Nobuyuki Takakura
Takeda Pharmaceutical Company
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Publication
Featured researches published by Nobuyuki Takakura.
Bioorganic & Medicinal Chemistry | 2017
Takeshi Yamasaki; Hideki Hirose; Tohru Yamashita; Nobuyuki Takakura; Sachie Morimoto; Takashi Nakahata; Asato Kina; Yoshihide Nakano; Yumiko Okano Tamura; Jun Sugama; Tomoyuki Odani; Yuji Shimizu; Shinji Iwasaki; Masanori Watanabe; Tsuyoshi Maekawa; Shizuo Kasai
Somatostatin (SST) is a peptide hormone comprising 14 or 28 amino acids that inhibits endocrine and exocrine secretion via five distinct G-protein-coupled receptors (SSTR1-5). SSTR5 has an important role in inhibiting the secretion of pancreatic and gastrointestinal hormones (e.g., insulin, GLP-1, PYY) through the binding of SSTs; hence, SSTR5 antagonists are expected to be novel anti-diabetic drugs. In the course of our lead generation program of SSTR5 antagonists, we have discovered a novel spiroazetidine derivative 3a. However, pharmacological evaluation of 3a revealed that it had to be administered at a high dose (100mg/kg) to show a persistent glucose-lowering effect in an oral glucose tolerance test (OGTT). We therefore initiated an optimization study based on 3a aimed at improving the antagonistic activity and mean residence time (MRT), resulting in the identification of 2-cyclopropyl-5-methoxybiphenyl derivative 3k. However, 3k did not show a sufficient persistent glucose-lowering effect in an OGTT; moreover, hERG inhibition was observed. Hence, further optimization study of the biphenyl moiety of compound 3k, focused on improving the pharmacokinetic (PK) profile and hERG inhibition, was conducted. Consequently, the introduction of a chlorine atom at the 6-position on the biphenyl moiety addressed a putative metabolic soft spot and increased the dihedral angle of the biphenyl moiety, leading to the discovery of 3p with an improved PK profile and hERG inhibition. Furthermore, 3p successfully exhibited a persistent glucose-lowering effect in an OGTT at a dose of 3mg/kg.
SLAS DISCOVERY: Advancing Life Sciences R&D | 2018
Mariko Yoneyama-Hirozane; Kohei Deguchi; Takeshi Hirakawa; Tsuyoshi Ishii; Tomoyuki Odani; Junji Matsui; Yoshihide Nakano; Kenichi Imahashi; Nobuyuki Takakura; Ikumi Chisaki; Shiro Takekawa; Junichi Sakamoto
Ghrelin O-acyl transferase (GOAT; MBOAT4) catalyzes O-acylation at serine-3 of des-acyl ghrelin. Acyl ghrelin is secreted by stomach X/A-like cells and plays a role in appetite and metabolism. Therefore, GOAT has been expected to be a novel antiobesity target because it is responsible for acyl ghrelin production. Here, we report homogeneous time-resolved fluorescence (HTRF) and enzyme-linked immunosorbent assay (ELISA) methods utilizing human GOAT-expressing microsomes as a novel high-throughput assay system for the discovery of hit compounds and optimization of lead compounds. Hit compounds exemplified by compound A (2-[(2,4-dichlorobenzyl)sulfanyl]-1,3-benzoxazole-5-carboxylic acid) were identified by high-throughput screening using the HTRF assay and confirmed to have GOAT inhibitory activity using the ELISA. Based on the hit compound information, the novel lead compound (compound B, (4-chloro-6-{[2-methyl-6-(trifluoromethyl)pyridin-3-yl]methoxy}-1-benzothiophen-3-yl)acetic acid) was synthesized and exhibited potent GOAT inhibition with oral bioavailability. Both the hit compound and lead compound showed octanoyl-CoA competitive inhibitory activity. Moreover, these two compounds decreased acyl ghrelin production in the stomach of mice after their oral administration. These novel findings demonstrate that GOAT is a druggable target, and its inhibitors are promising antiobesity drugs.
Archive | 2001
Yu Momose; Tsuyoshi Maekawa; Nobuyuki Takakura; Hiroyuki Odaka; Hiroyuki Kimura; Tatsuya Ito
Archive | 2003
Y U Momose; Nobuyuki Takakura; Tsuyoshi Maekawa; Hiroyuki Odaka; Hiroyuki Kimura
Archive | 2003
Akihiro Tasaka; Takahiko Taniguchi; Nobuyuki Takakura; Yu Momose; Kenichiro Naito; Saori Tsujimoto
Archive | 2009
Tsuneo Yasuma; Nobuyuki Takakura
Archive | 2011
Osamu Ujikawa; Kazuaki Takami; Nobuyuki Takakura; Nozomu Sakai
Archive | 2014
Shizuo Kasai; Masaki Ogino; Ryo Mizojiri; Takeshi Yamasaki; Hideki Hirose; Nobuyuki Takakura; Tohru Yamashita; Sachie Morimoto; Takashi Nakahata; Asato Kina
Archive | 2009
Tsuneo Yasuma; Nobuyuki Takakura; Yasufumi Miyamoto
Archive | 2014
Jumpei Aida; Yayoi Yoshitomi; Yuko Hitomi; Naoyoshi Noguchi; Yasuhiro Hirata; Hideki Furukawa; Akito Shibuya; Koji Watanabe; Yasufumi Miyamoto; Tomohiro Okawa; Nobuyuki Takakura; Seiji Miwatashi