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ISCA2 抑制降低了透明细胞肾细胞癌中的 HIF 并诱导了铁死亡。

ISCA2 inhibition decreases HIF and induces ferroptosis in clear cell renal carcinoma.

机构信息

University of Utah, Salt Lake City, UT, 84112, USA.

Kuda Therapeutics, Inc, Salt Lake City, UT, 84103, USA.

出版信息

Oncogene. 2022 Oct;41(42):4709-4723. doi: 10.1038/s41388-022-02460-1. Epub 2022 Sep 12.

Abstract

Clear cell renal cell carcinoma (ccRCC), the most common form of kidney cancer, is typically initiated by inactivation of the von Hippel Lindau (VHL) gene, which results in the constitutive activation of the hypoxia inducible factors, HIF-1α and HIF-2α. Using a high throughput screen, we identify novel compounds that decrease HIF-1/2α levels and induce ferroptosis by targeting Iron Sulfur Cluster Assembly 2 (ISCA2), a component of the late mitochondrial Iron Sulfur Cluster (L-ISC) assembly complex. ISCA2 inhibition either pharmacologically or using siRNA decreases HIF-2α protein levels by blocking iron-responsive element (IRE)-dependent translation, and at higher concentrations, also decreases HIF-1α translation through unknown mechanisms. Additionally, ISCA2 inhibition triggers the iron starvation response, resulting in iron/metals overload and death via ferroptosis. ISCA2 levels are decreased in ccRCC compared to normal kidney, and decreased ISCA2 levels are associated with pVHL loss and with sensitivity to ferroptosis induced by ISCA2 inhibition. Strikingly, pharmacological inhibition of ISCA2 using an orally available ISCA2 inhibitor significantly reduced ccRCC xenograft growth in vivo, decreased HIF-α levels and increased lipid peroxidation, suggesting increased ferroptosis in vivo. Thus, the targeting of ISCA2 may be a promising therapeutic strategy to inhibit HIF-1/2α and to induce ferroptosis in pVHL deficient cells.

摘要

透明细胞肾细胞癌 (ccRCC) 是最常见的肾癌形式,通常由 von Hippel Lindau (VHL) 基因失活引发,导致缺氧诱导因子 HIF-1α 和 HIF-2α 的组成性激活。我们使用高通量筛选方法,确定了通过靶向铁硫簇组装 2 (ISCA2) 降低 HIF-1/2α 水平并诱导铁死亡的新型化合物,ISCA2 是线粒体铁硫簇 (L-ISC) 组装复合物的晚期成分。ISCA2 抑制无论是通过药理学方法还是使用 siRNA 进行,都通过阻断铁反应元件 (IRE) 依赖性翻译来降低 HIF-2α 蛋白水平,并且在更高浓度下,还通过未知机制降低 HIF-1α 翻译。此外,ISCA2 抑制触发铁饥饿反应,导致铁/金属超载,并通过铁死亡导致死亡。与正常肾脏相比,ccRCC 中的 ISCA2 水平降低,并且降低的 ISCA2 水平与 pVHL 缺失以及对 ISCA2 抑制诱导的铁死亡的敏感性相关。引人注目的是,使用口服可用的 ISCA2 抑制剂对 ISCA2 的药理学抑制在体内显著减少了 ccRCC 异种移植物的生长,降低了 HIF-α 水平并增加了脂质过氧化,表明体内发生了更多的铁死亡。因此,靶向 ISCA2 可能是抑制 HIF-1/2α 和诱导 pVHL 缺陷细胞中铁死亡的有前途的治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f10f/9568429/1f85953b76fb/41388_2022_2460_Fig1_HTML.jpg

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