Zhang Kejia, Manning Aidan C, Lentini Jenna M, Howard Jonathan, Dalwigk Felix, Maroofian Reza, Efthymiou Stephanie, Chan Patricia, Eliseev Sergei I, Yang Zi, Chang Hayley, Karimiani Ehsan Ghayoor, Bakhshoodeh Behnoosh, Houlden Henry, Kaiser Stefanie M, Lowe Todd M, Fu Dragony
Department of Biology, Center for RNA Biology, University of Rochester, Rochester, NY, USA.
Department of Biomolecular Engineering, University of California, Santa Cruz, Santa Cruz, CA, USA.
Cell Rep. 2025 Jan 28;44(1):115092. doi: 10.1016/j.celrep.2024.115092. Epub 2025 Jan 8.
The tRNA methyltransferase 1 (TRMT1) enzyme catalyzes the N2,N2-dimethylguanosine (m2,2G) modification in tRNAs. Intriguingly, vertebrates encode an additional tRNA methyltransferase 1-like (TRMT1L) paralog. Here, we use a comprehensive tRNA sequencing approach to decipher targets of human TRMT1 and TRMT1L. We find that TRMT1 methylates all known tRNAs containing guanosine at position 26, while TRMT1L represents the elusive enzyme catalyzing m2,2G at position 27 in tyrosine tRNAs. Surprisingly, TRMT1L is also necessary for maintaining 3-(3-amino-3-carboxypropyl)uridine (acp3U) modifications in a subset of tRNAs through a process that can be uncoupled from methyltransferase activity. We also demonstrate that tyrosine and serine tRNAs are dependent upon m2,2G modifications for their stability and function in translation. Notably, human patient cells with disease-associated TRMT1 variants exhibit reduced levels of tyrosine and serine tRNAs. These findings uncover unexpected roles for TRMT1 paralogs, decipher functions for m2,2G modifications, and pinpoint tRNAs dysregulated in human disorders caused by tRNA modification deficiency.
tRNA 甲基转移酶 1(TRMT1)催化 tRNA 中的 N2,N2-二甲基鸟苷(m2,2G)修饰。有趣的是,脊椎动物编码了一种额外的 tRNA 甲基转移酶 1 样(TRMT1L)旁系同源物。在这里,我们使用全面的 tRNA 测序方法来解读人类 TRMT1 和 TRMT1L 的作用靶点。我们发现,TRMT1 使所有已知在第 26 位含有鸟苷的 tRNA 发生甲基化,而 TRMT1L 则是催化酪氨酸 tRNA 第 27 位 m2,2G 修饰的难以捉摸的酶。令人惊讶的是,TRMT1L 对于通过一个可与甲基转移酶活性解偶联的过程来维持一部分 tRNA 中的 3-(3-氨基-3-羧丙基)尿苷(acp3U)修饰也是必需的。我们还证明,酪氨酸和丝氨酸 tRNA 的稳定性和翻译功能依赖于 m2,2G 修饰。值得注意的是,携带与疾病相关的 TRMT1 变体的人类患者细胞中,酪氨酸和丝氨酸 tRNA 的水平降低。这些发现揭示了 TRMT1 旁系同源物的意外作用,解读了 m2,2G 修饰的功能,并确定了在由 tRNA 修饰缺陷引起的人类疾病中失调的 tRNA。