Functional studies in yeast confirm the pathogenicity of a new GINS3 Meier–Gorlin syndrome variant

Meier–Gorlin syndrome (MGORS) is an autosomal recessive disorder characterized by short stature, microtia, and patellar hypoplasia, and is caused by pathogenic variants of cellular factors involved in the initiation of DNA replication. We previously reported that biallelic variants in GINS3 leading...

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Veröffentlicht in:Clinical genetics 2024-09, Vol.106 (3), p.342-346
Hauptverfasser: Mehrjoo, Yosra, Campeau, Philippe M., Al Abdi, Lama, Aldowaish, Abdullah, Abouyousef, Omar, Alkuraya, Fowzan S., Codina‐Solà, Marta, Cueto‐González, Anna M., Wurtele, Hugo
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Sprache:eng
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Zusammenfassung:Meier–Gorlin syndrome (MGORS) is an autosomal recessive disorder characterized by short stature, microtia, and patellar hypoplasia, and is caused by pathogenic variants of cellular factors involved in the initiation of DNA replication. We previously reported that biallelic variants in GINS3 leading to amino acid changes at position 24 (p.Asp24) cause MGORS. Here, we describe the phenotype of a new individual homozygous for the Asp24Asn variant. We also report the clinical characteristics of an individual harboring a novel homozygous GINS3 variant (Ile25Phe) and features suggestive of MGORS. Modification of the corresponding residue in yeast Psf3 (Val9Phe) compromised S phase progression compared to a humanized Psf3 Val9Ile variant. Expression of Psf3 Val9Phe in yeast also caused sensitivity to elevated temperature and the replicative stress‐inducing drug hydroxyurea, confirming partial loss of function of this variant in vivo and allowing us to upgrade the classification of this variant. Taken together, these data validate the critical importance of the GINS DNA replication complex in the molecular etiology of MGORS. We describe the phenotypes of an individual expressing a new variant of the DNA replication protein GINS3 (Ile25Phe) and displaying features suggestive of Meier–Gorlin Syndrome. Modification of the corresponding residue in yeast Psf3 revealed partial loss of function of this variant in vivo, allowing us to upgrade its classification.
ISSN:0009-9163
1399-0004
1399-0004
DOI:10.1111/cge.14545