Structural basis for substrate recognition and chemical inhibition of oncogenic MAGE ubiquitin ligases

被引:0
作者
Seung Wook Yang
Xin Huang
Wenwei Lin
Jaeki Min
Darcie J. Miller
Anand Mayasundari
Patrick Rodrigues
Elizabeth C. Griffith
Clifford T. Gee
Lei Li
Wei Li
Richard E. Lee
Zoran Rankovic
Taosheng Chen
Patrick Ryan Potts
机构
[1] St. Jude Children’s Research Hospital,Department of Cell and Molecular Biology
[2] St. Jude Children’s Research Hospital,Department of Chemical Biology and Therapeutics
[3] St. Jude Children’s Research Hospital,Department of Structural Biology
[4] St. Jude Children’s Research Hospital,Hartwell Center for Bioinformatics and Biotechnology
[5] University of California Irvine,Division of Computational Biomedicine, Department of Biological Chemistry, School of Medicine
来源
Nature Communications | / 11卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Testis-restricted melanoma antigen (MAGE) proteins are frequently hijacked in cancer and play a critical role in tumorigenesis. MAGEs assemble with E3 ubiquitin ligases and function as substrate adaptors that direct the ubiquitination of novel targets, including key tumor suppressors. However, how MAGEs recognize their targets is unknown and has impeded the development of MAGE-directed therapeutics. Here, we report the structural basis for substrate recognition by MAGE ubiquitin ligases. Biochemical analysis of the degron motif recognized by MAGE-A11 and the crystal structure of MAGE-A11 bound to the PCF11 substrate uncovered a conserved substrate binding cleft (SBC) in MAGEs. Mutation of the SBC disrupted substrate recognition by MAGEs and blocked MAGE-A11 oncogenic activity. A chemical screen for inhibitors of MAGE-A11:substrate interaction identified 4-Aminoquinolines as potent inhibitors of MAGE-A11 that show selective cytotoxicity. These findings provide important insights into the large family of MAGE ubiquitin ligases and identify approaches for developing cancer-specific therapeutics.
引用
收藏
相关论文
共 81 条
[1]  
Weon JL(2015)The MAGE protein family and cancer Curr. Opin. Cell Biol. 37 1-8
[2]  
Potts PR(2017)A comprehensive guide to the MAGE family of ubiquitin ligases J. Mol. Biol. 429 1114-1142
[3]  
Lee AK(2019)MAGE cancer-testis antigens protect the mammalian germline under environmental stress Sci. Adv. 5 eaav4832-2190
[4]  
Potts PR(2017)Cellular and disease functions of the Prader-Willi Syndrome gene MAGEL2 Biochem. J. 474 2177-728
[5]  
Fon Tacer K(2015)Degradation of AMPK by a cancer-specific ubiquitin ligase Cell 160 715-625
[6]  
Tacer KF(2005)Cancer/testis antigens, gametogenesis and cancer Nat. Rev. Cancer 5 615-712
[7]  
Potts PR(2002)The MAGE proteins: emerging roles in cell cycle progression, apoptosis, and neurogenetic disease J. Neurosci. Res. 67 705-974
[8]  
Pineda CT(2010)MAGE-RING protein complexes comprise a family of E3 ubiquitin ligases Mol. Cell 39 963-275
[9]  
Simpson AJ(2016)Structures of two melanoma-associated antigens suggest allosteric regulation of effector binding PLoS ONE 11 e0148762-9962
[10]  
Caballero OL(2007)Select cancer testes antigens of the MAGE-A, -B, and -C families are expressed in mast cell lines and promote cell viability in vitro and in vivo J. Invest. Dermatol. 127 267-793