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◆ Frontiers in Chemistry2026-05-08· Chemistry

Synthesis, structure–activity relationships, and SARS-CoV-2 antiviral activity of 3,5-disubstituted isothiazolo[4,3-b]pyridines as PIKfyve inhibitors

Ling‐Jie Gao, Demian Kalebić, Chieh Wen Lo, Aakriti Gangwal, Do Hoang Nhu Tran, Jef Rozenski, Dominique Schols, Mathy Froeyen, Wim Dehaen, Shirit Einav, Steven De Jonghe

一句话结论

Several derivatives exhibited potent PIKfyve inhibition (in the low nM range) in a biochemical assay and antiviral activity against severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) (in the low μM range).

原始摘要(原文)
Introduction: 3-Alkynyl-6-aryl-isothiazolo[4,3-b]pyridines have previously been shown to be potent inhibitors of the lipid kinase FYVE finger-containing phosphoinositide kinase (PIKfyve), displaying broad-spectrum antiviral activity. Methods: To further study their structure-activity relationship (SAR), an efficient synthesis toward 3- bromo-5-chloro-isothiazolo[4,3-b]pyridine was established. It allowed to introduce structural modifications at positions 3 and 5 by palladium-catalyzed cross-coupling reactions and nucleophilic aromatic substitutions. Results and discussion: It led to the generation of a focused library of 3,5-disubstituted isothiazolo[4,3-b]pyridines. Several derivatives exhibited potent PIKfyve inhibition (in the low nM range) in a biochemical assay and antiviral activity against severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) (in the low μM range). To gain an insight in their binding mode, molecular modeling was applied, indicating that these 3,5- disubstituted isothiazolo[4,3-b]pyridines bind to the ATP-binding site of PIKfyve, although with a different binding mode from that of the 3,6- disubstituted isothiazolo[4,3-b]pyridines.
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Synthesis, structure–activity relationships, and SARS-CoV-2 antiviral activity of 3,5-disubstituted isothiazolo[4,3-b]pyridines as PIKfyve inhibitors — 科研速览 Science Skim