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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.
Abstract:
Reactive oxygen species (ROS) are signalling molecules whose study in intact organisms has been hampered by their potential toxicity. This has prevented a full understanding of their role in organismal processes such as development, aging and disease. In Caenorhabditis elegans, the development of the vulva is regulated by a signalling cascade that includes LET-60ras (homologue of mammalian Ras), MPK-1 (ERK1/2) and LIN-1 (an ETS transcription factor). We show that both mitochondrial and cytoplasmic ROS act on a gain-of-function (gf) mutant of the LET-60ras protein through a redox-sensitive cysteine (C118) previously identified in mammals. We show that the prooxidant paraquat as well as isp-1, nuo-6 and sod-2 mutants, which increase mitochondrial ROS, inhibit the activity of LET-60rasgf on vulval development. In contrast, the antioxidant NAC and loss of sod-1, both of which decrease cytoplasmic H202, enhance the activity of LET-60rasgf. CRISPR replacement of C118 with a non-oxidizable serine (C118S) stimulates LET-60rasgf activity, whereas replacement of C118 with aspartate (C118D), which mimics a strongly oxidised cysteine, inhibits LET-60rasgf. These data strongly suggest that C118 is oxidized by cytoplasmic H202 generated from dismutation of mitochondrial and/or cytoplasmic superoxide, and that this oxidation inhibits LET-60ras. This contrasts with results in cultured mammalian cells where it is mostly nitric oxide, which is not found in worms, that oxidizes C118 and activates Ras. Interestingly, PQ, NAC and the C118S mutation do not act on the phosphorylation of MPK-1, suggesting that oxidation of LET-60ras acts on an as yet uncharacterized MPK-1-independent pathway. We also show that elevated cytoplasmic superoxide promotes vulva formation independently of C118 of LET-60ras and downstream of LIN-1. Finally, we uncover a role for the NADPH oxidases (BLI-3 and DUOX-2) and their redox-sensitive activator CED-10rac in stimulating vulva development. Thus, there are at least three genetically separable pathways by which ROS regulates vulval development.
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.
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