AI Article Synopsis

  • The research focuses on Thymosin alpha 1 (Tα1), a thymic peptide known for restoring balance in various health conditions like infections, cancer, and aging, showcasing its multitasking abilities based on the host's immune state.
  • The study highlights the interaction between Tα1 and Galectin-1 (Gal-1), a protein involved in various biological functions, revealing how Tα1 inhibits Gal-1's activity related to cell migration and structure formation.
  • The findings provide new insights into the specific mechanisms of Tα1's action through its interaction with Gal-1, helping to explain its diverse effects on health and disease.

Article Abstract

The study of mechanism of action of Thymosin alpha 1 (Tα1) and the basis of the pleiotropic effect in health and disease, is one of the main focus of our ongoing research. Tα1 is a thymic peptide that demonstrates a peculiar ability to restore homeostasis in different physiological and pathological conditions (i.e., infections, cancer, immunodeficiency, vaccination, and aging) acting as multitasking protein depending on the host state of inflammation or immune dysfunction. However, few are the information about mechanisms of action mediated by specific Tα1-target protein interaction that could explain its pleiotropic effect. We investigated the interaction of Tα1 with Galectin-1 (Gal-1), a protein belonging to an oligosaccharide binding protein family involved in a variety of biological and pathological processes, including immunoregulation, infections, cancer progression and aggressiveness. Using molecular and cellular methodological approaches, we demonstrated the interaction between these two proteins. Tα1 specifically inhibited the hemagglutination activity of Gal-1, the Gal-1 dependent in vitro formation of endothelial cell tubular structures, and the migration of cancer cells in wound healing assay. Physico-chemical methods revealed the details of the molecular interaction of Tα1 with Gal-1. Hence, the study allowed the identification of the not known until now specific interaction between Tα1 and Gal-1, and unraveled a novel mechanism of action of Tα1 that could support understanding of its pleiotropic activity.

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Source
http://dx.doi.org/10.1016/j.intimp.2023.110113DOI Listing

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