AI Article Synopsis

  • - Claudin-11 is a crucial protein for myelin formation, and researchers found new genetic variants in the CLDN11 gene in three people with neurological disorders, including movement and speech issues, and eye problems like hypermetropia.
  • - Brain MRIs revealed myelin deficits and differences in imaging results, hinting at some myelination progress differing in central and peripheral white matter.
  • - Genetic analysis showed specific stop-loss variants in CLDN11 that lead to a potentially altered version of the claudin-11 protein; this discovery adds to our understanding of rare genetic disorders affecting myelin development.

Article Abstract

Claudin-11, a tight junction protein, is indispensable in the formation of the radial component of myelin. Here, we report de novo stop-loss variants in the gene encoding claudin-11, CLDN11, in three unrelated individuals presenting with an early-onset spastic movement disorder, expressive speech disorder and eye abnormalities including hypermetropia. Brain MRI showed a myelin deficit with a discrepancy between T1-weighted and T2-weighted images and some progress in myelination especially involving the central and peripheral white matter. Exome sequencing identified heterozygous stop-loss variants c.622T>C, p.(*208Glnext*39) in two individuals and c.622T>G, p.(*208Gluext*39) in one individual, all occurring de novo. At the RNA level, the variant c.622T>C did not lead to a loss of expression in fibroblasts, indicating this transcript is not subject to nonsense-mediated decay and most likely translated into an extended protein. Extended claudin-11 is predicted to form an alpha helix not incorporated into the cytoplasmic membrane, possibly perturbing its interaction with intracellular proteins. Our observations suggest that stop-loss variants in CLDN11 expand the genetically heterogeneous spectrum of hypomyelinating leukodystrophies.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7940174PMC
http://dx.doi.org/10.1093/brain/awaa410DOI Listing

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