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Jun二聚化蛋白2(JDP2)通过降低MDM2水平来增强p53的反式激活作用。

Jun Dimerization Protein 2 (JDP2) Increases p53 Transactivation by Decreasing MDM2.

作者信息

Price Kasey, Yang William H, Cardoso Leticia, Wang Chiung-Min, Yang Richard H, Yang Wei-Hsiung

机构信息

Department of Biomedical Sciences, School of Medicine, Mercer University, Savannah, GA 31404, USA.

出版信息

Cancers (Basel). 2024 Feb 29;16(5):1000. doi: 10.3390/cancers16051000.

Abstract

The AP-1 protein complex primarily consists of several proteins from the c-Fos, c-Jun, activating transcription factor (ATF), and Jun dimerization protein (JDP) families. JDP2 has been shown to interact with the cAMP response element (CRE) site present in many cis-elements of downstream target genes. JDP2 has also demonstrates important roles in cell-cycle regulation, cancer development and progression, inhibition of adipocyte differentiation, and the regulation of antibacterial immunity and bone homeostasis. JDP2 and ATF3 exhibit significant similarity in their C-terminal domains, sharing 60-65% identities. Previous studies have demonstrated that ATF3 is able to influence both the transcriptional activity and p53 stability via a p53-ATF3 interaction. While some studies have shown that JDP2 suppresses p53 transcriptional activity and in turn, p53 represses JDP2 promoter activity, the direct interaction between JDP2 and p53 and the regulatory role of JDP2 in p53 transactivation have not been explored. In the current study, we provide evidence, for the first time, that JDP2 interacts with p53 and regulates p53 transactivation. First, we demonstrated that JDP2 binds to p53 and the C-terminal domain of JDP2 is crucial for the interaction. Second, in p53-null H1299 cells, JDP2 shows a robust increase of p53 transactivation in the presence of p53 using p53 (14X)RE-Luc. Furthermore, JDP2 and ATF3 together additively enhance p53 transactivation in the presence of p53. While JDP2 can increase p53 transactivation in the presence of WT p53, JDP2 fails to enhance transactivation of hotspot mutant p53. Moreover, in CHX chase experiments, we showed that JDP2 slightly enhances p53 stability. Finally, our findings indicate that JDP2 has the ability to reverse MDM2-induced p53 repression, likely due to decreased levels of MDM2 by JDP2. In summary, our results provide evidence that JDP2 directly interacts with p53 and decreases MDM2 levels to enhance p53 transactivation, suggesting that JDP2 is a novel regulator of p53 and MDM2.

摘要

AP-1蛋白复合物主要由来自c-Fos、c-Jun、激活转录因子(ATF)和Jun二聚化蛋白(JDP)家族的几种蛋白质组成。JDP2已被证明可与存在于下游靶基因许多顺式元件中的cAMP反应元件(CRE)位点相互作用。JDP2在细胞周期调控、癌症发生和进展、抑制脂肪细胞分化以及抗菌免疫和骨稳态调节中也发挥着重要作用。JDP2和ATF3在其C末端结构域表现出显著相似性,同一性为60-65%。先前的研究表明,ATF3能够通过p53-ATF3相互作用影响转录活性和p53稳定性。虽然一些研究表明JDP2抑制p53转录活性,反过来p53抑制JDP2启动子活性,但JDP2与p53之间的直接相互作用以及JDP2在p53反式激活中的调节作用尚未得到探索。在本研究中,我们首次提供证据表明JDP2与p53相互作用并调节p53反式激活。首先,我们证明JDP2与p53结合,且JDP2的C末端结构域对这种相互作用至关重要。其次,在p53缺失的H1299细胞中,使用p53(14X)RE-Luc,JDP2在存在p53的情况下显示出p53反式激活的显著增加。此外,在存在p53的情况下,JDP2和ATF3共同加性增强p53反式激活。虽然JDP2在存在野生型p53的情况下可增加p53反式激活,但JDP2无法增强热点突变型p53的反式激活。此外,在CHX追踪实验中,我们表明JDP2略微增强p53稳定性。最后,我们的研究结果表明JDP2有能力逆转MDM2诱导的p53抑制,这可能是由于JDP2降低了MDM2的水平。总之,我们的结果提供证据表明JDP2直接与p53相互作用并降低MDM2水平以增强p53反式激活,表明JDP2是p53和MDM2的新型调节因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b7c/10930919/46514ad89db0/cancers-16-01000-g001.jpg

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