A biallelic frameshift indel in PPP1R35 as a cause of primary microcephaly

Moez Dawood1,2,3, Gulsen Akay1, Tadahiro Mitani1

  • 1Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, Texas, USA.

Insights

A novel homozygous mutation in the PPP1R35 gene causes severe primary microcephaly (MCPH). This finding identifies PPP1R35 as a crucial gene for brain development and MCPH pathogenesis.

Area of Science:

  • Genetics
  • Developmental Biology
  • Neuroscience

Background:

  • Protein phosphatase 1 regulatory subunit 35 (PPP1R35) is a centrosomal protein involved in microtubule machinery.
  • Several proteins in the centriole biogenesis pathway are linked to primary microcephaly (MCPH).
  • PPP1R35 is hypothesized as a candidate MCPH gene based on model organism studies.

Purpose of the Study:

  • To investigate the genetic basis of severe MCPH in a consanguineous Turkish family.
  • To identify variants in PPP1R35 associated with MCPH.
  • To explore the pathogenicity and recurrence of identified PPP1R35 variants.

Main Methods:

  • Exome sequencing (ES) and family-based rare variant analyses were performed.
  • A homozygous frameshifting indel in PPP1R35 was identified.
  • Droplet digital PCR (ddPCR) was used to confirm mutant mRNA expression.
  • In silico analysis predicted the effect of the mutation on protein translation.
  • Public databases and in-house exome data were queried for variant frequency.

Main Results:

  • A homozygous, frameshifting indel in PPP1R35 (c.753_*3delGGAAGCGTAGACCinsCG) was identified in a proband with severe MCPH, pachygyria, and global developmental delay.
  • The identified indel was absent in public databases and a large in-house Turkish exome cohort.
  • The same homozygous indel was found in two unrelated Iranian probands with severe microcephaly, suggesting a recurrent mutation.
  • In silico analysis predicted an 18-amino acid elongation of the PPP1R35 protein.

Conclusions:

  • The homozygous frameshifting indel in PPP1R35 causes severe MCPH.
  • This study establishes PPP1R35 as a novel MCPH-associated gene.
  • The recurrent nature of the mutation suggests potential secondary structure mutagenesis mechanisms.

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