Development of Potent PfCLK3 Inhibitors Based on TCMDC-135051 as a New Class of Antimalarials

Journal of Medicinal Chemistry
2020.0

Abstract

The protein kinase PfCLK3 plays a critical role in the regulation of malarial parasite RNA splicing and is essential for the survival of blood stage Plasmodium falciparum. We recently validated PfCLK3 as a drug target in malaria that offers prophylactic, transmission blocking, and curative potential. Herein, we describe the synthesis of our initial hit TCMDC-135051 (1) and efforts to establish a structure-activity relationship with a 7-azaindole-based series. A total of 14 analogues were assessed in a time-resolved fluorescence energy transfer assay against the full-length recombinant protein kinase PfCLK3, and 11 analogues were further assessed in asexual 3D7 (chloroquine-sensitive) strains of P. falciparum parasites. SAR relating to rings A and B was established. These data together with analysis of activity against parasites collected from patients in the field suggest that TCMDC-135051 (1) is a promising lead compound for the development of new antimalarials with a novel mechanism of action targeting PfCLK3.

Knowledge Graph

Similar Paper

Development of Potent PfCLK3 Inhibitors Based on TCMDC-135051 as a New Class of Antimalarials
Journal of Medicinal Chemistry 2020.0
Exploration of the imidazo[1,2-b]pyridazine scaffold as a protein kinase inhibitor
European Journal of Medicinal Chemistry 2017.0
A Divergent SAR Study Allows Optimization of a Potent 5-HT<sub>2c</sub> Inhibitor to a Promising Antimalarial Scaffold
ACS Medicinal Chemistry Letters 2012.0
Synthesis of chiral chloroquine and its analogues as antimalarial agents
Bioorganic &amp; Medicinal Chemistry 2014.0
Malaria Box-Inspired Discovery of N-Aminoalkyl-β-carboline-3-carboxamides, a Novel Orally Active Class of Antimalarials
ACS Medicinal Chemistry Letters 2022.0
Activity of substituted thiophene sulfonamides against malarial and mammalian cyclin dependent protein kinases
Bioorganic &amp; Medicinal Chemistry Letters 2010.0
Synthesis and Evaluation of α-Thymidine Analogues as Novel Antimalarials
Journal of Medicinal Chemistry 2012.0
Trisubstituted thiazoles as potent and selective inhibitors of Plasmodium falciparum protein kinase G (PfPKG)
Bioorganic &amp; Medicinal Chemistry Letters 2018.0
A Three-Dimensional in Silico Pharmacophore Model for Inhibition ofPlasmodium falciparumCyclin-Dependent Kinases and Discovery of Different Classes of Novel Pfmrk Specific Inhibitors
Journal of Medicinal Chemistry 2004.0
Design and Synthesis of Potent Antimalarial Agents Based on Clotrimazole Scaffold:  Exploring an Innovative Pharmacophore
Journal of Medicinal Chemistry 2007.0