Allelic strengths of encephalopathy-associated <i>UBA5</i> variants correlate between in vivo and in vitro assays.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 38079206.
- Also identified by DOI 10.7554/eLife.89891 and PMC identifier 10712953.
- Licence recorded as CC0.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Protein UFMylation downstream of the E1 enzyme UBA5 plays essential roles in development and endoplasmic reticulum stress. Variants in the <i>UBA5</i> gene are associated with developmental and epileptic encephalopathy 44 (DEE44), an autosomal recessive disorder characterized by early-onset encephalopathy, movement abnormalities, global developmental delay, intellectual disability, and seizures. DEE44 is caused by at least 12 different missense variants described as loss of function (LoF), but the relationships between genotypes and molecular or clinical phenotypes remain to be established. We developed a humanized <i>UBA5</i> fly model and biochemical activity assays in order to describe in vivo and in vitro genotype-phenotype relationships across the <i>UBA5</i> allelic series. In vivo, we observed a broad spectrum of phenotypes in viability, developmental timing, lifespan, locomotor activity, and bang sensitivity. A range of functional effects was also observed in vitro across comprehensive biochemical assays for protein stability, ATP binding, UFM1 activation, and UFM1 transthiolation. Importantly, there is a strong correlation between in vivo and in vitro phenotypes, establishing a classification of LoF variants into mild, intermediate, and severe allelic strengths. By systemically evaluating <i>UBA5</i> variants across in vivo and in vitro platforms, this study provides a foundation for more basic and translational UBA5 research, as well as a basis for evaluating current and future individuals afflicted with this rare disease.
Medical subject headings
- Brain Diseases
- Intellectual Disability
- Movement Disorders
- Ubiquitin-Activating Enzymes