Department of Tumor Biology, H. Lee Moffitt Cancer Center and Research Institute, Tampa, Florida.
Department of Bioinformatics and Biostatistics, H. Lee Moffitt Cancer Center and Research Institute, Tampa, Florida.
Blood Cancer Discov. 2023 Jul 5;4(4):294-317. doi: 10.1158/2643-3230.BCD-22-0162.
The MYC oncoprotein is activated in a broad spectrum of human malignancies and transcriptionally reprograms the genome to drive cancer cell growth. Given this, it is unclear if targeting a single effector of MYC will have therapeutic benefit. MYC activates the polyamine-hypusine circuit, which posttranslationally modifies the eukaryotic translation factor eIF5A. The roles of this circuit in cancer are unclear. Here we report essential intrinsic roles for hypusinated eIF5A in the development and maintenance of MYC-driven lymphoma, where the loss of eIF5A hypusination abolishes malignant transformation of MYC-overexpressing B cells. Mechanistically, integrating RNA sequencing, ribosome sequencing, and proteomic analyses revealed that efficient translation of select targets is dependent upon eIF5A hypusination, including regulators of G1-S phase cell-cycle progression and DNA replication. This circuit thus controls MYC's proliferative response, and it is also activated across multiple malignancies. These findings suggest the hypusine circuit as a therapeutic target for several human tumor types.
Elevated EIF5A and the polyamine-hypusine circuit are manifest in many malignancies, including MYC-driven tumors, and eIF5A hypusination is necessary for MYC proliferative signaling. Not-ably, this circuit controls an oncogenic translational program essential for the development and maintenance of MYC-driven lymphoma, supporting this axis as a target for cancer prevention and treatment. See related commentary by Wilson and Klein, p. 248. This article is highlighted in the In This Issue feature, p. 247.
MYC 癌蛋白在广泛的人类恶性肿瘤中被激活,并对基因组进行转录重编程以驱动癌细胞生长。鉴于此,尚不清楚针对 MYC 的单一效应子是否具有治疗益处。MYC 激活聚胺-假尿嘧啶环,该环对真核翻译因子 eIF5A 进行翻译后修饰。该环在癌症中的作用尚不清楚。在这里,我们报告了假尿嘧啶化 eIF5A 在 MYC 驱动的淋巴瘤发生和维持中的基本内在作用,其中 eIF5A 假尿嘧啶化的缺失会消除 MYC 过表达 B 细胞的恶性转化。从机制上讲,整合 RNA 测序、核糖体测序和蛋白质组学分析表明,包括 G1-S 期细胞周期进程和 DNA 复制调节剂在内的特定靶标高效翻译依赖于 eIF5A 假尿嘧啶化。因此,该电路控制着 MYC 的增殖反应,并且在多种恶性肿瘤中也被激活。这些发现表明假尿嘧啶电路是几种人类肿瘤类型的治疗靶点。
EIF5A 和多胺-假尿嘧啶环在许多恶性肿瘤中升高,包括 MYC 驱动的肿瘤,并且 eIF5A 假尿嘧啶化是 MYC 增殖信号所必需的。值得注意的是,该电路控制着 MYC 驱动的淋巴瘤发生和维持所必需的致癌翻译程序,支持该轴作为癌症预防和治疗的靶点。见相关评论由威尔逊和克莱因,第 248 页。本文在本期特色文章中突出显示,第 247 页。