Laboratorio de Interacciones Biomoleculares y cáncer. Instituto de Física Universidad Autónoma de San Luis Potosí, Av. Parque Chapultepec 1570, Privadas del pedregal, 78210, SLP, México.
Regional Centre for Applied Molecular Oncology, Masaryk Memorial Cancer Institute, Zluty kopec 7, 656 53 Brno, Czech Republic.
Biosci Rep. 2022 Jul 29;42(7). doi: 10.1042/BSR20220186.
HDMX and its homologue HDM2 are two essential proteins for the cell; after genotoxic stress, both are phosphorylated near to their RING domain, specifically at serine 403 and 395, respectively. Once phosphorylated, both can bind the p53 mRNA and enhance its translation; however, both recognize p53 protein and provoke its degradation under normal conditions. HDM2 has been well-recognized as an E3 ubiquitin ligase, whereas it has been reported that even with the high similarity between the RING domains of the two homologs, HDMX does not have the E3 ligase activity. Despite this, HDMX is needed for the proper p53 poly-ubiquitination. Phosphorylation at serine 395 changes the conformation of HDM2, helping to explain the switch in its activity, but no information on HDMX has been published. Here, we study the conformation of HDMX and its phospho-mimetic mutant S403D, investigate its E3 ligase activity and dissect its binding with p53. We show that phospho-mutation does not change the conformation of the protein, but HDMX is indeed an E3 ubiquitin ligase in vitro; however, in vivo, no activity was found. We speculated that HDMX is regulated by induced fit, being able to switch activity accordingly to the specific partner as p53 protein, p53 mRNA or HDM2. Our results aim to contribute to the elucidation of the contribution of the HDMX to p53 regulation.
HDMX 及其同源物 HDM2 是细胞中两种必需的蛋白质;在遗传毒性应激后,两者都在其 RING 结构域附近被磷酸化,分别在丝氨酸 403 和 395 处。一旦磷酸化,两者都可以结合 p53 mRNA 并增强其翻译;然而,两者都识别 p53 蛋白并在正常条件下引发其降解。HDM2 已被公认为 E3 泛素连接酶,而据报道,即使两个同源物的 RING 结构域具有高度相似性,HDMX 也没有 E3 连接酶活性。尽管如此,HDMX 对于 p53 的适当多泛素化是必需的。丝氨酸 395 的磷酸化改变了 HDM2 的构象,有助于解释其活性的转变,但尚未有关于 HDMX 的信息发表。在这里,我们研究了 HDMX 的构象及其磷酸模拟突变体 S403D,研究了其 E3 连接酶活性,并剖析了其与 p53 的结合。我们表明,磷酸化突变不会改变蛋白质的构象,但 HDMX 在体外确实是一种 E3 泛素连接酶;然而,在体内,没有发现活性。我们推测 HDMX 受到诱导契合的调节,能够根据特定的伴侣(如 p53 蛋白、p53 mRNA 或 HDM2)相应地切换活性。我们的结果旨在为阐明 HDMX 对 p53 调节的贡献做出贡献。