024 Sep 18.

Abstract

OBJECTIVE

CD73 (ecto-5'-nucleotidase, NT5E), a cell-surface enzyme converting 5'-AMP to adenosine, is crucial for cancer progression. However, its role in the tumorigenesis process remains mostly obscure. We aimed to demonstrate CD73's role in breast cancer (BC) tumorigenesis through metabolic rewiring of fatty acid metabolism, a process recently indicated to be regulated by BC major prognostic markers, hormone receptors (HR) for estrogen (ER), and progesterone (PR).

METHODS

A murine model of chemically induced mammary gland tumorigenesis was applied to analyze CD73 knock-out (KO)-induced changes at the transcriptome (RNA-seq), proteome (IHC, WB), and lipidome (GC-EI-MS) levels. CD73 KO-induced changes were correlated with scRNA-seq and bulk RNA-seq data for human breast tissues and BCs from public collections and confirmed at the proteome level with IHC or WB analysis of BC tissue microarrays and cell lines.

RESULTS

CD73 KO delayed the onset of HR/PR-negative mammary tumors in a murine model. This delay correlated with increased expression of genes related to biosynthesis and β-oxidation of fatty acids (FAs) in the CD73 KO group at the initiation stage. STRING analysis based on RNA-seq data indicated an interplay between CD73 KO, up-regulated expression of PR-coding gene, and DEGs involved in FA metabolism, with PPARγ, a main regulator of FA synthesis, as a main connective node. In epithelial cells of mammary glands, PPARγ expression correlated with CD73 at the RNA level. With cancer progression, CD73 KO increased the levels of PUFAn3/6 (polyunsaturated omega 3/6 FAs), known ligands of PPARγ and target for lipid peroxidation, which may lead to oxidative DNA damage. It correlated with the downregulation of genes involved in cellular stress response (Mlh1, Gsta3), PR-or CD73-dependent changes in the intracellular ROS levels and expression or activation of proteins involved in DNA repair or oxidative stress response in mammary tumor or human BC cell lines, increased tumor mutational burden (TMB) and genomic instability markers in CD73 low HR-negative human BCs, and the prolonged onset of tumors in the CD73 KO HR/PR-negative group.

CONCLUSIONS

CD73 has a significant role in tumorigenesis driving the reprogramming of lipid metabolism through the regulatory loop with PR and PPARγ in epithelial cells of mammary glands. Low CD73 expression/CD73 KO might enhance mutational burden by disrupting this regulatory loop, delaying the onset of HR-negative tumors. Our results support combining therapy targeting the CD73-adenosine axis and tumor lipidome against HR-negative tumors, especially at their earliest developmental stage.

摘要

目的

CD73(外核苷酸 5′- 酶,NT5E)是一种将 5′-AMP 转化为腺苷的细胞表面酶,对癌症的进展至关重要。然而,其在肿瘤发生过程中的作用在很大程度上仍不清楚。我们旨在通过脂肪酸代谢的代谢重编程来证明 CD73 在乳腺癌(BC)肿瘤发生中的作用,这是一个最近被表明受 BC 主要预后标志物,雌激素(ER)和孕激素(PR)受体调节的过程。

方法

应用化学诱导的乳腺肿瘤发生的小鼠模型来分析 CD73 敲除(KO)诱导的转录组(RNA-seq)、蛋白质组(IHC、WB)和脂质组(GC-EI-MS)水平的变化。CD73 KO 诱导的变化与公共数据库中人类乳腺组织和 BC 的 scRNA-seq 和批量 RNA-seq 数据相关,并通过对 BC 组织微阵列和细胞系进行 IHC 或 WB 分析在蛋白质组水平上得到证实。

结果

CD73 KO 延迟了 HR/PR-阴性乳腺肿瘤在小鼠模型中的发生。这种延迟与 CD73 KO 组在起始阶段与脂肪酸(FA)生物合成和β-氧化相关基因的表达增加相关。基于 RNA-seq 数据的 STRING 分析表明,CD73 KO、PR 编码基因表达上调以及参与 FA 代谢的 DEGs 之间存在相互作用,其中 PPARγ是 FA 合成的主要调节剂,是主要的连接节点。在乳腺上皮细胞中,PPARγ 的表达与 RNA 水平上的 CD73 相关。随着癌症的进展,CD73 KO 增加了 PUFAn3/6(多不饱和 ω3/6 FAs)的水平,已知是 PPARγ的配体和脂质过氧化的靶标,可能导致氧化 DNA 损伤。它与细胞应激反应(Mlh1、Gsta3)相关基因的下调相关,与 PR 或 CD73 依赖性的细胞内 ROS 水平变化以及与 DNA 修复或氧化应激反应相关的蛋白质的表达或激活相关,在 CD73 低 HR-阴性的人类 BC 中增加肿瘤突变负担(TMB)和基因组不稳定性标志物,并延长了 CD73 KO HR/PR-阴性组肿瘤的发生时间。

结论

CD73 在肿瘤发生中具有重要作用,通过在乳腺上皮细胞中与 PR 和 PPARγ 的调节环驱动脂质代谢的重编程。低 CD73 表达/CD73 KO 可能通过破坏这种调节环来增加突变负担,从而延迟 HR-阴性肿瘤的发生。我们的结果支持针对 CD73-腺苷轴和肿瘤脂质组联合治疗 HR-阴性肿瘤,特别是在其最早的发育阶段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d7b/11462070/384b3744019e/gr1.jpg

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