Martynoside rescues 5-fluorouracil-impaired ribosome biogenesis by stabilizing RPL27A

核糖体生物发生 核糖体 核糖体蛋白 生物 细胞生物学 核糖体RNA 蛋白质生物合成 RNA结合蛋白 信使核糖核酸 核糖核酸 分子生物学 遗传学 基因
作者
Mengying Hong,Yushen Du,Dongdong Chen,Yuan Shi,Menglong Hu,Kejun Tang,Zhuping Hong,Xiangzhi Meng,Wan Xu,Gaoqi Wu,Yuanyuan Yao,Liubo Chen,Wenteng Chen,Chit Ying Lau,Sheng Li,Tianhao Zhang,Haigen Huang,Zheyu Fang,Yong Shen,Fangfang Sun
出处
期刊:Science Bulletin [Elsevier BV]
卷期号:68 (15): 1662-1677 被引量:15
标识
DOI:10.1016/j.scib.2023.07.018
摘要

Martynoside (MAR), a bioactive component in several well-known tonic traditional Chinese herbs, exhibits pro-hematopoietic activity during 5-fluorouracil (5-FU) treatment. However, the molecular target and the mechanism of MAR are poorly understood. Here, by adopting the mRNA display with a library of even-distribution (md-LED) method, we systematically examined MAR-protein interactions in vitro and identified the ribosomal protein L27a (RPL27A) as a key cellular target of MAR. Structural and mutational analysis confirmed the specific interaction between MAR and the exon 4,5-encoded region of RPL27A. MAR attenuated 5-FU-induced cytotoxicity in bone marrow nucleated cells, increased RPL27A protein stability, and reduced the ubiquitination of RPL27A at lys92 (K92) and lys94 (K94). Disruption of MAR binding at key residues of RPL27A completely abolished the MAR-induced stabilization. Furthermore, by integrating label-free quantitative ubiquitination proteomics, transcriptomics, and ribosome function assays, we revealed that MAR restored RPL27A protein levels and thus rescued ribosome biogenesis impaired by 5-FU. Specifically, MAR increased mature ribosomal RNA (rRNA) abundance, prevented ribosomal protein degradation, facilitated ribosome assembly, and maintained nucleolar integrity. Collectively, our findings characterize the target of a component of Chinese medicine, reveal the importance of ribosome biogenesis in hematopoiesis, and open up a new direction for improving hematopoiesis by targeting RPL27A.
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