4.5 Review

Molecular and therapeutic insights of rapamycin: a multi-faceted drug from Streptomyces hygroscopicus

Journal

MOLECULAR BIOLOGY REPORTS
Volume 50, Issue 4, Pages 3815-3833

Publisher

SPRINGER
DOI: 10.1007/s11033-023-08283-x

Keywords

Autophagy; FKBP-12; Immunosuppressant; Macrolactone; mTOR; Rapamycin; Streptomyces hygroscopicus

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The advancement in pharmaceutical research has led to the discovery and development of new combinatorial life-saving drugs, such as rapamycin and its derivatives. Rapamycin has been gaining attention for its activity against cytokine storm in COVID-19 patients. It has multiple potential applications as an anti-fungal drug, immunosuppressant, anti-cancer, anti-viral, and anti-aging agent. There is a growing demand for effective rapamycin derivatives and further studies are needed to explore its molecular mechanisms and improvement in production.
The advancement in pharmaceutical research has led to the discovery and development of new combinatorial life-saving drugs. Rapamycin is a macrolide compound produced from Streptomyces hygroscopicus. Rapamycin and its derivatives are one of the promising sources of drug with broad spectrum applications in the medical field. In recent times, rapamycin has gained significant attention as of its activity against cytokine storm in COVID-19 patients. Rapamycin and its derivatives have more potency when compared to other prevailing drugs. Initially, it has been used exclusively as an anti-fungal drug. Currently rapamycin has been widely used as an immunosuppressant. Rapamycin is a multifaceted drug; it has anti-cancer, anti-viral and anti-aging potentials. Rapamycin has its specific action on mTOR signaling pathway. mTOR has been identified as a key regulator of different pathways. There will be an increased demand for rapamycin, because it has lesser adverse effects when compared to steroids. Currently researchers are focused on the production of effective rapamycin derivatives to combat the growing demand of this wonder drug. The main focus of the current review is to explore the origin, development, molecular mechanistic action, and the current therapeutic aspects of rapamycin. Also, this review article revealed the potential of rapamycin and the progress of rapamycin research. This helps in understanding the exact potency of the drug and could facilitate further studies that could fill in the existing knowledge gaps. The study also gathers significant data pertaining to the gene clusters and biosynthetic pathways involved in the synthesis and production of this multi-faceted drug. In addition, an insight into the mechanism of action of the drug and important derivatives of rapamycin has been expounded. The fillings of the current review, aids in understanding the underlying molecular mechanism, strain improvement, optimization and production of rapamycin derivatives.

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