Structural framework for the assembly of the human tRNA ligase complex

In human cells, a subset of tRNA-encoding genes contain introns. These are removed by a spliceosome-independent pathway in which the tRNA splicing endonuclease complex catalyzes intron excision. The resulting exons are subsequently ligated by the tRNA-ligase complex (tRNA-LC), comprising Ashwin, CGI-99, FAM98B, DDX1, and RTCB/HSPC117. The molecular architecture and functions of its non-catalytic subunits remain poorly understood. Using cryo-EM, we determined an atomic-resolution structure of human tRNA-LC. CGI-99, DDX1, and FAM98B form an α-helical bundle that contacts RTCB opposite its active site and anchors DDX1 via its C-terminal helix. FAM98B and CGI-99 form an extensively co-folded heterodimer that clamps Ashwin in a pincer-like structure. Structure-based mutagenesis supports the architecture of the complex. We further show that FAM98A and FAM98C assemble distinct RTCB-containing complexes lacking Ashwin, suggesting specialized cellular functions. Our results provide insights into the molecular assembly of the tRNA ligase complex, highlighting its functions in tRNA biogenesis and beyond.

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Publication Details

Journal
Nature Communications
Published
2026-09-17
DOI
https://doi.org/10.1038/s41467-026-77450-y
Primary Topic
RNA modifications and cancer
Type
article
Field-Weighted Citation Impact
0.00

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article

Structural framework for the assembly of the human tRNA ligase complex

Martin Jínek, Moritz M. Pfleiderer, Alena Kroupova, Moshe Leitner et al.
Nature Communications
RNA modifications and cancer
article

Structural framework for the assembly of the human tRNA ligase complex

Martin Jínek, Moritz M. Pfleiderer, Alena Kroupova, Moshe Leitner, Javier Martı̂nez, Ajse S. Nievergelt, Franziska M. Boneberg
article en

Abstract

In human cells, a subset of tRNA-encoding genes contain introns. These are removed by a spliceosome-independent pathway in which the tRNA splicing endonuclease complex catalyzes intron excision. The resulting exons are subsequently ligated by the tRNA-ligase complex (tRNA-LC), comprising Ashwin, CGI-99, FAM98B, DDX1, and RTCB/HSPC117. The molecular architecture and functions of its non-catalytic subunits remain poorly understood. Using cryo-EM, we determined an atomic-resolution structure of human tRNA-LC. CGI-99, DDX1, and FAM98B form an α-helical bundle that contacts RTCB opposite its active site and anchors DDX1 via its C-terminal helix. FAM98B and CGI-99 form an extensively co-folded heterodimer that clamps Ashwin in a pincer-like structure. Structure-based mutagenesis supports the architecture of the complex. We further show that FAM98A and FAM98C assemble distinct RTCB-containing complexes lacking Ashwin, suggesting specialized cellular functions. Our results provide insights into the molecular assembly of the tRNA ligase complex, highlighting its functions in tRNA biogenesis and beyond.

Nature CommunicationsVol. 17(1)
University of Zurich (CH), Max Perutz Labs (AT), Zurich University of Teacher Education (CH), Vienna Biocenter (AT), Medical University of Vienna (AT)
National Science Foundation, Howard Hughes Medical Institute, Vallee Foundation, Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung, Eidgenössische Technische Hochschule Zürich, Universität Zürich, Functional Genomics Center Zurich
Openalex Percentile: Top 19%
RNA modifications and cancer
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