Evidence map›Paper›PMID 42045457›Full record

ArticleActa neuropathologica2026

A severe neurodevelopmental syndrome linked to a South Asian founder variant in the UFMylation adaptor CDK5RAP3.

Michaela Yuen, Katharine Zhang, Rhett G Marchant, Ryosuke Ishimura, Mark Graham, May Aung-Htut, Samantha Bryen, Rocio Rius, Lee Marshall, Nader Aryamanesh and 16 more

Abstract read
In one paragraph

Article in Acta neuropathologica, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

0numbers the graph read from it
0cells of the map it votes in
0citing papers in PubMed
–field-weighted citation impact
1 · What the graph read from it

What it found

Each row is one number read from the abstract, on the scale the paper reported it, with its interval. Left of the dashed line favours the treatment, right favours the comparator. Under each row is the sentence it came from. New to these charts? A ten-minute tutorial.

The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.

2 · The registry

The trial behind it

Trials whose registry record cites this paper, or whose number appears in the abstract. A trial that started after this paper was published is citing it as background, not reporting it.

Neither the registry nor the abstract names a trial number. If this is a trial report, that itself is worth knowing.

3 · Its place in the literature

Who cites it

0 citing papers in PubMed.

No citing paper in PubMed yet.

4 · The record

Corrections and comments

PubMed lists nothing against this paper. Absence here is not a guarantee, only a check that was made.

5 · Who and what money

Authors and funding

26 authors.

Michaela Yuen *Kids Neuroscience Centre, Kids Research, The Children's Hospital at Westmead, Westmead, NSW, 2145, Australia. myuen@cmri.org.au.
Katharine Zhang *Kids Neuroscience Centre, Kids Research, The Children's Hospital at Westmead, Westmead, NSW, 2145, Australia.
Rhett G MarchantKids Neuroscience Centre, Kids Research, The Children's Hospital at Westmead, Westmead, NSW, 2145, Australia.
Ryosuke IshimuraDepartment of Physiology, Juntendo University Graduate School of Medicine, Tokyo, 113-8421, Japan.
Mark GrahamChildren's Medical Research Institute, Faculty of Medicine and Health, The University of Sydney, Camperdown, NSW, 2006, Australia.
May Aung-HtutPersonalised Medicine Centre, Health Futures Institute, Murdoch University, Murdoch, WA, 6150, Australia.
Samantha BryenCentre for Population Genomics, Garvan Institute of Medical Research, UNSW Sydney, Darlinghurst, NSW, 2010, Australia.
Rocio RiusCentre for Population Genomics, Garvan Institute of Medical Research, UNSW Sydney, Darlinghurst, NSW, 2010, Australia.
Lee MarshallBioinformatics Group, Children's Medical Research Institute, Westmead, NSW, 2145, Australia.
Nader AryamaneshChildren's Medical Research Institute, Faculty of Medicine and Health, The University of Sydney, Camperdown, NSW, 2006, Australia.
Gregory DziaduchKids Neuroscience Centre, Kids Research, The Children's Hospital at Westmead, Westmead, NSW, 2145, Australia.
Himanshu JoshiKids Neuroscience Centre, Kids Research, The Children's Hospital at Westmead, Westmead, NSW, 2145, Australia.
Ben WeisburdBroad Institute at MIT and Harvard, Boston, MA, 02142, USA.
Steve D WiltonPersonalised Medicine Centre, Health Futures Institute, Murdoch University, Murdoch, WA, 6150, Australia.
Meredith WilsonNeuroscience, School of Medical Sciences, Faculty of Medicine and Health, The University of Sydney, Camperdown, NSW, 2006, Australia.
Russell GearMurdoch Children's Research Institute, Parkville, VIC, 3052, Australia.
Lucy HenningtonMercy Perinatal, Mercy Hospital for Women & Austin Health, Heidelberg, VIC, 3084, Australia.
Stephanie LauAnatomical Pathology Department, Austin Health, Melbourne, Heidelberg, VIC, 3084, Australia.
Helen DoyleDepartment of Histopathology, The Children's Hospital at Westmead, Westmead, NSW, 2145, Australia.
Michael KrivanekDepartment of Histopathology, The Children's Hospital at Westmead, Westmead, NSW, 2145, Australia.
Richard J LeventerMurdoch Children's Research Institute, Parkville, VIC, 3052, Australia.
Susan M WhiteDepartment of Paediatrics, University of Melbourne, Parkville, VIC, 3010, Australia.
Sarah A SandaraduraKids Neuroscience Centre, Kids Research, The Children's Hospital at Westmead, Westmead, NSW, 2145, Australia.
Masaaki KomatsuDepartment of Physiology, Juntendo University Graduate School of Medicine, Tokyo, 113-8421, Japan.
Frances J Evesson *Kids Neuroscience Centre, Kids Research, The Children's Hospital at Westmead, Westmead, NSW, 2145, Australia.
Sandra T Cooper *Kids Neuroscience Centre, Kids Research, The Children's Hospital at Westmead, Westmead, NSW, 2145, Australia.

Funding

Medical Research Future Fund MRF2016906Medical Research Future Fund Rapid Applied Research Translation Program and Genomics Health Futures Mission: MRF2015930, MRF2032931National Health and Medical Research Council GNT1121651National Health and Medical Research Council GNT2009982National Health and Medical Research Council NHMRC Investigator Grants GNT1116974, GNT2017952; NHMRC Research Grant GNT2002640
6 · The paper itself

Abstract

We investigated the pathogenicity of a homozygous intronic variant in CDK5RAP3, a key UFMylation adapter, in three individuals from two unrelated families with a lethal neurodevelopmental disorder. CDK5RAP3 variants have not been linked to human disorders to date; however, murine Cdk5rap3 knockout is embryonic lethal and variants in five other UFMylation components cause severe neurodevelopmental conditions. A segregating homozygous variant, chr17(GRCh38):g.47974691G > A, CDK5RAP3 NM_176096.3:c.334 + 243G > A, was identified by trio whole-genome and proband RNA sequencing in Family A and by trio whole-exome sequencing data reanalysis in Family B. Variant pathogenicity investigations included RT-PCR, Western blot, co-immunoprecipitation and (phospho)proteomics to assess transcript, protein and UFMylation complex effects. Antisense oligonucleotide-mediated rescue of CDK5RAP3 expression combined with proteomics and phosphoproteomics defined the mechanistic impact of CDK5RAP3 deficiency and rescue in amniocytes from an affected individual. All three affected individuals showed foetal growth restriction, foetal akinesia, pontocerebellar hypoplasia, arthrogryposis and hepatic pathology. CDK5RAP3 c.334 + 243G > A activates a cryptic donor splice-site causing pseudoexon/intron inclusion triggering nonsense-mediated decay and deficiency of full-length CDK5RAP3 (NP_788276.1), while potentially allowing retained expression of C-terminal alternative isoforms. Co-immunoprecipitation revealed only full-length CDK5RAP3 binds UFL1, whereas C-terminal isoforms cannot. Primary amniocytes showed CDK5RAP3 deficiency was associated with impaired UFMylation of known substrates, RPL26 and UFBP1. Proteomic and phosphoproteomic analyses revealed dysregulation of extracellular matrix organisation, cell adhesion, mitotic/genome stability pathways, cytoskeletal networks and neuronal guidance, which were reversed by restoration of canonical CDK5RAP3 expression via splice-correcting antisense oligonucleotides. Phosphoproteomic data implicate CDK5RAP3 as an upstream regulator of UFL1 S462 phosphorylation, known to be regulated by Ataxia-telangiectasia mutated (ATM) signalling. Our findings provide strong evidence linking deficiency of full-length CDK5RAP3 to severe neurodevelopmental, liver and muscle dysfunction. This study further highlights the therapeutic potential of ASO-based deep-intronic splicing defect correction.

Indexed as

Cell Cycle ProteinsIntracellular Signaling Peptides and ProteinsNeurodevelopmental DisordersFemaleHumansMalePedigreeCell Cycle ProteinsIntracellular Signaling Peptides and ProteinsCDK5RAP3Liver fibrosisNeurodevelopmental disorderPontocerebellar hypoplasia (PCH)Splice-switching antisense oligonucleotideSplicing variantUFMylation

Identifiers

PMID42045457
PMCPMC13121207

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.