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Detection of Small GTPase Prenylation and GTP Binding Using Membrane Fractionation and GTPase-linked Immunosorbent Assay
Published on: November 11, 2018
Molecules linked to Ras signaling as therapeutic targets in cardiac pathologies
Manuel Ramos-Kuri1,2,3, Sri Harika Meka4, Fabio Salamanca-Buentello5
1Instituto Nacional de Cancerología, Unidad de Investigación Biomédica en Cáncer, Secretarìa de Salud/Instituto de Investigaciones Biomédicas, Universidad Nacional Autónoma de México, Mexico City, México.
Abstract:
The Ras family of small Guanosine Triphosphate (GTP)-binding proteins (G proteins) represents one of the main components of intracellular signal transduction required for normal cardiac growth, but is also critically involved in the development of cardiac hypertrophy and heart failure. The present review provides an update on the role of the H-, K- and N-Ras genes and their related pathways in cardiac diseases. We focus on cardiac hypertrophy and heart failure, where Ras has been studied the most. We also review other cardiac diseases, like genetic disorders related to Ras. The scope of the review extends from fundamental concepts to therapeutic applications. Although the three Ras genes have a nearly identical primary structure, there are important functional differences between them: H-Ras mainly regulates cardiomyocyte size, whereas K-Ras regulates cardiomyocyte proliferation. N-Ras is the least studied in cardiac cells and is less associated to cardiac defects. Clinically, oncogenic H-Ras causes Costello syndrome and facio-cutaneous-skeletal syndromes with hypertrophic cardiomyopathy and arrhythmias. On the other hand, oncogenic K-Ras and alterations of other genes of the Ras-Mitogen-Activated Protein Kinase (MAPK) pathway, like Raf, cause Noonan syndrome and cardio-facio-cutaneous syndromes characterized by cardiac hypertrophy and septal defects. We further review the modulation by Ras of key signaling pathways in the cardiomyocyte, including: (i) the classical Ras-Raf-MAPK pathway, which leads to a more physiological form of cardiac hypertrophy; as well as other pathways associated with pathological cardiac hypertrophy, like (ii) The SAPK (stress activated protein kinase) pathways p38 and JNK; and (iii) The alternative pathway Raf-Calcineurin-Nuclear Factor of Activated T cells (NFAT). Genetic alterations of Ras isoforms or of genes in the Ras-MAPK pathway result in Ras-opathies, conditions frequently associated with cardiac hypertrophy or septal defects among other cardiac diseases. Several studies underline the potential role of H- and K-Ras as a hinge between physiological and pathological cardiac hypertrophy, and as potential therapeutic targets in cardiac hypertrophy and failure.
Insights
Ras proteins are key in heart growth and disease. This review details H-, K-, and N-Ras roles in cardiac hypertrophy and heart failure, highlighting therapeutic potential.
Area of Science:
- Cardiovascular Biology
- Molecular Signaling
- Genetics
Background:
- Ras proteins (Guanosine Triphosphate-binding proteins) are crucial for intracellular signal transduction in cardiac cells.
- Dysregulation of Ras signaling is implicated in cardiac hypertrophy and heart failure.
- This review focuses on H-, K-, and N-Ras genes and their pathways in cardiac diseases.
Purpose of the Study:
- To provide an updated review on the role of Ras genes and their pathways in cardiac diseases, particularly cardiac hypertrophy and heart failure.
- To explore the fundamental concepts and therapeutic applications related to Ras in cardiology.
- To differentiate the specific roles of H-Ras, K-Ras, and N-Ras in cardiac function and disease.
Main Methods:
- Literature review of studies on Ras genes and cardiac diseases.
- Analysis of signaling pathways modulated by Ras in cardiomyocytes.
- Examination of clinical manifestations and genetic disorders associated with Ras mutations (Ras-opathies).
Main Results:
- H-Ras primarily regulates cardiomyocyte size, while K-Ras influences cardiomyocyte proliferation.
- N-Ras has a less defined role in cardiac cells compared to H- and K-Ras.
- Mutations in Ras genes and related pathways (e.g., MAPK) cause Ras-opathies, often presenting with cardiac hypertrophy and septal defects.
Conclusions:
- Ras proteins act as a critical link between physiological and pathological cardiac hypertrophy.
- Specific Ras isoforms (H-Ras, K-Ras) and their associated pathways are potential therapeutic targets for cardiac hypertrophy and heart failure.
- Understanding Ras signaling is vital for managing cardiac diseases and genetic syndromes affecting the heart.
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