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靶向SETDB1在癌症与免疫调节中的作用:癌症的潜在治疗策略

Targeting SETDB1 in cancer and immune regulation: Potential therapeutic strategies in cancer.

作者信息

Pan Bo-Syong, Lin Cheng-Yu, Lee Gilbert Aaron, Lin Hui-Kuan

机构信息

Department of Pathology, Duke University Medical Center, Durham, North Carolina, USA.

出版信息

Kaohsiung J Med Sci. 2025 Mar;41(3):e12933. doi: 10.1002/kjm2.12933. Epub 2025 Jan 7.

Abstract

SET domain bifurcated histone lysine methyltransferase 1 (SETDB1/ESET), a pivotal H3K9 methyltransferase, has been extensively studied since its discovery over two decades ago. SETDB1 plays critical roles in immune regulation, including B cell maturation, T-cell activity modulation, and endogenous retrovirus (ERV) silencing. While essential for normal immune cell function, SETDB1 overexpression in cancer cells disrupts immune responses by suppressing tumor immunogenicity and facilitating immune evasion. This is achieved through the repression of anti-tumor immune cell production, ERV silencing, and interference with the type I interferon pathway leading to inhibiting immune checkpoint blockade (ICB) efficacy. Beyond its immunological implications, SETDB1 overexpression fosters tumor growth and metastasis via transcriptional silencing of tumor suppressor genes through histone regulation and activating oncogenic signaling by non-histone regulation. These multifaceted roles make SETDB1 an attractive epigenetic target for novel cancer therapies. This review explores SETDB1's dual function in immune regulation and tumor progression, emphasizing its potential in the development of innovative cancer treatments targeting epigenetic dysregulation and oncogenic signaling.

摘要

SET结构域分叉组蛋白赖氨酸甲基转移酶1(SETDB1/ESET)是一种关键的H3K9甲基转移酶,自二十多年前被发现以来,已得到广泛研究。SETDB1在免疫调节中发挥关键作用,包括B细胞成熟、T细胞活性调节和内源性逆转录病毒(ERV)沉默。虽然SETDB1对正常免疫细胞功能至关重要,但癌细胞中SETDB1的过表达会通过抑制肿瘤免疫原性和促进免疫逃逸来破坏免疫反应。这是通过抑制抗肿瘤免疫细胞产生、ERV沉默以及干扰I型干扰素途径导致免疫检查点阻断(ICB)疗效降低来实现的。除了其免疫学意义外,SETDB1的过表达还通过组蛋白调控对肿瘤抑制基因进行转录沉默,并通过非组蛋白调控激活致癌信号,从而促进肿瘤生长和转移。这些多方面的作用使SETDB1成为新型癌症治疗中一个有吸引力的表观遗传靶点。本综述探讨了SETDB1在免疫调节和肿瘤进展中的双重功能,强调了其在开发针对表观遗传失调和致癌信号的创新癌症治疗方法中的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3351/11924802/9d42c7560470/KJM2-41-e12933-g001.jpg

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