Erkizan Hayriye Verda, Schneider Jeffrey A, Sajwan Kamal, Graham Garrett T, Griffin Brittany, Chasovskikh Sergey, Youbi Sarah E, Kallarakal Abraham, Chruszcz Maksymilian, Padmanabhan Radhakrishnan, Casey John L, Üren Aykut, Toretsky Jeffrey A
Department of Oncology, Lombardi Comprehensive Cancer Center, Georgetown University, 3970 Reservoir Road NW, New Research Building E316, Washington, DC 20007, USA
Department of Oncology, Lombardi Comprehensive Cancer Center, Georgetown University, 3970 Reservoir Road NW, New Research Building E316, Washington, DC 20007, USA.
Nucleic Acids Res. 2015 Jan;43(2):1069-80. doi: 10.1093/nar/gku1328. Epub 2015 Jan 6.
RNA helicases impact RNA structure and metabolism from transcription through translation, in part through protein interactions with transcription factors. However, there is limited knowledge on the role of transcription factor influence upon helicase activity. RNA helicase A (RHA) is a DExH-box RNA helicase that plays multiple roles in cellular biology, some functions requiring its activity as a helicase while others as a protein scaffold. The oncogenic transcription factor EWS-FLI1 requires RHA to enable Ewing sarcoma (ES) oncogenesis and growth; a small molecule, YK-4-279 disrupts this complex in cells. Our current study investigates the effect of EWS-FLI1 upon RHA helicase activity. We found that EWS-FLI1 reduces RHA helicase activity in a dose-dependent manner without affecting intrinsic ATPase activity; however, the RHA kinetics indicated a complex model. Using separated enantiomers, only (S)-YK-4-279 reverses the EWS-FLI1 inhibition of RHA helicase activity. We report a novel RNA binding property of EWS-FLI1 leading us to discover that YK-4-279 inhibition of RHA binding to EWS-FLI1 altered the RNA binding profile of both proteins. We conclude that EWS-FLI1 modulates RHA helicase activity causing changes in overall transcriptome processing. These findings could lead to both enhanced understanding of oncogenesis and provide targets for therapy.
RNA解旋酶会影响从转录到翻译过程中的RNA结构和代谢,部分是通过与转录因子的蛋白质相互作用来实现的。然而,关于转录因子对解旋酶活性的影响作用,我们所知有限。RNA解旋酶A(RHA)是一种DExH盒RNA解旋酶,在细胞生物学中发挥多种作用,其某些功能需要其作为解旋酶的活性,而其他功能则需要其作为蛋白质支架。致癌转录因子EWS-FLI1需要RHA来促进尤因肉瘤(ES)的肿瘤发生和生长;一种小分子YK-4-279可在细胞中破坏这种复合物。我们目前的研究调查了EWS-FLI1对RHA解旋酶活性的影响。我们发现EWS-FLI1以剂量依赖的方式降低RHA解旋酶活性,而不影响其内在的ATP酶活性;然而,RHA的动力学表明这是一个复杂的模型。使用分离的对映体,只有(S)-YK-4-279能逆转EWS-FLI1对RHA解旋酶活性的抑制作用。我们报告了EWS-FLI1一种新的RNA结合特性,这使我们发现YK-4-279对RHA与EWS-FLI1结合的抑制改变了这两种蛋白质的RNA结合谱。我们得出结论,EWS-FLI1调节RHA解旋酶活性,导致整体转录组加工发生变化。这些发现可能会增进我们对肿瘤发生的理解,并为治疗提供靶点。