Deciphering structural bases of intestinal and hepatic selectivity in targeting pregnane X receptor with indole-based microbial mimics.

TitleDeciphering structural bases of intestinal and hepatic selectivity in targeting pregnane X receptor with indole-based microbial mimics.
Publication TypeJournal Article
Year of Publication2021
AuthorsLi H, Illés P, Karunaratne CV, Nordstrøm LUlrik, Luo X, Yang A, Qiu Y, Kurland IJ, Lukin DJ, Chen W, Jiskrová E, Krasulová K, Pečinková P, DesMarais VM, Liu Q, Albanese JM, Akki A, Longo M, Coffin B, Dou W, Mani S, Dvořák Z
JournalBioorg Chem
Volume109
Pagination104661
Date Published2021 04
ISSN1090-2120
KeywordsAdenocarcinoma, Animals, Anti-Inflammatory Agents, Cell Line, Tumor, Colonic Neoplasms, Drug Design, Female, Hepatocytes, Humans, Indoles, Intestines, Liver, Male, Mice, Middle Aged, Models, Molecular, Molecular Mimicry, Molecular Structure, Pregnane X Receptor, Protein Conformation, Structure-Activity Relationship
Abstract

Microbial metabolite mimicry is a new concept that promises to deliver compounds that have minimal liabilities and enhanced therapeutic effects in a host. In a previous publication, we have shown that microbial metabolites of L-tryptophan, indoles, when chemically altered, yielded potent anti-inflammatory pregnane X Receptor (PXR)-targeting lead compounds, FKK5 and FKK6, targeting intestinal inflammation. Our aim in this study was to further define structure-activity relationships between indole analogs and PXR, we removed the phenyl-sulfonyl group or replaced the pyridyl residue with imidazolopyridyl of FKK6. Our results showed that while removal of the phenyl-sulfonyl group from FKK6 (now called CVK003) shifts agonist activity away from PXR towards the aryl hydrocarbon receptor (AhR), the imidazolopyridyl addition preserves PXR activity in vitro. However, when these compounds are administered to mice, that unlike the parent molecule, FKK6, they exhibit poor induction of PXR target genes in the intestines and the liver. These data suggest that modifications of FKK6 specifically in the pyridyl moiety can result in compounds with weak PXR activity in vivo. These observations are a significant step forward for understanding the structure-activity relationships (SAR) between indole mimics and receptors, PXR and AhR.

DOI10.1016/j.bioorg.2021.104661
Alternate JournalBioorg Chem
PubMed ID33636438
PubMed Central IDPMC8646148
Grant ListR01 ES030197 / ES / NIEHS NIH HHS / United States
R01 CA127231 / CA / NCI NIH HHS / United States
R01 CA161879 / CA / NCI NIH HHS / United States
UL1 TR001073 / TR / NCATS NIH HHS / United States
S10 RR029398 / RR / NCRR NIH HHS / United States
S10 OD019961 / OD / NIH HHS / United States
P60 DK020541 / DK / NIDDK NIH HHS / United States
R01 CA222469 / CA / NCI NIH HHS / United States

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