Discovery of a Novel Series of Potent, Selective, Orally Available, and Brain-Penetrable C1s Inhibitors for Modulation of the Complement Pathway

  • J Med Chem. 2023 Apr 25. doi: 10.1021/acs.jmedchem.3c00348.
Zenichi Ikeda  1 Taku Kamei  1 Yusuke Sasaki  1 Matthew Reynolds  1 Nozomu Sakai  1 Masato Yoshikawa  1 Michiko Tawada  1 Nao Morishita  1 Douglas R Dougan  2 Chien-Hung Chen  2 Irena Levin  2 Hua Zou  2 Masako Kuno  1 Naoto Arimura  1 Yusuke Kikukawa  1 Mitsuyo Kondo  3 Kimio Tohyama  1 Kenjiro Sato  1
Affiliations
  • 1. Research, Takeda Pharmaceutical Company Ltd., 26-1, Muraoka-Higashi 2-chome, Fujisawa, Kanagawa 251-8555, Japan.
  • 2. Structural Biology, Takeda Development Center Americas, Inc., San Diego, California 92121, United States.
  • 3. Discovery Biology, Discovery Science, Axcelead Drug Discovery Partners, Inc., 26-1, Muraoka-Higashi 2-chome, Fujisawa, Kanagawa 251-0012, Japan.
Abstract

A novel series of non-amidine-based C1s inhibitors have been explored. Starting from high-throughput screening hit 3, isoquinoline was replaced with 1-aminophthalazine to enhance C1s inhibitory activity while exhibiting good selectivity against Other serine proteases. We first disclose a crystal structure of a complex of C1s and a small-molecule inhibitor (4e), which guided structure-based optimization around the S2 and S3 sites to further enhance C1s inhibitory activity by over 300-fold. Improvement of membrane permeability by incorporation of fluorine at the 8-position of 1-aminophthalazine led to identification of (R)-8 as a potent, selective, orally available, and brain-penetrable C1s inhibitor. (R)-8 significantly inhibited membrane attack complex formation induced by human serum in a dose-dependent manner in an in vitro assay system, proving that selective C1s inhibition blocked the classical complement pathway effectively. As a result, (R)-8 emerged as a valuable tool compound for both in vitro and in vivo assessment.

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