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一种独特的超动态二聚体界面允许小分子干扰黑色素瘤癌蛋白 MITF,从而用于黑色素瘤治疗。

A unique hyperdynamic dimer interface permits small molecule perturbation of the melanoma oncoprotein MITF for melanoma therapy.

机构信息

State Key Laboratory of Bioorganic and Natural Products Chemistry, Center for Excellence in Molecular Synthesis, Shanghai Institute of Organic Chemistry, University of Chinese Academy of Sciences, Chinese Academy of Sciences, Shanghai, China.

School of Biomedical Sciences and Engineering, South China University of Technology, Guangzhou International Campus, Guangzhou, Guangdong, China.

出版信息

Cell Res. 2023 Jan;33(1):55-70. doi: 10.1038/s41422-022-00744-5. Epub 2023 Jan 2.

Abstract

Microphthalmia transcription factor (MITF) regulates melanocyte development and is the "lineage-specific survival" oncogene of melanoma. MITF is essential for melanoma initiation, progression, and relapse and has been considered an important therapeutic target; however, direct inhibition of MITF through small molecules is considered impossible, due to the absence of a ligand-binding pocket for drug design. Here, our structural analyses show that the structure of MITF is hyperdynamic because of its out-of-register leucine zipper with a 3-residue insertion. The dynamic MITF is highly vulnerable to dimer-disrupting mutations, as we observed that MITF loss-of-function mutations in human Waardenburg syndrome type 2 A are frequently located on the dimer interface and disrupt the dimer forming ability accordingly. These observations suggest a unique opportunity to inhibit MITF with small molecules capable of disrupting the MITF dimer. From a high throughput screening against 654,650 compounds, we discovered compound TT-012, which specifically binds to dynamic MITF and destroys the latter's dimer formation and DNA-binding ability. Using chromatin immunoprecipitation assay and RNA sequencing, we showed that TT-012 inhibits the transcriptional activity of MITF in B16F10 melanoma cells. In addition, TT-012 inhibits the growth of high-MITF melanoma cells, and inhibits the tumor growth and metastasis with tolerable toxicity to liver and immune cells in animal models. Together, this study demonstrates a unique hyperdynamic dimer interface in melanoma oncoprotein MITF, and reveals a novel approach to therapeutically suppress MITF activity.

摘要

小眼畸形转录因子(MITF)调节黑素细胞的发育,是黑色素瘤的“谱系特异性存活”癌基因。MITF 对于黑色素瘤的起始、进展和复发至关重要,已被认为是一个重要的治疗靶点;然而,由于缺乏用于药物设计的配体结合口袋,通过小分子直接抑制 MITF 被认为是不可能的。在这里,我们的结构分析表明,由于其非对齐亮氨酸拉链带有 3 个残基插入,MITF 的结构是超动态的。动态 MITF 极易受到二聚体破坏突变的影响,因为我们观察到人类沃登伯格综合征 2A 型的 MITF 功能丧失突变经常位于二聚体界面上,并相应地破坏二聚体形成能力。这些观察结果表明,有一种独特的机会可以使用能够破坏 MITF 二聚体的小分子来抑制 MITF。通过对 654650 种化合物进行高通量筛选,我们发现了一种名为 TT-012 的化合物,它可以特异性结合动态 MITF,并破坏后者的二聚体形成和 DNA 结合能力。通过染色质免疫沉淀测定和 RNA 测序,我们表明 TT-012 抑制了 B16F10 黑色素瘤细胞中 MITF 的转录活性。此外,TT-012 抑制高 MITF 黑色素瘤细胞的生长,并在动物模型中以可耐受的肝毒性和免疫细胞毒性抑制肿瘤生长和转移。总之,这项研究证明了黑色素瘤癌蛋白 MITF 中存在独特的超动态二聚体界面,并揭示了一种抑制 MITF 活性的新方法。

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