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Protein Degradome of Spinal Cord Injury: Biomarkers and Potential Therapeutic Targets

Articolo
Data di Pubblicazione:
2020
Abstract:
Degradomics is a proteomics sub-discipline whose goal is to identify and characterize protease-substrate repertoires. With the aim of deciphering and characterizing key signature breakdown products, degradomics emerged to define encryptic biomarker neoproteins specific to certain disease processes. Remarkable improvements in structural and analytical experimental methodologies as evident in research investigating cellular behavior in neuroscience and cancer have allowed the identification of specific degradomes, increasing our knowledge about proteases and their regulators and substrates along with their implications in health and disease. A physiologic balance between protein synthesis and degradation is sought with the activation of proteolytic enzymes such as calpains, caspases, cathepsins, and matrix metalloproteinases. Proteolysis is essential for development, growth, and regeneration; however, inappropriate and uncontrolled activation of the proteolytic system renders the diseased tissue susceptible to further neurotoxic processes. In this article, we aim to review the protease-substrate repertoires as well as emerging therapeutic interventions in spinal cord injury at the degradomic level. Several protease substrates and their breakdown products, essential for the neuronal structural integrity and functional capacity, have been characterized in neurotrauma including cytoskeletal proteins, neuronal extracellular matrix glycoproteins, cell junction proteins, and ion channels. Therefore, targeting exaggerated protease activity provides a potentially effective therapeutic approach in the management of protease-mediated neurotoxicity in reducing the extent of damage secondary to spinal cord injury.
Tipologia CRIS:
14.a.1 Articolo su rivista
Keywords:
Biomarkers; Breakdown; Degradomics; Protease; Spinal cord injury
Elenco autori:
Abou-El-Hassan, H.; Bsat, S.; Sukhon, F.; Assaf, E. J.; Mondello, S.; Kobeissy, F.; Wang, K. K. W.; Weiner, H. L.; Omeis, I.
Autori di Ateneo:
MONDELLO Stefania
Link alla scheda completa:
https://iris.unime.it/handle/11570/3190476
Pubblicato in:
MOLECULAR NEUROBIOLOGY
Journal
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