Ando Yushin, Kobo Akinao, Niwa Tatsuya, Yamakawa Ayako, Konoma Suzuna, Kobayashi Yuki, Nureki Osamu, Taguchi Hideki, Itoh Yuzuru, Chadani Yuhei
Department of Biological Sciences, Graduate School of Science, The University of Tokyo, Tokyo, Japan.
School of Life Science and Technology, Institute of Science Tokyo, Yokohama, Japan.
Nat Commun. 2025 Mar 8;16(1):2323. doi: 10.1038/s41467-025-57659-z.
Protein synthesis by ribosomes produces functional proteins but also serves diverse regulatory functions, which depend on the coding amino acid sequences. Certain nascent peptides interact with the ribosome exit tunnel to arrest translation and modulate themselves or the expression of downstream genes. However, a comprehensive understanding of the mechanisms of such ribosome stalling and its regulation remains elusive. In this study, we systematically screen for unidentified ribosome arrest peptides through phenotypic evaluation, proteomics, and mass spectrometry analyses, leading to the discovery of the arrest peptides PepNL and NanCL in E. coli. Our cryo-EM study on PepNL reveals a distinct arrest mechanism, in which the N-terminus of PepNL folds back towards the tunnel entrance to prevent the catalytic GGQ motif of the release factor from accessing the peptidyl transferase center, causing translation arrest at the UGA stop codon. Furthermore, unlike sensory arrest peptides that require an arrest inducer, PepNL uses tryptophan as an arrest inhibitor, where Trp-tRNA reads through the stop codon. Our findings illuminate the mechanism and regulatory framework of nascent peptide-induced translation arrest, paving the way for exploring regulatory nascent peptides.
核糖体进行的蛋白质合成不仅能产生功能性蛋白质,还具有多种依赖于编码氨基酸序列的调控功能。某些新生肽会与核糖体出口通道相互作用,从而阻止翻译并调节自身或下游基因的表达。然而,对于这种核糖体停滞及其调控机制的全面理解仍然难以捉摸。在本研究中,我们通过表型评估、蛋白质组学和质谱分析系统地筛选未被识别的核糖体停滞肽,从而在大肠杆菌中发现了停滞肽PepNL和NanCL。我们对PepNL的冷冻电镜研究揭示了一种独特的停滞机制,其中PepNL的N末端向通道入口折叠,以阻止释放因子的催化GGQ基序进入肽基转移酶中心,从而导致在UGA终止密码子处的翻译停滞。此外,与需要停滞诱导剂的感官停滞肽不同,PepNL使用色氨酸作为停滞抑制剂,其中色氨酸-tRNA能够通读终止密码子。我们的研究结果阐明了新生肽诱导的翻译停滞的机制和调控框架,为探索具有调控作用的新生肽铺平了道路。