Effects of newly synthetized isoquinoline derivatives on rat uterine contractility and ROCK II activity

Bioorganic & Medicinal Chemistry Letters
2018.0

Abstract

Protein kinases have an important role in signal transduction in the cellular system via protein phosphorylation. RhoA activated Rho-kinases have a pivotal role in the regulation of smooth muscle contraction. ROCK I and ROCK II phosphorylate myosin-phosphatase and myosin-kinase, which induces contraction in the myometrium. Several studies have investigated the affinity of isoquinoline alkaloids (HA-1077, H1152P) to Rho-kinases, and these compounds notably inhibited the Ca2+-independent process. We measured the efficiency of 25 original, newly synthesized isoquinoline derivatives for the Rho-kinase activity using Rho-associated kinase activity assay and determined their effects on the non-pregnant, 20-day pregnant and parturient rat myometrial contraction in vitro. The IC50 values of 11 from among the 25 derivatives were significantly lower on the oxytocin-induced non-pregnant rat uterine contraction compared with Y-27632 and fasudil, although their maximal inhibitory effects were weaker than those of Y-27632 and fasudil. We measured the effects of 11 isoquinoline molecules with significant IC50 values on ROCK II activity. We found two isoquinolines out of 11 compounds (218 and 852) which decreased the active ROCK II level similarly as Y-27632. Then we found that 218 and 852 relaxed the 20th-day pregnant and parturient rat uterus with greater potency as compared with fasudil. The majority of the synthesized isoquinoline derivatives have uterus relaxant effects and two of them significantly suppress the Rho-kinase mediated myosin light chain phosphorylation. Our results may suggest that the isoquinoline structure has a promising prospect for the development of new and effective inhibitors of uterine contractions in preterm birth.

Knowledge Graph

Similar Paper

Effects of newly synthetized isoquinoline derivatives on rat uterine contractility and ROCK II activity
Bioorganic & Medicinal Chemistry Letters 2018.0
Elucidation the binding mechanism of Nelumbo nucifera-derived isoquinoline alkaloids as Rho-kinase 1 inhibitors by molecular docking and dynamic simulation
Journal of Biomolecular Structure and Dynamics 2021.0
Synthesis and Comparative Inotropic Effects of Several Isoquinoline Alkaloids
Pharmaceutical Chemistry Journal 2020.0
Evaluation of myorelaxant activity of 7-substituted hexahydroquinoline derivatives in isolated rabbit gastric fundus
European Journal of Medicinal Chemistry 2008.0
Fragment-based discovery of 6-substituted isoquinolin-1-amine based ROCK-I inhibitors
Bioorganic & Medicinal Chemistry Letters 2011.0
Synthesis of imidazo[1,2-a]pyrazine derivatives with uterine-relaxing, antibronchospastic, and cardiac-stimulating properties
Journal of Medicinal Chemistry 1984.0
New quinoline alkaloid fromRuta graveolensaerial parts and evaluation of the antifertility activity
Natural Product Research 2014.0
1,3-Diamino-6,7-dimethoxyisoquinoline derivatives as potential .alpha.1-adrenoceptor antagonists
Journal of Medicinal Chemistry 1988.0
Isoindolines and phthalides from the rhizomes of Ligusticum chuanxiong and their relaxant effects on the uterine smooth muscle
Phytochemistry 2022.0
The synthesis of N-phenoxyethyl-1-substituted-1,2,3,4-tetrahydroisoquinolines and their α1-adrenoceptor blocking activity
European Journal of Medicinal Chemistry 2009.0