Please use this identifier to cite or link to this item: https://hdl.handle.net/10356/182040
Title: The novel quinoline derivative SKA-346 as a KCa3.1 channel selective activator
Authors: Wong, Brandon Han Siang
Shim, Heesung
Goay, Stephanie Shee Min
Ong, Seow Theng
Nur Ayuni Binte Muhammad Taib
Chai, Kelila Xin Ye
Lim, Kerry
Huang, Dachuan
Ong, Choon Kiat
Vaiyapuri, Thamil Selvan
Cheah, Yeong Cheng
Wang, Yulan
Wulff, Heike
Webster, Richard David
Shelat, Vishalkumar G.
Verma, Navin Kumar
Keywords: Medicine, Health and Life Sciences
Issue Date: 2024
Source: Wong, B. H. S., Shim, H., Goay, S. S. M., Ong, S. T., Nur Ayuni Binte Muhammad Taib, Chai, K. X. Y., Lim, K., Huang, D., Ong, C. K., Vaiyapuri, T. S., Cheah, Y. C., Wang, Y., Wulff, H., Webster, R. D., Shelat, V. G. & Verma, N. K. (2024). The novel quinoline derivative SKA-346 as a KCa3.1 channel selective activator. RSC Advances, 14(52), 38364-38377. https://dx.doi.org/10.1039/d4ra07330d
Project: RG94/22 
OFLCG-23May0039 
Journal: RSC Advances 
Abstract: The calcium-activated KCa3.1 channel plays a crucial role in T-cell immune response. Genetic manipulation of T-cells to upregulate the expression of K+ channels has been shown to boost T-cell cytotoxicity in cancer. Here, we aimed to identify and characterize an activator that would augment KCa3.1 currents without affecting other channels. We synthesized five quinoline derivatives and used electrophysiology to screen them on KCa3.1 and a panel of 14 other ion channels. One quinoline derivative, SKA-346, activated KCa3.1 with an EC50 of 1.9 μM and showed selectivity against the other channels. In silico analysis using RosettaLigand and GLIDE demonstrated a well-converged pose of SKA-346 in a binding pocket at the interface between the calmodulin N-lobe and the S45A helix in the S4-S5 linker of the KCa3.1 channel. SKA-346 (30 mg kg-1), tolerated by mice after intra-peritoneal administration, exhibited a peak plasma concentration of 6.29 μg mL-1 (29.2 μM) at 15 min and a circulating half-life (t 1/2) of 2.8 h. SKA-346 could serve as a template for the development of more potent KCa3.1 activators to enhance T-cell cytotoxicity in cancer.
URI: https://hdl.handle.net/10356/182040
ISSN: 2046-2069
DOI: 10.1039/d4ra07330d
Schools: Lee Kong Chian School of Medicine (LKCMedicine) 
School of Chemistry, Chemical Engineering and Biotechnology 
Organisations: Tan Tock Seng Hospital 
Research Centres: NTU Institute for Health Technologies
Singapore Phenome Center
LKCMedicine-ICE Collaborative Platform
Rights: © 2024 The Author(s). Published by the Royal Society of Chemistry. This article is licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported Licence.
Fulltext Permission: open
Fulltext Availability: With Fulltext
Appears in Collections:LKCMedicine Journal Articles

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