European Molecular Biology Laboratory, 71 Avenue des Martyrs, 38042, Grenoble, France.
European Molecular Biology Laboratory, Meyerhofstraße 1, 69117, Heidelberg, Germany.
EMBO J. 2024 Apr;43(7):1273-1300. doi: 10.1038/s44318-024-00058-9. Epub 2024 Mar 6.
MAGEA4 is a cancer-testis antigen primarily expressed in the testes but aberrantly overexpressed in several cancers. MAGEA4 interacts with the RING ubiquitin ligase RAD18 and activates trans-lesion DNA synthesis (TLS), potentially favouring tumour evolution. Here, we employed NMR and AlphaFold2 (AF) to elucidate the interaction mode between RAD18 and MAGEA4, and reveal that the RAD6-binding domain (R6BD) of RAD18 occupies a groove in the C-terminal winged-helix subdomain of MAGEA4. We found that MAGEA4 partially displaces RAD6 from the RAD18 R6BD and inhibits degradative RAD18 autoubiquitination, which could be countered by a competing peptide of the RAD18 R6BD. AlphaFold2 and cross-linking mass spectrometry (XL-MS) also revealed an evolutionary invariant intramolecular interaction between the catalytic RING and the DNA-binding SAP domains of RAD18, which is essential for PCNA mono-ubiquitination. Using interaction proteomics, we found that another Type-I MAGE, MAGE-C2, interacts with the RING ubiquitin ligase TRIM28 in a manner similar to the MAGEA4/RAD18 complex, suggesting that the MAGEA4 peptide-binding groove also serves as a ligase-binding cleft in other type-I MAGEs. Our data provide new insights into the mechanism and regulation of RAD18-mediated PCNA mono-ubiquitination.
MAGEA4 是一种主要在睾丸中表达的癌-睾丸抗原,但在几种癌症中异常过表达。MAGEA4 与 RING 泛素连接酶 RAD18 相互作用并激活跨损伤 DNA 合成(TLS),可能有利于肿瘤进化。在这里,我们使用 NMR 和 AlphaFold2(AF)阐明了 RAD18 和 MAGEA4 之间的相互作用模式,并揭示 RAD18 的 RAD6 结合域(R6BD)占据了 MAGEA4 C 末端翼状螺旋亚结构域中的一个凹槽。我们发现 MAGEA4 部分从 RAD18 R6BD 中置换 RAD6,并抑制 RAD18 自身泛素化的降解,这可以被 RAD18 R6BD 的竞争肽抵消。AlphaFold2 和交联质谱(XL-MS)还揭示了 RAD18 催化 RING 和 DNA 结合 SAP 结构域之间的进化不变的分子内相互作用,这对于 PCNA 单泛素化至关重要。使用相互作用蛋白质组学,我们发现另一种 I 型 MAGE,MAGE-C2,以类似于 MAGEA4/RAD18 复合物的方式与 RING 泛素连接酶 TRIM28 相互作用,表明 MAGEA4 肽结合槽也作为其他 I 型 MAGE 中的连接酶结合裂缝。我们的数据为 RAD18 介导的 PCNA 单泛素化的机制和调节提供了新的见解。