Optimization and Effect of Substituents on the Transformation of 3-(Substituted acetoxy)azetidin-2-ones to Chiral 3-Hydroxyazetidin-2-ones, Molecular Docking and Enantiomeric Excess Determination

Author:

Bhalla Aman1ORCID,Modi Garima1,Kumar Pankaj1,Kaur Jaswinder1,Berry Shiwani2,Bari Shamsher S.1,Banik Bimal K.3

Affiliation:

1. Department of Chemistry and Centre of Advanced Studies in Chemistry, Panjab University, Chandigarh, 160014, India

2. Department of Chemistry and Chemical Sciences, Central University of Himachal Pradesh, Shahpur Campus, Shahpur, Kangra, 176206, HP, India

3. Deanship of Research, Prince Mohammad Bin Fahd University, Al-Khobar, 31952, Saudi Arabia

Abstract

Abstract: The enantioselective synthesis of chiral cis-3-hydroxyazetidin-2-ones mediated by Porcine Pancreatic Lipase (PPL) via hydrolysis of cis-3-(chloro acetoxy) azetidin-2-ones in the presence of a phosphate buffer (0.1M, pH = 7.2) in acetonitrile at a temperature range of 25-35 °C was optimized. Under the optimized reaction conditions, the influence of various electron withdrawing/donating/neutral groups on ester functionality of cis-3-(substituted acetoxy)azetidin-2- ones towards hydrolysis was extensively studied, and the bromoacetoxy, propanyloxy, and formyloxy groups provided moderate to good yields of 90%, 91%, and 81%, respectively. Moreover, the chiral cis-3-hydroxyazetidin-2-ones underwent acetylation, and their enantiomeric excess was assessed using the 1H NMR technique, employing chiral shift reagents. To gain insights into the active sites of the biocatalyst, molecular docking studies of compounds 5(a-i) with pancreatic lipase (PDB ID: 1LBS) were carried out. Additionally, the proposed interaction of substituents with the biocatalyst established the absolute stereochemistry of the target chiral cis-3-hydroxyazetidin-2-ones using Seebach's model in comparison to Jone's models.

Funder

Department of Science and Technology (DST), New Delhi, Government of India

University Grant Commission (UGC), New Delhi

Publisher

Bentham Science Publishers Ltd.

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