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Regulation of Tumor Metabolism and Extracellular Acidosis by the TIMP-10–CD63 Axis in Breast Carcinoma

机译:乳腺癌中 TIMP-10-CD63 轴对肿瘤代谢和细胞外酸中毒的调节

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摘要

A hallmark of malignant solid tumor is extracellular acidification coupled with metabolic switch to aerobic glycolysis. Using the human MCF10A progression model of breast cancer, we show that glycolytic switch and extracellular acidosis in aggressive cancer cells correlate with increased expression of tissue inhibitor of metalloproteinase-1 (TIMP-1), known to induce intracellular signal transduction through the interaction with its cell surface receptor CD63, independent of its metalloproteinase inhibitory function. We found that, in aggressive breast carcinoma, the TIMP-1–CD63 signaling axis induced a metabolic switch by upregulating the rate of aerobic glycolysis, lowering mitochondrial respiration, preventing intracellular acidification, and inducing extracellular acidosis. Carbonic anhydrase IX (CAIX), a regulator of cellular pH through the hydration of metabolically released pericellular CO2, was identified as a downstream mediator of the TIMP-1–CD63 signaling axis responsible for extracellular acidosis. Consistently with our previous study, the TIMP-1–CD63 signaling promoted survival of breast cancer cells. Interestingly, breast carcinoma cell survival was drastically reduced upon shRNA-mediated knockdown of CAIX expression, demonstrating the significance of CAIX-regulated pH in the TIMP-1–CD63-mediated cancer cell survival. Taken together, the present study demonstrates the functional significance of TIMP-1–CD63–CAXI signaling axis in the regulation of tumor metabolism, extracellular acidosis, and survival of breast carcinoma. We propose that this axis may serve as a novel therapeutic target.
机译:恶性实体瘤的一个标志是细胞外酸化伴代谢转变为有氧糖酵解。使用人类乳腺癌 MCF10A 进展模型,我们表明侵袭性癌细胞中的糖酵解转换和细胞外酸中毒与金属蛋白酶-1 组织抑制剂 (TIMP-1) 的表达增加相关,TIMP-1 已知通过与细胞表面受体 CD63 的相互作用诱导细胞内信号转导,与其金属蛋白酶抑制功能无关。我们发现,在侵袭性乳腺癌中,TIMP-1-CD63 信号轴通过上调有氧糖酵解速率、降低线粒体呼吸、防止细胞内酸化和诱导细胞外酸中毒来诱导代谢转换。碳酸酐酶 IX (CAIX) 是一种通过水合作用代谢释放的细胞周围 CO2 调节细胞 pH 值的物质,被确定为负责细胞外酸中毒的 TIMP-1-CD63 信号轴的下游介质。与我们之前的研究一致,TIMP-1-CD63 信号传导促进了乳腺癌细胞的存活。有趣的是,在 shRNA 介导的 CAIX 表达敲低后,乳腺癌细胞存活率急剧降低,证明了 CAIX 调节的 pH 值在 TIMP-1-CD63 介导的癌细胞存活中的重要性。综上所述,本研究证明了 TIMP-1-CD63-CAXI 信号轴在调节肿瘤代谢、细胞外酸中毒和乳腺癌生存中的功能意义。我们建议该轴可以作为一个新的治疗靶点。

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