bioRxiv Science⌕ Search

Biology subjects

Astuti, G.

Publications and source records attributed to Astuti, G..

2 recordsLinked to original sources

Excessive activation of the RAS/MAPK pathway triggers adult-onset motor axonal degeneration

Axonal and synaptic degeneration are key hallmarks of neurodegenerative diseases, but the underlying molecular mechanisms are incompletely understood. Here, we performed an unbiased forward genetic mosaic screen to identify genes required for maintenance of adult motor axons and neuromuscular junctions (NMJs) in the Drosophila leg. We identified 49 mutations in 30 genes, including mutations in 8 genes resulting in adult-onset progressive degeneration. We found that loss of pebbled (peb) function results in adult-onset motor axonal and NMJ degeneration, and age-dependent motor deficits. Peb is the Drosophila RREB1 ortholog, a C2H2 zinc-finger transcription factor that negatively regulates transcription of RAS/MAPK pathway target genes. Loss of peb function resulted in excessive RAS/MAPK pathway activation, and loss of function of other negative regulators of the RAS/MAPK pathway also induced adult-onset progressive NMJ degeneration and motor deficits. Importantly, treatment of adult flies with the MEK1/2 inhibitor mirdametinib induced a dosage-dependent rescue of peb mutant motor neurodegenerative phenotypes. Thus, RAS/MAPK pathway overactivation results in adult-onset progressive neurodegeneration, which can be prevented by RAS/MAPK pathway inhibition.

neuroscience↗

A de novo paradigm for male infertility

IntroductionDe novo mutations (DNMs) are known to play a prominent role in sporadic disorders with reduced fitness1. We hypothesize that DNMs play an important role in male infertility and explain a significant fraction of the genetic causes of this understudied disorder. To test this hypothesis, we performed trio-based exome-sequencing in a unique cohort of 185 infertile males and their unaffected parents. Following a systematic analysis, 29 of 145 rare protein altering DNMs were classified as possibly causative of the male infertility phenotype. We observed a significant enrichment of Loss-of-Function (LoF) DNMs in LoF-intolerant genes (p-value=1.00x10-5) as well as predicted pathogenic missense DNMs in missense-intolerant genes (p-value=5.01x10-4). One DNM gene identified, RBM5, is an essential regulator of male germ cell pre-mRNA splicing2. In a follow-up study, 5 rare pathogenic missense mutations affecting this gene were observed in a cohort of 2,279 infertile patients, with no such mutations found in a cohort of 5,784 fertile men (p-value=0.009). Our results provide the first evidence for the role of DNMs in severe male infertility and point to many new candidate genes affecting fertility.

genetics↗