PO.MCB07.01 · 分子与细胞生物学

FOXR2逆转MDM2介导但不逆转MDM4介导的p53抑制

FOXR2 reverses MDM2-mediated but not MDM4-mediated p53 repression

海报缩略图:FOXR2逆转MDM2介导但不逆转MDM4介导的p53抑制
编号 4778 展板 28 时间 4/21 09:00–12:00 区域 Section 24 主讲 Wei-Hsiung Yang, PhD
分会场 Oncogenic Transcription Factors and Cancer Programs
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作者与单位 Authors & Affiliations

Wei-Hsiung Yang1, Anmol P. Patel2, William H. Yang3

1Biomedical SCiences, Mercer University School of Medicine, Savannah, GA,2Mercer University School of Medicine, Savannah, GA,3Medical College of Georgia at Augusta University, Augusta, GA

摘要 Abstract

中文摘要
尽管治疗有所进展,癌症在21世纪仍是重大的健康挑战,死亡率约为11%至25%。肿瘤抑制因子p53是一种对癌症发生和预防至关重要的蛋白,受众多相互作用伙伴的调控。在我们此前未发表的研究结果中,我们发现FOXR2(一种受表观遗传调控的泛癌种致癌基因)能够调节p53活性。因此,在本研究中,我们扩展了探索,以考察FOXR2如何调控p53的转录激活。我们首先发现FOXR2在H1299(p53 NULL)细胞中以剂量依赖的方式增强p53转录激活。鉴于MDM2和MDM4(MDMX)是主要的p53负调控因子,我们随后检验FOXR2是否能够拮抗MDM2和MDM4介导的p53抑制。我们发现FOXR2以剂量依赖的方式逆转MDM2介导的p53转录激活。然而,FOXR2对MDM4介导的p53抑制影响极小或没有影响。此外,我们的数据提示FOXR2能够与p53结合。最后,我们发现FOXR2增强野生型(WT)p53的转录激活,但不增强G245S(热点突变)p53的转录激活。综上所述,我们的初步结果表明FOXR2是一种调控p53活性的新型蛋白,其可能通过p53-FOXR2相互作用参与MDM2竞争。本数据用以支持这一概念,即p53的活性受一个复杂且仍在不断扩展的相互作用网络所支配。
查看英文原文 English abstract
Despite advances in therapy, cancer remains a major health challenge in the 21st century, with mortality rate ranging from approximately 11% to 25%. The tumor suppressor p53, a protein critical for cancer development and prevention, is regulated by numerous interacting partners. In our previous unpublished findings, we identified that FOXR2 (an epigenetically regulated pan-cancer oncogene) is able to module p53 activity. Consequently, in the present investigation, we broaden our exploration to examine how FOXR2 regulates p53 transactivation. We first found that FOXR2 enhances p53 transactivation in a dose-dependent manner in H1299 (p53 NULL) cells. Given that MDM2 and MDM4 (MDMX) are major p53 negative regulators, we then tested whether FOXR2 could counteract MDM2- and MDM4-mediated p53 repression. We found that FOXR2 dose-dependently reverses MDM2-mediated p53 transactivation. However, FOXR2 has minimal or no effect on MDM4-mediated p53 repression. Moreover, our data suggests that FOXR2 is capable of binding to p53. Finally, we found that FOXR2 increases wild-type (WT) p53, but not G245S (hotspot mutation) p53, transactivation. Taken together, our preliminary results demonstrate that FOXR2 is a novel protein to regulate p53 activity likely involving MDM2 competition due to possible p53-FOXR2 interaction. This data is presented to substantiate the concept that p53's activity is governed by a complex and still-expanding network of interactions.
利益披露 Disclosure
W. Yang, None.. A. P. Patel, None.. W. H. Yang, None.

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