Reijnders, MRF, Seibt, A, Brugger, M et al. (25 more authors) (2023) De novo missense variants in RRAGC lead to a fatal mTORopathy of early childhood. Genetics in Medicine, 25 (7). 100838. ISSN 1098-3600
Abstract
Purpose: Mechanistic target of rapamycin (mTOR) complex 1 (mTORC1) regulates cell growth in response to nutritional status. Central to the mTORC1 function is the Rag-GTPase heterodimer. One component of the Rag heterodimer is RagC (Ras-related GTP-binding protein C), which is encoded by the RRAGC gene.
Methods: Genetic testing via trio exome sequencing was applied to identify the underlying disease cause in 3 infants with dilated cardiomyopathy, hepatopathy, and brain abnormalities, including pachygyria, polymicrogyria, and septo-optic dysplasia. Studies in patient-derived skin fibroblasts and in a HEK293 cell model were performed to investigate the cellular consequences.
Results: We identified 3 de novo missense variants in RRAGC (NM_022157.4: c.269C>A, p.(Thr90Asn), c.353C>T, p.(Pro118Leu), and c.343T>C, p.(Trp115Arg)), which were previously reported as occurring somatically in follicular lymphoma. Studies of patient-derived fibroblasts carrying the p.(Thr90Asn) variant revealed increased cell size, as well as dysregulation of mTOR-related p70S6K (ribosomal protein S6 kinase 1) and transcription factor EB signaling. Moreover, subcellular localization of mTOR was decoupled from metabolic state. We confirmed the key findings for all RRAGC variants described in this study in a HEK293 cell model.
Conclusion: The above results are in line with a constitutive overactivation of the mTORC1 pathway. Our study establishes de novo missense variants in RRAGC as cause of an early-onset mTORopathy with unfavorable prognosis.
Metadata
Item Type: | Article |
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Authors/Creators: |
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Copyright, Publisher and Additional Information: | © 2023 The Authors. Published by Elsevier Inc. on behalf of American College of Medical Genetics and Genomics. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/). |
Keywords: | mitochondrial, lysosome, heart, cardiomyopathy, cortical malformation, mTORopathy |
Dates: |
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Institution: | The University of Leeds |
Funding Information: | Funder Grant number UKRI (UK Research and Innovation) MR/T02044X/1 |
Depositing User: | Symplectic Publications |
Date Deposited: | 13 Apr 2023 09:31 |
Last Modified: | 25 Jun 2023 23:19 |
Status: | Published |
Publisher: | Elsevier |
Identification Number: | 10.1016/j.gim.2023.100838 |
Open Archives Initiative ID (OAI ID): | oai:eprints.whiterose.ac.uk:198140 |
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