Inhibitors of heat shock protein 70 (Hsp70) with enhanced metabolic stability reduce tau levels

[Display omitted] •Two series of YM-08 analogs were designed to remove metabolic liabilities.•Optimization resulted in JG-23, which is 12-fold more metabolically stable.•Compound JG-23 reduced total tau in two cell-based models. The molecular chaperone, Heat Shock Protein 70 (Hsp70), is an emerging...

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Veröffentlicht in:Bioorganic & medicinal chemistry letters 2021-06, Vol.41, p.128025-128025, Article 128025
Hauptverfasser: Shao, Hao, Li, Xiaokai, Hayashi, Shigenari, Bertron, Jeanette L., Schwarz, Daniel M.C., Tang, Benjamin C., Gestwicki, Jason E.
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Sprache:eng
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Zusammenfassung:[Display omitted] •Two series of YM-08 analogs were designed to remove metabolic liabilities.•Optimization resulted in JG-23, which is 12-fold more metabolically stable.•Compound JG-23 reduced total tau in two cell-based models. The molecular chaperone, Heat Shock Protein 70 (Hsp70), is an emerging drug target for neurodegenerative diseases, because of its ability to promote degradation of microtubule-associated protein tau (MAPT/tau). Recently, we reported YM-08 as a brain penetrant, allosteric Hsp70 inhibitor, which reduces tau levels. However, the benzothiazole moiety of YM-08 is vulnerable to metabolism by CYP3A4, limiting its further application as a chemical probe. In this manuscript, we designed and synthesized seventeen YM-08 derivatives by systematically introducing halogen atoms to the benzothiazole ring and shifting the position of the heteroatom in a distal pyridine. In microsome assays, we found that compound JG-23 has 12-fold better metabolic stability and it retained the ability to reduce tau levels in two cell-based models. These chemical probes of Hsp70 are expected to be useful tools for studying tau homeostasis.
ISSN:0960-894X
1464-3405
DOI:10.1016/j.bmcl.2021.128025