Redefining a new frontier in alkaptonuria therapy with AI-driven drug candidate design via in- silico innovation

Author:

Naveed Muhammad1,Javed Khushbakht1,Aziz Tariq2ORCID,Zafar Ali1,Fatima Mahnoor1,Ali Imran1,Khan Ayaz Ali3,Albekairi Thamer H.4

Affiliation:

1. Department of Biotechnology , Faculty of Science and Technology, University of Central Punjab , Lahore , 54590 , Pakistan

2. Laboratory of Animal Health Food Hygiene, Quality University of Ioannina , Arta 47132 , Greece

3. Department of Biotechnology University of Malakand , Chakdara 18800 , Pakistan

4. Department of Pharmacology and Toxicology , College of Pharmacy, King Saud University , P.O. Box 2455 , Riyadh 11451 , Saudi Arabia

Abstract

Abstract A rare metabolic condition called alkaptonuria (AKU) is caused by a decrease in homogentisate 1,2 dioxygenase (HGO) activity due to a mutation in homogentisate dioxygenase (HGD) gene. Homogentisic acid is a byproduct of the catabolism of tyrosine and phenylalanine that darkens the urine and accumulates in connective tissues which causes an agonizing arthritis. Employing the use of deep learning artificial intelligence (AI) drug design, this study aims to alleviate the current toxicity of the AKU drugs currently in use, particularly nitisinone, by utilizing the natural flavanol kaempferol molecule as a 4-hydroxyphenylpyruvate dioxygenase inhibitor. Kaempferol was employed to generate three effective de novo drug candidates targeting the enzyme 4-hydroxyphenylpyruvate dioxygenase using an AI drug design tool. We present novel AIK formulations in the present study. The AIK’s (Artificial Intelligence Kaempferol) examination of drug-likeliness among the three led to its choice as a possible target. The toxicity assessment research of AIK demonstrates that it is not only safer to use than other treatments, but also more efficient. The docking of the AIGT with 4-hydroxyphenylpyruvate dioxygenase, which revealed a binding affinity of around −9.099 kcal/mol, highlights the AIK’s potential as a therapeutic candidate. An innovative approach to deal with challenging circumstances is thus presented in this study by new formulations kaempferol that have been meticulously designed by AI. The results of the in vitro tests must be confirmed in vivo, even though AI-designed AIK is effective and sufficiently safe as computed.

Publisher

Walter de Gruyter GmbH

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