Back to Search Start Over

Discovery of tetrahydroisoquinolineindole derivatives as first dual PRMT5 inhibitors/hnRNP E1 upregulators: Design, synthesis and biological evaluation.

Authors :
Chu, Wen-Hui
Yang, Na
Zhang, Jin-He
Li, Yue
Song, Jia-Li
Deng, Zhi-Peng
Meng, Ning
Zhang, Juan
Zhu, Kong-Kai
Jiang, Cheng-Shi
Source :
European Journal of Medicinal Chemistry. Oct2023, Vol. 258, pN.PAG-N.PAG. 1p.
Publication Year :
2023

Abstract

Protein arginine methyltransferase 5 (PRMT5) is an epigenetics related enzyme that has been validated as an important therapeutic target for treating various types of cancer. Upregulation of tumor suppressor hnRNP E1 has also been considered as an effective antitumor therapy. In this study, a series of tetrahydroisoquinolineindole hybrids were designed and prepared, and compounds 3m and 3s4 were found to be selective inhibitors of PRMT5 and upregulators of hnRNP E1. Molecular docking studies indicated that compounds 3m occupied the substrate site of PRMT5 and formed essential interactions with amino acid residues. Furthermore, compounds 3m and 3s4 exerted antiproliferative effects against A549 cells by inducing apoptosis and inhibiting cell migration. Importantly, silencing of hnRNP E1 eliminated the antitumor effect of 3m and 3s4 on the apoptosis and migration in A549 cells, suggesting a regulatory relationship between PRMT5 and hnRNP E1. Additionally, compound 3m exhibited high metabolic stability on human liver microsomes (T 1/2 = 132.4 min). In SD rats, the bioavailability of 3m was 31.4%, and its PK profiles showed satisfactory AUC and C max values compared to the positive control. These results suggest that compound 3m is the first class of dual PRMT5 inhibitor and hnRNP E1 upregulator that deserves further investigation as a potential anticancer agent. [Display omitted] • Tetrahydroisoquinolineindoles were screened as PRMT5 inhibitors/hnRNP E1 promoters. • Some compounds exhibited significant antitumor activities. • Compounds 3m and 3s4 significant up-regulate hnRNP E1 protein level. • The study firstly indicates the regulatory relationship between PRMT5 and hnRNP E1. • Compound 3m was observed a 31.4% F and quite satisfying T 1/2 , AUC and Cmax values. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02235234
Volume :
258
Database :
Academic Search Index
Journal :
European Journal of Medicinal Chemistry
Publication Type :
Academic Journal
Accession number :
164964550
Full Text :
https://doi.org/10.1016/j.ejmech.2023.115625