Back to Search Start Over

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

Authors :
Zaizhou Liu
Kaige Chen
Jun Dai
Peng Xu
Wei Sun
Wanlin Liu
Zhixin Zhao
Steven P. Bennett
Peifeng Li
Tiancheng Ma
Yuqi Lin
Akinori Kawakami
Jing Yu
Fei Wang
Chunxi Wang
Miao Li
Peter Chase
Peter Hodder
Timothy P. Spicer
Louis Scampavia
Chunyang Cao
Lifeng Pan
Jiajia Dong
Yong Chen
Biao Yu
Min Guo
Pengfei Fang
David E. Fisher
Jing Wang
Source :
Cell Research. 33:55-70
Publication Year :
2023
Publisher :
Springer Science and Business Media LLC, 2023.

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.

Subjects

Subjects :
Cell Biology
Molecular Biology

Details

ISSN :
17487838
Volume :
33
Database :
OpenAIRE
Journal :
Cell Research
Accession number :
edsair.doi.dedup.....fb0bd9050d613a5ecf5eeeb8b79bb72a
Full Text :
https://doi.org/10.1038/s41422-022-00744-5