Computer-Aided Discovery of Glycogen Phosphorylase Inhibitors Exploiting Natural Products

Author(s):  
Joseph M. Hayes
2017 ◽  
Vol 24 (4) ◽  
pp. 384-403 ◽  
Author(s):  
Demetres Leonidas ◽  
Joseph Hayes ◽  
Atsushi Kato ◽  
Vassiliki Skamnaki ◽  
Demetra Chatzileontiadou ◽  
...  

2005 ◽  
Vol 14 (7) ◽  
pp. 1760-1771 ◽  
Author(s):  
Nikos G. Oikonomakos ◽  
Magda N. Kosmopoulou ◽  
Evangelia D. Chrysina ◽  
Demetres D. Leonidas ◽  
Ioannis D. Kostas ◽  
...  

2013 ◽  
Vol 23 (8) ◽  
pp. 1017-1032 ◽  
Author(s):  
Nicolas Gaboriaud-Kolar ◽  
Alexios-Leandros Skaltsounis

Marine Drugs ◽  
2022 ◽  
Vol 20 (1) ◽  
pp. 53
Author(s):  
Laura Llorach-Pares ◽  
Alfons Nonell-Canals ◽  
Conxita Avila ◽  
Melchor Sanchez-Martinez

Computer-aided drug design (CADD) techniques allow the identification of compounds capable of modulating protein functions in pathogenesis-related pathways, which is a promising line on drug discovery. Marine natural products (MNPs) are considered a rich source of bioactive compounds, as the oceans are home to much of the planet’s biodiversity. Biodiversity is directly related to chemodiversity, which can inspire new drug discoveries. Therefore, natural products (NPs) in general, and MNPs in particular, have been used for decades as a source of inspiration for the design of new drugs. However, NPs present both opportunities and challenges. These difficulties can be technical, such as the need to dive or trawl to collect the organisms possessing the compounds, or biological, due to their particular marine habitats and the fact that they can be uncultivable in the laboratory. For all these difficulties, the contributions of CADD can play a very relevant role in simplifying their study, since, for example, no biological sample is needed to carry out an in-silico analysis. Therefore, the amount of natural product that needs to be used in the entire preclinical and clinical study is significantly reduced. Here, we exemplify how this combination between CADD and MNPs can help unlock their therapeutic potential. In this study, using a set of marine invertebrate molecules, we elucidate their possible molecular targets and associated therapeutic potential, establishing a pipeline that can be replicated in future studies.


2021 ◽  
pp. 00-00
Author(s):  
Youde Wang ◽  
Zhiwei Yan ◽  
Yachun Guo ◽  
Liying Zhang

Glycogen phosphorylase (GP) is a key enzyme of glycogen catabolism, so it is significant to discover a new GP inhibitor. A series of benzazepinone derivatives were discovered as GP inhibitors with potent activity. Among these derivatives, compound 5d showed significant potential against rabbit muscle GPa (IC50 = 0.25 ± 0.05 μM) and cellular efficacy. The in vivo study revealed that 5d significantly inhibited increases in fasting blood glucose level in two kinds of hyperglycemic mice models. The possible binding mode of compound 5d was explored based on molecular docking simulations. These results indicated that derivatives with benzazepinone were potential chemical entities against hyperglycemia.


Biochemistry ◽  
2008 ◽  
Vol 47 (16) ◽  
pp. 4683-4691 ◽  
Author(s):  
Oliver Anderka ◽  
Petra Loenze ◽  
Thomas Klabunde ◽  
Matthias K. Dreyer ◽  
Elisabeth Defossa ◽  
...  

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