ROS regulation of RAS and vulva development in Caenorhabditis elegans

Maximilian Kramer-Drauberg1, Ju-Ling Liu1, David Desjardins1

  • 1Department of Biology, McGill University, Montreal, Quebec, Canada.

Plos Genetics
|June 17, 2020
PubMed

Insights

Reactive oxygen species (ROS) regulate Caenorhabditis elegans vulval development by oxidizing a cysteine in LET-60 Ras. This oxidation inhibits LET-60 Ras activity through an MPK-1 independent pathway, revealing novel ROS signaling mechanisms.

Area of Science:

  • Cellular Biology
  • Developmental Biology
  • Biochemistry

Background:

  • Reactive oxygen species (ROS) are crucial signaling molecules, but their toxicity complicates in vivo studies.
  • Understanding ROS roles in development, aging, and disease requires studying them in intact organisms.
  • Vulval development in C. elegans is controlled by the LET-60 Ras/MPK-1/LIN-1 pathway.

Purpose of the Study:

  • To investigate the role and mechanism of ROS in regulating LET-60 Ras activity during Caenorhabditis elegans vulval development.
  • To identify the specific cysteine residue involved in ROS-mediated regulation of LET-60 Ras.
  • To elucidate the signaling pathways downstream of ROS-modified LET-60 Ras.

Main Methods:

  • Utilized Caenorhabditis elegans models with genetic mutations affecting ROS levels (paraquat, isp-1, nuo-6, sod-2, sod-1).
  • Employed CRISPR-Cas9 gene editing to introduce specific cysteine mutations (C118S, C118D) in LET-60 Ras.
  • Assessed vulval development, LET-60 Ras activity, and MPK-1 phosphorylation in response to ROS modulators and LET-60 Ras mutants.

Main Results:

  • Mitochondrial and cytoplasmic ROS inhibit LET-60 Ras gain-of-function (gf) activity via cysteine 118 (C118) oxidation.
  • CRISPR mutations C118S (non-oxidizable) and C118D (mimicking oxidation) altered LET-60 Rasgf activity, confirming C118's redox sensitivity.
  • ROS modulation of LET-60 Ras occurred independently of MPK-1 phosphorylation, suggesting a novel signaling route.
  • Elevated cytoplasmic superoxide and NADPH oxidases (BLI-3, DUOX-2) also influenced vulval development through distinct pathways.

Conclusions:

  • ROS, particularly cytoplasmic H2O2, oxidizes LET-60 Ras at C118, inhibiting its activity in vulval development.
  • This contrasts with mammalian cell findings where nitric oxide activates Ras via C118 oxidation.
  • ROS regulate vulval development through at least three distinct genetic pathways, including an MPK-1-independent LET-60 Ras oxidation mechanism.