AI Article Synopsis

  • A mutation in the SNRPE gene, linked to pre-mRNA processing, has been identified in a patient with congenital microcephaly and intellectual disability.
  • This mutation disrupts the normal function of the SmE protein, preventing it from interacting with the SMN complex and forming U snRNPs, leading to significant mRNA splicing errors in patient-derived cells.
  • The study indicates that these splicing defects, particularly affecting the EMX2 mRNA crucial for brain development, may contribute to the neurological issues associated with microcephaly.

Article Abstract

Malfunction of pre-mRNA processing factors are linked to several human diseases including cancer and neurodegeneration. Here we report the identification of a de novo heterozygous missense mutation in the SNRPE gene (c.65T>C (p.Phe22Ser)) in a patient with non-syndromal primary (congenital) microcephaly and intellectual disability. SNRPE encodes SmE, a basal component of pre-mRNA processing U snRNPs. We show that the microcephaly-linked SmE variant is unable to interact with the SMN complex and as a consequence fails to assemble into U snRNPs. This results in widespread mRNA splicing alterations in fibroblast cells derived from this patient. Similar alterations were observed in HEK293 cells upon SmE depletion that could be rescued by the expression of wild type but not mutant SmE. Importantly, the depletion of SmE in zebrafish causes aberrant mRNA splicing alterations and reduced brain size, reminiscent of the patient microcephaly phenotype. We identify the EMX2 mRNA, which encodes a protein required for proper brain development, as a major mis-spliced down stream target. Together, our study links defects in the SNRPE gene to microcephaly and suggests that alterations of cellular splicing of specific mRNAs such as EMX2 results in the neurological phenotype of the disease.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6850558PMC
http://dx.doi.org/10.1371/journal.pgen.1008460DOI Listing

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