Multiplex Consanguineous Family Highlights CLASP1 as a Candidate Gene for Lissencephaly
Rawan Alsafh1, Amal Alhashem1, Aly Elsyed1
1From the Division of Pediatric Neurology (R.A., K.H., B.T.); Division of Genetics (A.A.), Department of Pediatrics, Prince Sultan Military Medical City, Riyadh, Kingdom of Saudi Arabia; Department of Pediatrics (A.E.), King Fahad Military Medical Complex, Dhahran, Saudi Arabia; Bioscientia Human Genetics (Z.Y.), Bioscientia Institut für Medizinische Diagnostik GmbH, Ingelheim, Germany; Department of Radiology (K.G.-T.), Sahloul University Hospital, Sousse; and Department of Pediatrics (F.T.), Fattouma Bourguiba University Hospital, Monastir, Tunisia.
Background And Objectives:
Noncentrosomal microtubules are essential cytoskeletal filaments that are important for neurite formation, axonal transport, and neuronal migration. They require stabilization by microtubule minus-end-targeting proteins including the CLASP family of molecules. To date, no human monogenic disorder has been associated with the CLASP1 gene. In this study, we aimed to delineate the clinical and neuroradiologic phenotype associated with biallelic CLASP1 variants.
Methods:
We analyzed clinical characteristics, MRI data, and genotypes of a cohort of 3 patients with homozygous variants in CLASP1.
Results:
Homozygous CLASP1 variant is associated with primary microcephaly, severe neurodevelopmental delay, and early-onset refractory epilepsy. The neuroradiologic phenotype comprises a highly recognizable combination of classic lissencephaly, with the posterior gradient more severe than the anterior gradient, a thin/hypoplastic splenium of the corpus callosum, mild enlargement of the lateral ventricles primarily posteriorly with a squared pattern, and pontine hypoplasia.
Discussion:
This study underscores the role of CLASP1 in brain development and suggests that the identified variant disrupts CLASP1 interaction with the microtubule cytoskeleton, contributing to lissencephaly pathogenesis.
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