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SNUPN deficiency causes a recessive muscular dystrophy due to RNA mis-splicing and ECM dysregulation.


ABSTRACT: SNURPORTIN-1, encoded by SNUPN, plays a central role in the nuclear import of spliceosomal small nuclear ribonucleoproteins. However, its physiological function remains unexplored. In this study, we investigate 18 children from 15 unrelated families who present with atypical muscular dystrophy and neurological defects. Nine hypomorphic SNUPN biallelic variants, predominantly clustered in the last coding exon, are ascertained to segregate with the disease. We demonstrate that mutant SPN1 failed to oligomerize leading to cytoplasmic aggregation in patients' primary fibroblasts and CRISPR/Cas9-mediated mutant cell lines. Additionally, mutant nuclei exhibit defective spliceosomal maturation and breakdown of Cajal bodies. Transcriptome analyses reveal splicing and mRNA expression dysregulation, particularly in sarcolemmal components, causing disruption of cytoskeletal organization in mutant cells and patient muscle tissues. Our findings establish SNUPN deficiency as the genetic etiology of a previously unrecognized subtype of muscular dystrophy and provide robust evidence of the role of SPN1 for muscle homeostasis.

SUBMITTER: Nashabat M 

PROVIDER: S-EPMC10899626 | biostudies-literature | 2024 Feb

REPOSITORIES: biostudies-literature

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SNUPN deficiency causes a recessive muscular dystrophy due to RNA mis-splicing and ECM dysregulation.

Nashabat Marwan M   Nabavizadeh Nasrinsadat N   Saraçoğlu Hilal Pırıl HP   Sarıbaş Burak B   Avcı Şahin Ş   Börklü Esra E   Beillard Emmanuel E   Yılmaz Elanur E   Uygur Seyide Ecesu SE   Kayhan Cavit Kerem CK   Bosco Luca L   Eren Zeynep Bengi ZB   Steindl Katharina K   Richter Manuela Friederike MF   Bademci Guney G   Rauch Anita A   Fattahi Zohreh Z   Valentino Maria Lucia ML   Connolly Anne M AM   Bahr Angela A   Viola Laura L   Bergmann Anke Katharina AK   Rocha Maria Eugenia ME   Peart LeShon L   Castro-Rojas Derly Liseth DL   Bültmann Eva E   Khan Suliman S   Giarrana Miriam Liliana ML   Teleanu Raluca Ioana RI   Gonzalez Joanna Michelle JM   Pini Antonella A   Schädlich Ines Sophie IS   Vill Katharina K   Brugger Melanie M   Zuchner Stephan S   Pinto Andreia A   Donkervoort Sandra S   Bivona Stephanie Ann SA   Riza Anca A   Streata Ioana I   Gläser Dieter D   Baquero-Montoya Carolina C   Garcia-Restrepo Natalia N   Kotzaeridou Urania U   Brunet Theresa T   Epure Diana Anamaria DA   Bertoli-Avella Aida A   Kariminejad Ariana A   Tekin Mustafa M   von Hardenberg Sandra S   Bönnemann Carsten G CG   Stettner Georg M GM   Zanni Ginevra G   Kayserili Hülya H   Oflazer Zehra Piraye ZP   Escande-Beillard Nathalie N  

Nature communications 20240227 1


SNURPORTIN-1, encoded by SNUPN, plays a central role in the nuclear import of spliceosomal small nuclear ribonucleoproteins. However, its physiological function remains unexplored. In this study, we investigate 18 children from 15 unrelated families who present with atypical muscular dystrophy and neurological defects. Nine hypomorphic SNUPN biallelic variants, predominantly clustered in the last coding exon, are ascertained to segregate with the disease. We demonstrate that mutant SPN1 failed t  ...[more]

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