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.
Abstract:
Protein phosphatase 1 regulatory subunit 35 (PPP1R35) encodes a centrosomal protein required for recruiting microtubule-binding elongation machinery. Several proteins in this centriole biogenesis pathway correspond to established primary microcephaly (MCPH) genes, and multiple model organism studies hypothesize PPP1R35 as a candidate MCPH gene. Here, using exome sequencing (ES) and family-based rare variant analyses, we report a homozygous, frameshifting indel deleting the canonical stop codon in the last exon of PPP1R35 [Chr7: c.753_*3delGGAAGCGTAGACCinsCG (p.Trp251Cysfs*22)]; the variant allele maps in a 3.7 Mb block of absence of heterozygosity (AOH) in a proband with severe MCPH (-4.3 SD at birth, -6.1 SD by 42 months), pachygyria, and global developmental delay from a consanguineous Turkish kindred. Droplet digital PCR (ddPCR) confirmed mutant mRNA expression in fibroblasts. In silico prediction of the translation of mutant PPP1R35 is expected to be elongated by 18 amino acids before encountering a downstream stop codon. This complex indel allele is absent in public databases (ClinVar, gnomAD, ARIC, 1000 genomes) and our in-house database of 14,000+ exomes including 1800+ Turkish exomes supporting predicted pathogenicity. Comprehensive literature searches for PPP1R35 variants yielded two probands affected with severe microcephaly (-15 SD and -12 SD) with the same homozygous indel from a single, consanguineous, Iranian family from a cohort of 404 predominantly Iranian families. The lack of heterozygous cases in two large cohorts representative of the genetic background of these two families decreased our suspicion of a founder allele and supports the contention of a recurrent mutation. We propose two potential secondary structure mutagenesis models for the origin of this variant allele mediated by hairpin formation between complementary GC rich segments flanking the stop codon via secondary structure mutagenesis.
Related Concept Videos
Point and Frameshift Mutations
Genomic Imprinting and Inheritance
The expression of some genes depends on which parent passed the gene to the offspring, through a phenomenon known as...
Alternative RNA Splicing
There are five types of alternative RNA splicing that vary in the ways the pre-mRNA segments are removed or retained in the mature mRNA. The first...


