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野生型VHL透明细胞肾细胞癌中SETD2的缺失使细胞对STF-62247敏感,并导致DNA损伤、细胞周期停滞以及焦亡特征性的细胞死亡。

Loss of SETD2 in wild-type VHL clear cell renal cell carcinoma sensitizes cells to STF-62247 and leads to DNA damage, cell cycle arrest, and cell death characteristic of pyroptosis.

作者信息

Johnson Mathieu, Turcotte Sandra

机构信息

Department of Chemistry and Biochemistry, Université de Moncton, Canada.

Atlantic Cancer Research Institute, Moncton, Canada.

出版信息

Mol Oncol. 2025 Apr;19(4):1244-1264. doi: 10.1002/1878-0261.13770. Epub 2024 Nov 26.

Abstract

Loss of chromosome 3p and loss of heterogeneity of the von Hippel-Lindau (VHL) gene are common characteristics of clear cell renal cell carcinoma (ccRCC). Despite frequent mutations on VHL, a fraction of tumors still grows with the expression of wild-type (WT) VHL and evolve into an aggressive subtype. Additionally, mutations on chromatin-modifying genes, such as the gene coding for the histone methyltransferase SET containing domain 2 (SETD2), are essential to ccRCC evolution. We previously identified STF-62247, a small molecule first discovered as a synthetically lethal molecule for VHL-deficient cells by blocking late stages of autophagy. This study investigated how other commonly mutated genes in ccRCC could impact the response to STF-62247. We showed that SETD2 inactivation in ccRCC cells expressing WT-VHL became vulnerable to STF-62247, as indicated by decreases in cell proliferation and survival. Furthermore, activation of the DNA damage response pathway leads to the loss of M-phase inducer phosphatase 1 (CDC25A) and cell cycle arrest in S phase. Cleavage of both caspase-3 and gasdermin E suggests that STF-62247 eliminates WT-VHL ccRCC cells through pyroptosis specifically when SETD2 is inactivated.

摘要

3号染色体短臂缺失和冯·希佩尔-林道(VHL)基因的杂合性缺失是透明细胞肾细胞癌(ccRCC)的常见特征。尽管VHL频繁发生突变,但仍有一部分肿瘤在野生型(WT)VHL表达的情况下生长,并演变成侵袭性亚型。此外,染色质修饰基因的突变,如编码含SET结构域2(SETD2)的组蛋白甲基转移酶的基因,对ccRCC的演变至关重要。我们之前鉴定出了STF-62247,这是一种小分子,最初被发现是通过阻断自噬后期对VHL缺陷细胞具有合成致死作用的分子。本研究调查了ccRCC中其他常见的突变基因如何影响对STF-62247的反应。我们发现,在表达WT-VHL的ccRCC细胞中,SETD2失活会使其对STF-62247变得敏感,这表现为细胞增殖和存活率的降低。此外,DNA损伤反应途径的激活导致M期诱导磷酸酶1(CDC25A)的缺失和细胞周期在S期停滞。半胱天冬酶-3和gasdermin E的裂解表明,STF-62247通过焦亡特异性地消除WT-VHL ccRCC细胞,特别是在SETD2失活时。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/722b/11977649/08fc78fcd7c7/MOL2-19-1244-g001.jpg

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