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阳离子两亲性抗组胺药通过 Ca 依赖性溶酶体 H+外排抑制 STAT3。

Cationic amphiphilic antihistamines inhibit STAT3 via Ca-dependent lysosomal H efflux.

机构信息

Cell Death and Metabolism, Center for Autophagy, Recycling and Disease (CARD), Danish Cancer Society Research Center (DCRC), 2100 Copenhagen, Denmark.

Cell Death and Metabolism, Center for Autophagy, Recycling and Disease (CARD), Danish Cancer Society Research Center (DCRC), 2100 Copenhagen, Denmark.

出版信息

Cell Rep. 2023 Feb 28;42(2):112137. doi: 10.1016/j.celrep.2023.112137. Epub 2023 Feb 17.

Abstract

Commonly used antihistamines and other cationic amphiphilic drugs (CADs) are emerging as putative cancer drugs. Their unique chemical structure enables CADs to accumulate rapidly inside lysosomes, where they increase lysosomal pH, alter lysosomal lipid metabolism, and eventually cause lysosomal membrane permeabilization. Here, we show that CAD-induced rapid elevation in lysosomal pH is caused by a lysosomal H efflux that requires P2RX4-mediated lysosomal Ca release and precedes the lysosomal membrane permeabilization. The subsequent cytosolic acidification triggers the dephosphorylation, lysosomal translocation, and inactivation of the oncogenic signal transducer and activator of transcription 3 (STAT3) transcription factor. Moreover, CAD-induced lysosomal H efflux sensitizes cancer cells to apoptosis induced by STAT3 inhibition and acts synergistically with STAT3 inhibition in restricting the tumor growth of A549 non-small cell lung carcinoma xenografts. These findings identify lysosomal H efflux and STAT3 inhibition as anticancer mechanisms of CADs and reinforce the repurposing of safe and inexpensive CADs as cancer drugs with a drug combination strategy.

摘要

常用的抗组胺药和其他阳离子两亲性药物(CADs)正在成为潜在的癌症治疗药物。它们独特的化学结构使 CAD 能够在溶酶体内迅速积累,在溶酶体内增加溶酶体 pH 值,改变溶酶体脂质代谢,最终导致溶酶体膜通透性增加。在这里,我们表明 CAD 诱导的溶酶体 pH 值的快速升高是由溶酶体 H 外流引起的,需要 P2RX4 介导的溶酶体 Ca2+释放,并且发生在溶酶体膜通透性增加之前。随后的细胞质酸化触发致癌信号转导和转录激活因子 3(STAT3)转录因子的去磷酸化、溶酶体易位和失活。此外,CAD 诱导的溶酶体 H 外流使癌细胞对 STAT3 抑制诱导的细胞凋亡敏感,并与 STAT3 抑制协同作用,限制 A549 非小细胞肺癌异种移植物的肿瘤生长。这些发现确定了溶酶体 H 外流和 STAT3 抑制是 CAD 的抗癌机制,并加强了将安全且廉价的 CAD 重新用作癌症治疗药物的策略,与药物联合使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a396/9989825/a5ea652d1da3/fx1.jpg

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