Graduate Institute of Clinical Medical Sciences, College of Medicine, Chang-Gung University, Taoyuan 33302, Taiwan.
Department of Pediatric Surgery, Chang-Gung Memorial Hospital, Chiayi 61363, Taiwan.
Int J Mol Sci. 2022 Aug 4;23(15):8673. doi: 10.3390/ijms23158673.
The Kaposi's sarcoma-associated herpesvirus (KSHV)-encoded ORF50 protein is a potent transcriptional activator essential for triggering KSHV lytic reactivation. Despite extensive studies, little is known about whether ORF50 possesses the ability to repress gene expression or has an antagonistic action to cellular transcription factors. Previously, we demonstrated that human oncoprotein MDM2 can promote the degradation of ORF50 protein. Herein, we show that abundant ORF50 expression in cells can conversely downregulate MDM2 expression via repressing both the upstream (P1) and internal (P2) promoters of the MDM2 gene. Deletion analysis of the MDM2 P1 promoter revealed that there were two ORF50-dependent negative response elements located from -102 to -63 and from -39 to +1, which contain Sp1-binding sites. For the MDM2 P2 promoter, the ORF50-dependent negative response element was identified in the region from -110 to -25, which is coincident with the location of two known p53-binding sites. Importantly, we further demonstrated that overexpression of Sp1 or p53 in cells indeed upregulated MDM2 expression; however, coexpression with ORF50 protein remarkably reduced the Sp1- or p53-mediated MDM2 upregulation. Collectively, our findings propose a reciprocal negative regulation between ORF50 and MDM2 and uncover that ORF50 decreases MDM2 expression through repressing Sp1- and p53-mediated transactivation.
卡波氏肉瘤相关疱疹病毒(KSHV)编码的 ORF50 蛋白是一种有效的转录激活因子,对于触发 KSHV 裂解性再激活至关重要。尽管进行了广泛的研究,但对于 ORF50 是否具有抑制基因表达的能力或对细胞转录因子具有拮抗作用,人们知之甚少。之前,我们证明了人类癌蛋白 MDM2 可以促进 ORF50 蛋白的降解。在此,我们表明,细胞中大量的 ORF50 表达可以通过抑制 MDM2 基因的上游(P1)和内部(P2)启动子来反向下调 MDM2 表达。MDM2 P1 启动子的缺失分析表明,有两个 ORF50 依赖性负反应元件位于-102 到-63 和-39 到+1,包含 Sp1 结合位点。对于 MDM2 P2 启动子,ORF50 依赖性负反应元件位于-110 到-25 区域,与两个已知的 p53 结合位点的位置重合。重要的是,我们进一步证明,细胞中 Sp1 或 p53 的过表达确实上调了 MDM2 的表达;然而,与 ORF50 蛋白共表达显著降低了 Sp1 或 p53 介导的 MDM2 上调。总之,我们的研究结果表明 ORF50 和 MDM2 之间存在相互负调控,并揭示了 ORF50 通过抑制 Sp1 和 p53 介导的反式激活来降低 MDM2 表达。