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Updated: Feb 10, 2026

In Vivo Functional Study of Disease-associated Rare Human Variants Using Drosophila
Published on: August 20, 2019
RAS signalling in energy metabolism and rare human diseases
L Dard1, N Bellance1, D Lacombe2
1Bordeaux University, 33000 Bordeaux, France; INSERM U1211, 33000 Bordeaux, France.
Abstract:
The RAS pathway is a highly conserved cascade of protein-protein interactions and phosphorylation that is at the heart of signalling networks that govern proliferation, differentiation and cell survival. Recent findings indicate that the RAS pathway plays a role in the regulation of energy metabolism via the control of mitochondrial form and function but little is known on the participation of this effect in RAS-related rare human genetic diseases. Germline mutations that hyperactivate the RAS pathway have been discovered and linked to human developmental disorders that are known as RASopathies. Individuals with RASopathies, which are estimated to affect approximately 1/1000 human birth, share many overlapping characteristics, including cardiac malformations, short stature, neurocognitive impairment, craniofacial dysmorphy, cutaneous, musculoskeletal, and ocular abnormalities, hypotonia and a predisposition to developing cancer. Since the identification of the first RASopathy, type 1 neurofibromatosis (NF1), which is caused by the inactivation of neurofibromin 1, several other syndromes have been associated with mutations in the core components of the RAS-MAPK pathway. These syndromes include Noonan syndrome (NS), Noonan syndrome with multiple lentigines (NSML), which was formerly called LEOPARD syndrome, Costello syndrome (CS), cardio-facio-cutaneous syndrome (CFC), Legius syndrome (LS) and capillary malformation-arteriovenous malformation syndrome (CM-AVM). Here, we review current knowledge about the bioenergetics of the RASopathies and discuss the molecular control of energy homeostasis and mitochondrial physiology by the RAS pathway.
Insights
RASopathies are rare genetic disorders caused by RAS pathway mutations. This review explores how the RAS pathway impacts energy metabolism and mitochondrial function in these conditions.
Area of Science:
- Cellular signaling
- Genetics
- Metabolism
Background:
- The RAS pathway regulates cell growth, survival, and differentiation.
- RASopathies are rare genetic disorders affecting ~1/1000 births, linked to RAS pathway hyperactivation.
- These syndromes share overlapping features including developmental and physical abnormalities.
Purpose of the Study:
- To review the role of the RAS pathway in energy metabolism and mitochondrial function.
- To discuss the bioenergetics of RASopathies and their underlying molecular mechanisms.
Main Methods:
- Literature review of RASopathies and RAS pathway signaling.
- Analysis of molecular mechanisms linking RAS pathway to mitochondrial physiology.
- Discussion of energy homeostasis in genetic disorders.
Main Results:
- The RAS pathway influences mitochondrial form and function, impacting energy metabolism.
- Germline RAS pathway mutations cause developmental disorders (RASopathies).
- RASopathies include NF1, Noonan syndrome, Costello syndrome, and others.
Conclusions:
- Understanding RAS pathway's role in bioenergetics is crucial for RASopathies.
- Further research into energy homeostasis in RASopathies may reveal therapeutic targets.
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