72714-64-8Relevant academic research and scientific papers
Conformational Constraint of the Glycerol Moiety of Lysophosphatidylserine Affords Compounds with Receptor Subtype Selectivity
Jung, Sejin,Inoue, Asuka,Nakamura, Sho,Kishi, Takayuki,Uwamizu, Akiharu,Sayama, Misa,Ikubo, Masaya,Otani, Yuko,Kano, Kuniyuki,Makide, Kumiko,Aoki, Junken,Ohwada, Tomohiko
, p. 3750 - 3776 (2016)
Lysophosphatidylserine (LysoPS) is an endogenous lipid mediator that specifically activates membrane proteins of the P2Y and its related families of G protein-coupled receptors (GPCR), GPR34 (LPS1), P2Y10 (LPS2), and GPR174 (LPS3). Here, in order to increase potency and receptor selectivity, we designed and synthesized LysoPS analogues containing the conformational constraints of the glycerol moiety. These reduced structural flexibility by fixation of the glycerol framework of LysoPS using a 2-hydroxymethyl-3-hydroxytetrahydropyran skeleton, and related structures identified compounds which exhibited high potency and selectivity for activation of GPR34 or P2Y10. Morphing of the structural shape of the 2-hydroxymethyl-3-hydroxytetrahydropyran skeleton into a planar benzene ring enhanced the P2Y10 activation potentcy rather than the GPR34 activation.
Probing the Hydrophobic Binding Pocket of G-Protein-Coupled Lysophosphatidylserine Receptor GPR34/LPS1 by Docking-Aided Structure-Activity Analysis
Sayama, Misa,Inoue, Asuka,Nakamura, Sho,Jung, Sejin,Ikubo, Masaya,Otani, Yuko,Uwamizu, Akiharu,Kishi, Takayuki,Makide, Kumiko,Aoki, Junken,Hirokawa, Takatsugu,Ohwada, Tomohiko
, p. 6384 - 6399 (2017/08/02)
The ligands of certain G-protein-coupled receptors (GPCRs) have been identified as endogenous lipids, such as lysophosphatidylserine (LysoPS). Here, we analyzed the molecular basis of the structure-activity relationship of ligands of GPR34, one of the LysoPS receptor subtypes, focusing on recognition of the long-chain fatty acid moiety by the hydrophobic pocket. By introducing benzene ring(s) into the fatty acid moiety of 2-deoxy-LysoPS, we explored the binding site's preference for the hydrophobic shape. A tribenzene-containing fatty acid surrogate with modifications of the terminal aromatic moiety showed potent agonistic activity toward GPR34. Computational docking of these derivatives with a homology modeling/molecular dynamics-based virtual binding site of GPR34 indicated that a kink in the benzene-based lipid surrogates matches the L-shaped hydrophobic pocket of GPR34. A tetrabenzene-based lipid analogue bearing a bulky tert-butyl group at the 4-position of the terminal benzene ring exhibited potent GPR34 agonistic activity, validating the present hydrophobic binding pocket model.
Design, synthesis, and biological activity of potent and orally available g protein-coupled receptor 40 agonists
Sasaki, Shinobu,Kitamura, Shuji,Negoro, Nobuyuki,Suzuki, Masami,Tsujihata, Yoshiyuki,Suzuki, Nobuhiro,Santou, Takashi,Kanzaki, Naoyuki,Harada, Masataka,Tanaka, Yasuhiro,Kobayashi, Makoto,Tada, Norio,Funami, Miyuki,Tanaka, Toshimasa,Yamamoto, Yoshio,Fukatsu, Kohji,Yasuma, Tsuneo,Momose, Yu
, p. 1365 - 1378 (2011/05/05)
G protein-coupled receptor 40 (GPR40) is being recently considered to be a new potential drug target for the treatment of type 2 diabetes because of its role in the enhancement of free fatty acid-regulated glucose-stimulated insulin secretion in pancreatic β-cells. We initially identified benzyloxyphenylpropanoic acid (1b) (EC50 = 510 nM), which was designed based on the structure of free fatty acids, as a promising lead compound with GPR40 agonist activity. Chemical modification of compound 1b led to the discovery of 3-{4-[(2′,6′-dimethylbiphenyl-3-yl)methoxy]-2- fluorophenyl}propanoic acid (4p) as a potent GPR40 agonist (EC50 = 5.7 nM). Compound 4p exhibited acceptable pharmacokinetic profiles and significant glucose-lowering effects during an oral glucose tolerance test in diabetic rats. Moreover, no hypoglycemic event was observed even after administration of a high dose of compound 4p to normal fasted rats. These pharmacological results suggest that GPR40 agonists might be novel glucose-dependent insulin secretagogues with little or no risk of hypoglycemia.
RECEPTOR FUNCTION REGULATING AGENT
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Page/Page column 112, (2010/11/23)
An agent for regulating 14273 receptor function, which is useful as a preventing or treating drug for diabetes mellitus, hyperlipidemia or the like, is provided. An agent for regulating 14273 receptor function comprising a compound containing an aromatic ring and a group capable of releasing a cation.
