AI Article Synopsis

  • - Nucleoporin (NUP) 85 is essential for various cellular processes, and mutations in its gene are linked to multiple human diseases, including steroid-resistant nephrotic syndrome (SRNS).
  • - Recent findings expand the range of disorders associated with NUP85 by identifying variants in individuals with primary autosomal recessive microcephaly (MCPH) and Seckel syndrome (SCKS), revealing a broader impact of NUP85 mutations.
  • - The study demonstrates that certain missense variants diminish cell viability in fibroblasts and may disrupt the structural integrity and interactions of NUP85, highlighting its importance in brain development and function.

Article Abstract

Nucleoporin (NUP) 85 is a member of the Y-complex of nuclear pore complex (NPC) that is key for nucleocytoplasmic transport function, regulation of mitosis, transcription, and chromatin organization. Mutations in various nucleoporin genes have been linked to several human diseases. Among them, NUP85 was linked to childhood-onset steroid-resistant nephrotic syndrome (SRNS) in four affected individuals with intellectual disability but no microcephaly. Recently, we broaden the phenotype spectrum of NUP85-associated disease by reporting variants in two unrelated individuals with primary autosomal recessive microcephaly (MCPH) and Seckel syndrome (SCKS) spectrum disorders (MCPH-SCKS) without SRNS. In this study, we report compound heterozygous variants in an index patient with only MCPH phenotype, but neither Seckel syndrome nor SRNS was reported. We showed that the identified missense variants cause reduced cell viability of patient-derived fibroblasts. Structural simulation analysis of double variants is predicted to alter the structure of NUP85 and its interactions with neighboring NUPs. Our study thereby further expands the phenotypic spectrum of NUP85-associated human disorder and emphasizes the crucial role of NUP85 in the brain development and function.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9947397PMC
http://dx.doi.org/10.3389/fneur.2023.1124886DOI Listing

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