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B-cell immune deficiency in twin sisters expands the phenotype of MOPDI
Lucas W Gauthier1, Morgane Gossez2,3, Christophe Malcus3
1Department of Genetics, Clinical Genetics Unit, Centre de Référence Maladies Rares des Anomalies du Développement Sud-Est, Hospices Civils de Lyon, Université Claude Bernard Lyon 1, Bron, France.
Abstract:
Microcephalic osteodysplastic primordial dwarfism type I (MOPDI) is a very rare and severe autosomal recessive disorder characterized by marked intrauterine growth retardation, skeletal dysplasia, microcephaly and brain malformations. MOPDI is caused by biallelic mutations in RNU4ATAC, a non-coding gene involved in U12-type splicing of 1% of the introns in the genome, which are recognized by their specific splicing consensus sequences. Here, we describe a unique observation of immunodeficiency in twin sisters with mild MOPDI, who harbor a novel n.108_126del mutation, encompassing part of the U4atac snRNA 3' stem-loop and Sm protein binding site, and the previously reported n.111G>A mutation. Interestingly, both twin sisters show mild B-cell anomalies, including low naive B-cell counts and increased memory B-cell and plasmablasts counts, suggesting partial and transitory blockage of B-cell maturation and/or excessive activation of naive B-cells. Hence, the localization of a mutation in stem II of U4atac snRNA, as observed in another RNU4ATAC-opathy with immunodeficiency, that is, Roifman syndrome (RFMN), is not required for the occurrence of an immune deficiency. Finally, we emphasize the importance of considering immunodeficiency in MOPDI management to reduce the risk of serious infectious episodes.
Insights
Microcephalic osteodysplastic primordial dwarfism type I (MOPDI) can present with immunodeficiency. Novel RNU4ATAC mutations were identified in twins with mild MOPDI and B-cell anomalies, highlighting the need for immune monitoring.
Area of Science:
- Genetics
- Immunology
- Rare Diseases
Background:
- Microcephalic osteodysplastic primordial dwarfism type I (MOPDI) is a severe genetic disorder.
- It is caused by mutations in the RNU4ATAC gene, affecting RNA splicing.
- Immunodeficiency has not been commonly associated with MOPDI.
Purpose of the Study:
- To investigate a unique case of immunodeficiency in patients with MOPDI.
- To identify the genetic cause of MOPDI and associated immune anomalies.
- To understand the relationship between RNU4ATAC mutations and immune system function.
Main Methods:
- Genetic sequencing to identify mutations in RNU4ATAC.
- Analysis of B-cell populations in peripheral blood.
- Clinical assessment of MOPDI and immune status.
Main Results:
- Identified novel and previously reported mutations in RNU4ATAC in twin sisters with mild MOPDI.
- Observed mild B-cell anomalies, including altered naive, memory, and plasmablast counts.
- Demonstrated that mutations outside of stem II of U4atac snRNA can cause immunodeficiency.
Conclusions:
- Immunodeficiency should be considered in the management of MOPDI patients.
- RNU4ATAC mutations can lead to both MOPDI and immune system dysfunction.
- This finding expands the clinical spectrum of RNU4ATAC-related disorders and emphasizes the importance of immune monitoring in MOPDI.
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